151
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Affiliation(s)
- Italo Linfante
- From the Miami Cardiac and Vascular Institute and Baptist Neuroscience Center, Baptist Hospital, FL.
| | - Guilherme Dabus
- From the Miami Cardiac and Vascular Institute and Baptist Neuroscience Center, Baptist Hospital, FL
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152
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Matsumoto H, Nishiyama H, Tetsuo Y, Takemoto H, Nakao N. Initial clinical experience using the two-stage aspiration technique (TSAT) with proximal flow arrest by a balloon guiding catheter for acute ischemic stroke of the anterior circulation. J Neurointerv Surg 2016; 9:1160-1165. [DOI: 10.1136/neurintsurg-2016-012787] [Citation(s) in RCA: 10] [Impact Index Per Article: 1.1] [Reference Citation Analysis] [Abstract] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 10/08/2016] [Revised: 11/10/2016] [Accepted: 11/11/2016] [Indexed: 11/04/2022]
Abstract
BackgroundOur initial experience using the two-stage aspiration technique (TSAT) with proximal flow arrest by a balloon guiding catheter is presented. In TSAT, aspiration is applied with the 5MAX ACE and also with the 3MAX catheter with a Penumbra aspiration pump, while arresting proximal flow by balloon inflation.MethodsIn patients treated with TSAT, clinical data including National Institutes of Health Stroke Scale (NIHSS) score at admission and the modified Rankin Scale (mRS) score at discharge, as well as procedural data including the Thrombolysis in Cerebral Infarction (TICI) score, procedural time, and complications were analyzed.ResultsThirty-four consecutive patients (19 men (56%); mean age 73 years) were treated with TSAT using a balloon guiding catheter. The patients presented with a mean NIHSS score of 17.4 and 23 (68%) patients received IV tissue plasminogen activator. Median time from groin puncture to successful recanalization was 41 min (range 15–160 min). All patients were successfully revascularized; TICI 2b or better recanalization was achieved in 30 (88%) patients. No patient required an additional procedure such as use of a stent retriever. Procedure-related complications occurred in two (5.9%) patients (vessel injury and guidewire perforation). Symptomatic intracranial hemorrhage occurred in one patient and asymptomatic hemorrhagic infarction occurred in two patients. There were no cases of embolization to new territory (ENT). The mean NIHSS score at discharge improved to 6.1. Sixteen patients (47%) achieved a good outcome with an mRS score of 0–2 at discharge (mean hospitalization period 20 days).ConclusionsTSAT with proximal flow arrest by a balloon guiding catheter is an effective and safe method to achieve good clinical and angiographic outcomes. This method may reduce ENT in the direct aspiration first-pass thrombectomy (ADAPT) technique.
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153
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Jadhav AP, Aghaebrahim A, Horev A, Giurgiutiu DV, Ducruet AF, Jankowitz B, Jovin TG. Stent Retriever-Mediated Manual Aspiration Thrombectomy for Acute Ischemic Stroke. INTERVENTIONAL NEUROLOGY 2016; 6:16-24. [PMID: 28611829 DOI: 10.1159/000449321] [Citation(s) in RCA: 14] [Impact Index Per Article: 1.6] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Subscribe] [Scholar Register] [Indexed: 11/19/2022]
Abstract
BACKGROUND AND PURPOSE Stent retriever thrombectomy and manual aspiration thrombectomy (MAT) have each been shown to lead to high rates of recanalization as single-modality endovascular stroke therapy. We sought to describe the safety and efficacy of a multimodal approach combining these two techniques termed 'stent retriever-mediated manual aspiration thrombectomy' (SMAT) and compared them to MAT alone. METHODS Retrospective review of a prospectively acquired acute endovascular stroke database. RESULTS 195 consecutive patients with large-vessel occlusion were identified between July 2013 and April 2015. Occlusion distribution was as follows: 52% middle cerebral artery segment 1 (M1), 6% M2, 29% internal carotid artery, and 13% vertebrobasilar. Median onset to treatment time was 278 min. Intravenous rtPA was administered in 33% of cases, whereas 34% of cases had symptom onset beyond 8 h. Effective recanalization (TICI 2b/3) was achieved in 91% of patients and in 49% of patients, only a single pass was necessary. Median groin puncture to recanalization time was 40 min. Symptomatic intracerebral hemorrhage occurred in 5% of patients. Favorable outcomes defined as a modified Rankin Scale score of 0-2 were noted in 42% of patients. Compared with MAT alone, SMAT achieved a similar rate of effective recanalization (91 vs. 88%, p = n.s.) but was associated with faster access to reperfusion times (49 vs. 77 min, p < 0.00001). CONCLUSIONS SMAT is a safe and efficacious method to achieve rapid revascularization that leads to faster recanalization compared to manual aspiration alone. Future prospective comparisons are necessary to establish the most clinically effective therapy for acute thrombectomy.
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Affiliation(s)
- Ashutosh P Jadhav
- Department of Neurology, UPMC Stroke Institute, University of Pittsburgh Medical Center, Pittsburgh, Pa. Winchester, Va., USA.,Department of Neurological Surgery, UPMC Stroke Institute, University of Pittsburgh Medical Center, Pittsburgh, Pa. Winchester, Va., USA
| | - Amin Aghaebrahim
- Department of Neurology, UPMC Stroke Institute, University of Pittsburgh Medical Center, Pittsburgh, Pa. Winchester, Va., USA
| | - Anat Horev
- Department of Soroka Medical Center, Beersheba, Israel
| | | | - Andrew F Ducruet
- Department of Neurological Surgery, UPMC Stroke Institute, University of Pittsburgh Medical Center, Pittsburgh, Pa. Winchester, Va., USA
| | - Brian Jankowitz
- Department of Neurological Surgery, UPMC Stroke Institute, University of Pittsburgh Medical Center, Pittsburgh, Pa. Winchester, Va., USA
| | - Tudor G Jovin
- Department of Neurology, UPMC Stroke Institute, University of Pittsburgh Medical Center, Pittsburgh, Pa. Winchester, Va., USA.,Department of Neurological Surgery, UPMC Stroke Institute, University of Pittsburgh Medical Center, Pittsburgh, Pa. Winchester, Va., USA
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154
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Haussen DC, Bouslama M, Grossberg JA, Nogueira RG. Remote aspiration thrombectomy in large vessel acute ischemic stroke. J Neurointerv Surg 2016; 9:250-252. [PMID: 27683755 DOI: 10.1136/neurintsurg-2016-012692] [Citation(s) in RCA: 14] [Impact Index Per Article: 1.6] [Reference Citation Analysis] [Abstract] [Key Words] [Journal Information] [Subscribe] [Scholar Register] [Received: 08/11/2016] [Accepted: 09/06/2016] [Indexed: 11/03/2022]
Abstract
The use of balloon guide catheters in acute ischemic stroke intervention has been associated with improved reperfusion rates and clinical outcomes. This technique acts by promoting flow arrest and subsequent reversal to capture the thrombus debris that may be generated during the clot retrieval process. However, to the best of our knowledge, the use of BGC to remotely aspirate and remove intracranial thrombus has not been previously described. We report a three case series of patients with acute ischemic stroke from supraclinoidal internal carotid artery occlusions treated with remote aspiration thrombectomy through a BGC placed at the cervical internal carotid artery, leading to complete reperfusion without the need for intracranial catheterization. Remote thrombectomy in the setting of intracranial internal carotid artery occlusion may constitute a relatively fast and inexpensive initial thrombectomy maneuver. Further investigation is warranted.
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Affiliation(s)
- Diogo C Haussen
- Emory University School of Medicine, Marcus Stroke and Neuroscience Center, Grady Memorial Hospital, Atlanta, Georgia, USA
| | - Mehdi Bouslama
- Emory University School of Medicine, Marcus Stroke and Neuroscience Center, Grady Memorial Hospital, Atlanta, Georgia, USA
| | - Jonathan A Grossberg
- Emory University School of Medicine, Marcus Stroke and Neuroscience Center, Grady Memorial Hospital, Atlanta, Georgia, USA
| | - Raul G Nogueira
- Emory University School of Medicine, Marcus Stroke and Neuroscience Center, Grady Memorial Hospital, Atlanta, Georgia, USA
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155
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Möhlenbruch MA, Bendszus M. [Technical standards for the interventional treatment of acute ischemic stroke]. DER NERVENARZT 2016; 86:1209-16. [PMID: 26334350 DOI: 10.1007/s00115-015-4268-y] [Citation(s) in RCA: 2] [Impact Index Per Article: 0.2] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Subscribe] [Scholar Register] [Indexed: 01/03/2023]
Abstract
Acute ischemic stroke is the leading cause of acquired disability and its treatment is still a major challenge. For more than a decade, various mechanical devices have been developed for the recanalization of proximal artery occlusions in acute ischemic stroke but most of them have been approved for clinical use, only on the basis of uncontrolled case series. Intravenous thrombolysis with recombinant tissue-specific plasminogen activator administered (iv rtPA) within 4.5 h of symptom onset is so far the only approved medicinal treatment in the acute phase of cerebral infarction. With the introduction of stent retrievers, mechanical thrombectomy has demonstrated substantial rates of partial or complete arterial recanalization and improved outcomes compared with iv rtPA and best medical treatment alone in multiple randomized clinical trials in select patients with acute ischemic stroke and proximal artery occlusions. This review discusses the evolution of endovascular stroke therapy followed by a discussion of the current technical standards of mechanical thrombectomy that have to be considered during endovascular stroke therapy and the updated treatment recommendations of the ESO Karolinska stroke update.
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Affiliation(s)
- M A Möhlenbruch
- Abt. Neuroradiologie, Neurologische Klinik, Universität Heidelberg, Im Neuenheimer Feld 400, 69120, Heidelberg, Deutschland.
| | - M Bendszus
- Abt. Neuroradiologie, Neurologische Klinik, Universität Heidelberg, Im Neuenheimer Feld 400, 69120, Heidelberg, Deutschland
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156
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Kim YW, Kang DH, Hwang YH, Park J, Kim YS. Efficacy of Proximal Aspiration Thrombectomy for Using Balloon-Tipped Guide Catheter in Acute Intracranial Internal Carotid Artery Occlusion. J Korean Neurosurg Soc 2016; 59:379-84. [PMID: 27446520 PMCID: PMC4954887 DOI: 10.3340/jkns.2016.59.4.379] [Citation(s) in RCA: 20] [Impact Index Per Article: 2.2] [Reference Citation Analysis] [Abstract] [Key Words] [Download PDF] [Figures] [Journal Information] [Subscribe] [Scholar Register] [Received: 11/30/2015] [Revised: 02/25/2016] [Accepted: 03/20/2016] [Indexed: 11/27/2022] Open
Abstract
Objective Mechanical thrombectomy (MT) for acute intracranial internal carotid artery (ICA) occlusion is often complicated by difficult revascularization and non-involved territory embolization possibly related with larger clot-burden. This study aims to evaluate the efficacy of proximal aspiration thrombectomy (PAT) using a balloon-tipped guide catheter for clot-burden reduction in such cases with period-to-period analysis (period 1 : standard MT without PAT; period 2 : PAT first, then standard MT for the remaining occlusion). Methods Eighty-six patients who underwent MT for acute intracranial ICA occlusion were included in this analysis from the prospectively maintained stroke registry (33 patients in period 1 and 53 in period 2). In period 2, 'responder' was defined as a case where some amount of clot was retrieved by PAT and the following angiography showed partial or full recanalization. Results Fifteen of fifty-three patients in period 2 (28.3%) were 'responders' to PAT. There was a significantly higher incidence of atrial fibrillation in the 'responder' subgroup. Period 2 showed a significantly shorter puncture-to-reperfusion time (94.5 minutes vs. 56.0 minutes; p=0.002), a significantly higher Thrombolysis in Cerebral Infarction of 2b-3 reperfusion (45.5% vs. 73.6%; p=0.009), but only a trend for better 3-month favorable outcome (mRS 0–2; 36.4% vs. 54.7%; p=0.097). There was no increase in the incidence of procedure-related complications or intracranial hemorrhage in period 2. Conclusion A strategy of PAT before standard MT may result in shorter puncture-to-reperfusion time and better angiographic outcome than a strategy of standard MT for acute intracranial ICA occlusion.
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Affiliation(s)
- Yong-Won Kim
- Department of Radiology, Cerebrovascular Center, Kyungpook National University Hospital, School of Medicine, Kyungpook National University, Daegu, Korea.; Department of Neurology, Cerebrovascular Center, Kyungpook National University Hospital, School of Medicine, Kyungpook National University, Daegu, Korea
| | - Dong-Hun Kang
- Department of Radiology, Cerebrovascular Center, Kyungpook National University Hospital, School of Medicine, Kyungpook National University, Daegu, Korea.; Department of Neurosurgery, Cerebrovascular Center, Kyungpook National University Hospital, School of Medicine, Kyungpook National University, Daegu, Korea
| | - Yang-Ha Hwang
- Department of Neurology, Cerebrovascular Center, Kyungpook National University Hospital, School of Medicine, Kyungpook National University, Daegu, Korea
| | - Jaechan Park
- Department of Neurosurgery, Cerebrovascular Center, Kyungpook National University Hospital, School of Medicine, Kyungpook National University, Daegu, Korea
| | - Yong-Sun Kim
- Department of Radiology, Cerebrovascular Center, Kyungpook National University Hospital, School of Medicine, Kyungpook National University, Daegu, Korea
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157
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Janssen H, Killer-Oberpfalzer M, Patzig M, Buchholz G, Lutz J. Ultra-distal access of the M1 segment with the 5 Fr Navien distal access catheter in acute (anterior circulation) stroke: is it safe and efficient? J Neurointerv Surg 2016; 9:650-653. [PMID: 27342761 DOI: 10.1136/neurintsurg-2016-012370] [Citation(s) in RCA: 2] [Impact Index Per Article: 0.2] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 03/11/2016] [Revised: 05/30/2016] [Accepted: 06/01/2016] [Indexed: 11/04/2022]
Abstract
BACKGROUND AND AIM The importance of mechanical thrombectomy in acute stroke treatment has grown over recent years. Mechanical thrombectomy comprises many different techniques. Technical improvements in the catheter material have led to the development of large-bore distal access catheters which can enter tortuous intracranial vessels. This has promising applications for endovascular stroke treatment. This study evaluated the safety and success rate of ultra-distal access of the middle cerebral artery (MCA) M1 segment with the 5 Fr Navien 58 distal access catheter in the treatment of acute stroke in combination with stent retrievers. METHODS We retrospectively analyzed 81 patients with an acute stroke of the anterior circulation in whom ultra-distal access to the M1 segment was carried out using the Navien 58 catheter with an anchoring technique with a stent retriever for mechanical thrombectomy. Technical complications, success rates of catheter placement, success rates of thrombectomy using the modified Thrombolysis In Cerebral Infarction (mTICI) score, and the procedure times were evaluated. RESULTS Ultra-distal access with the Navien 58 was successful in 75% (61/81) of cases. Recanalization success with a mTICI score of 2b and better was achieved in 83% overall (67/81), in 90% (55/61) of cases with successful ultra-distal access and in 60% (12/20) of cases without ultra-distal access. No severe adverse effects such as dissections or perforations occurred as a result of the ultra-distal catheter placement in the M1 segment. In 4% (3/81) of the cases a reversible MCA vasospasm occurred. CONCLUSIONS Ultra-distal placement of the Navien 58 distal access catheter into the M1 segment in acute anterior circulation stroke can be achieved consistently, is safe in practice, and results in good recanalization success rates.
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Affiliation(s)
- H Janssen
- Department of Neuroradiology, Ludwig-Maximilians-University Hospital, Munich, Germany
| | - M Killer-Oberpfalzer
- Department of Neurology/Research Institute of Neurointervention, Paracelsus Medical University, Salzburg, Germany
| | - M Patzig
- Department of Neuroradiology, Ludwig-Maximilians-University Hospital, Munich, Germany
| | - G Buchholz
- Department of Neurology, Ludwig-Maximilians-University Hospital, Munich, Germany
| | - J Lutz
- Department of Neuroradiology, Ludwig-Maximilians-University Hospital, Munich, Germany
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158
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Menon BK, Sajobi TT, Zhang Y, Rempel JL, Shuaib A, Thornton J, Williams D, Roy D, Poppe AY, Jovin TG, Sapkota B, Baxter BW, Krings T, Silver FL, Frei DF, Fanale C, Tampieri D, Teitelbaum J, Lum C, Dowlatshahi D, Eesa M, Lowerison MW, Kamal NR, Demchuk AM, Hill MD, Goyal M. Analysis of Workflow and Time to Treatment on Thrombectomy Outcome in the Endovascular Treatment for Small Core and Proximal Occlusion Ischemic Stroke (ESCAPE) Randomized, Controlled Trial. Circulation 2016; 133:2279-86. [PMID: 27076599 DOI: 10.1161/circulationaha.115.019983] [Citation(s) in RCA: 199] [Impact Index Per Article: 22.1] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Submit a Manuscript] [Subscribe] [Scholar Register] [Received: 10/18/2015] [Accepted: 04/08/2016] [Indexed: 01/20/2023]
Affiliation(s)
- Bijoy K. Menon
- From Department of Clinical Neurosciences and Radiology (B.K.M., T.T.S., M.E., N.R.K., A.M.D, M.D.H., M.G.) andDepartment of Community Health Sciences (B.K.M., Y.Z., A.M.D.,M.D.H., M.G.), Cumming School of Medicine, University of Calgary, Canada; Departments of Radiology (J.L.R.) and Medicine (A.S.), University of Alberta, Edmonton, Canada; Departments of Neuroradiology (J.T.) andGeriatric and Stroke Medicine(D.W.), Beaumont Hospital and the Royal College of Surgeons in Ireland, Dublin; Departments
| | - Tolulope T. Sajobi
- From Department of Clinical Neurosciences and Radiology (B.K.M., T.T.S., M.E., N.R.K., A.M.D, M.D.H., M.G.) andDepartment of Community Health Sciences (B.K.M., Y.Z., A.M.D.,M.D.H., M.G.), Cumming School of Medicine, University of Calgary, Canada; Departments of Radiology (J.L.R.) and Medicine (A.S.), University of Alberta, Edmonton, Canada; Departments of Neuroradiology (J.T.) andGeriatric and Stroke Medicine(D.W.), Beaumont Hospital and the Royal College of Surgeons in Ireland, Dublin; Departments
| | - Yukun Zhang
- From Department of Clinical Neurosciences and Radiology (B.K.M., T.T.S., M.E., N.R.K., A.M.D, M.D.H., M.G.) andDepartment of Community Health Sciences (B.K.M., Y.Z., A.M.D.,M.D.H., M.G.), Cumming School of Medicine, University of Calgary, Canada; Departments of Radiology (J.L.R.) and Medicine (A.S.), University of Alberta, Edmonton, Canada; Departments of Neuroradiology (J.T.) andGeriatric and Stroke Medicine(D.W.), Beaumont Hospital and the Royal College of Surgeons in Ireland, Dublin; Departments
| | - Jeremy L. Rempel
- From Department of Clinical Neurosciences and Radiology (B.K.M., T.T.S., M.E., N.R.K., A.M.D, M.D.H., M.G.) andDepartment of Community Health Sciences (B.K.M., Y.Z., A.M.D.,M.D.H., M.G.), Cumming School of Medicine, University of Calgary, Canada; Departments of Radiology (J.L.R.) and Medicine (A.S.), University of Alberta, Edmonton, Canada; Departments of Neuroradiology (J.T.) andGeriatric and Stroke Medicine(D.W.), Beaumont Hospital and the Royal College of Surgeons in Ireland, Dublin; Departments
| | - Ashfaq Shuaib
- From Department of Clinical Neurosciences and Radiology (B.K.M., T.T.S., M.E., N.R.K., A.M.D, M.D.H., M.G.) andDepartment of Community Health Sciences (B.K.M., Y.Z., A.M.D.,M.D.H., M.G.), Cumming School of Medicine, University of Calgary, Canada; Departments of Radiology (J.L.R.) and Medicine (A.S.), University of Alberta, Edmonton, Canada; Departments of Neuroradiology (J.T.) andGeriatric and Stroke Medicine(D.W.), Beaumont Hospital and the Royal College of Surgeons in Ireland, Dublin; Departments
| | - John Thornton
- From Department of Clinical Neurosciences and Radiology (B.K.M., T.T.S., M.E., N.R.K., A.M.D, M.D.H., M.G.) andDepartment of Community Health Sciences (B.K.M., Y.Z., A.M.D.,M.D.H., M.G.), Cumming School of Medicine, University of Calgary, Canada; Departments of Radiology (J.L.R.) and Medicine (A.S.), University of Alberta, Edmonton, Canada; Departments of Neuroradiology (J.T.) andGeriatric and Stroke Medicine(D.W.), Beaumont Hospital and the Royal College of Surgeons in Ireland, Dublin; Departments
| | - David Williams
- From Department of Clinical Neurosciences and Radiology (B.K.M., T.T.S., M.E., N.R.K., A.M.D, M.D.H., M.G.) andDepartment of Community Health Sciences (B.K.M., Y.Z., A.M.D.,M.D.H., M.G.), Cumming School of Medicine, University of Calgary, Canada; Departments of Radiology (J.L.R.) and Medicine (A.S.), University of Alberta, Edmonton, Canada; Departments of Neuroradiology (J.T.) andGeriatric and Stroke Medicine(D.W.), Beaumont Hospital and the Royal College of Surgeons in Ireland, Dublin; Departments
| | - Daniel Roy
- From Department of Clinical Neurosciences and Radiology (B.K.M., T.T.S., M.E., N.R.K., A.M.D, M.D.H., M.G.) andDepartment of Community Health Sciences (B.K.M., Y.Z., A.M.D.,M.D.H., M.G.), Cumming School of Medicine, University of Calgary, Canada; Departments of Radiology (J.L.R.) and Medicine (A.S.), University of Alberta, Edmonton, Canada; Departments of Neuroradiology (J.T.) andGeriatric and Stroke Medicine(D.W.), Beaumont Hospital and the Royal College of Surgeons in Ireland, Dublin; Departments
| | - Alexandre Y. Poppe
- From Department of Clinical Neurosciences and Radiology (B.K.M., T.T.S., M.E., N.R.K., A.M.D, M.D.H., M.G.) andDepartment of Community Health Sciences (B.K.M., Y.Z., A.M.D.,M.D.H., M.G.), Cumming School of Medicine, University of Calgary, Canada; Departments of Radiology (J.L.R.) and Medicine (A.S.), University of Alberta, Edmonton, Canada; Departments of Neuroradiology (J.T.) andGeriatric and Stroke Medicine(D.W.), Beaumont Hospital and the Royal College of Surgeons in Ireland, Dublin; Departments
| | - Tudor G. Jovin
- From Department of Clinical Neurosciences and Radiology (B.K.M., T.T.S., M.E., N.R.K., A.M.D, M.D.H., M.G.) andDepartment of Community Health Sciences (B.K.M., Y.Z., A.M.D.,M.D.H., M.G.), Cumming School of Medicine, University of Calgary, Canada; Departments of Radiology (J.L.R.) and Medicine (A.S.), University of Alberta, Edmonton, Canada; Departments of Neuroradiology (J.T.) andGeriatric and Stroke Medicine(D.W.), Beaumont Hospital and the Royal College of Surgeons in Ireland, Dublin; Departments
| | - Biggya Sapkota
- From Department of Clinical Neurosciences and Radiology (B.K.M., T.T.S., M.E., N.R.K., A.M.D, M.D.H., M.G.) andDepartment of Community Health Sciences (B.K.M., Y.Z., A.M.D.,M.D.H., M.G.), Cumming School of Medicine, University of Calgary, Canada; Departments of Radiology (J.L.R.) and Medicine (A.S.), University of Alberta, Edmonton, Canada; Departments of Neuroradiology (J.T.) andGeriatric and Stroke Medicine(D.W.), Beaumont Hospital and the Royal College of Surgeons in Ireland, Dublin; Departments
| | - Blaise W. Baxter
- From Department of Clinical Neurosciences and Radiology (B.K.M., T.T.S., M.E., N.R.K., A.M.D, M.D.H., M.G.) andDepartment of Community Health Sciences (B.K.M., Y.Z., A.M.D.,M.D.H., M.G.), Cumming School of Medicine, University of Calgary, Canada; Departments of Radiology (J.L.R.) and Medicine (A.S.), University of Alberta, Edmonton, Canada; Departments of Neuroradiology (J.T.) andGeriatric and Stroke Medicine(D.W.), Beaumont Hospital and the Royal College of Surgeons in Ireland, Dublin; Departments
| | - Timo Krings
- From Department of Clinical Neurosciences and Radiology (B.K.M., T.T.S., M.E., N.R.K., A.M.D, M.D.H., M.G.) andDepartment of Community Health Sciences (B.K.M., Y.Z., A.M.D.,M.D.H., M.G.), Cumming School of Medicine, University of Calgary, Canada; Departments of Radiology (J.L.R.) and Medicine (A.S.), University of Alberta, Edmonton, Canada; Departments of Neuroradiology (J.T.) andGeriatric and Stroke Medicine(D.W.), Beaumont Hospital and the Royal College of Surgeons in Ireland, Dublin; Departments
| | - Frank L. Silver
- From Department of Clinical Neurosciences and Radiology (B.K.M., T.T.S., M.E., N.R.K., A.M.D, M.D.H., M.G.) andDepartment of Community Health Sciences (B.K.M., Y.Z., A.M.D.,M.D.H., M.G.), Cumming School of Medicine, University of Calgary, Canada; Departments of Radiology (J.L.R.) and Medicine (A.S.), University of Alberta, Edmonton, Canada; Departments of Neuroradiology (J.T.) andGeriatric and Stroke Medicine(D.W.), Beaumont Hospital and the Royal College of Surgeons in Ireland, Dublin; Departments
| | - Donald F. Frei
- From Department of Clinical Neurosciences and Radiology (B.K.M., T.T.S., M.E., N.R.K., A.M.D, M.D.H., M.G.) andDepartment of Community Health Sciences (B.K.M., Y.Z., A.M.D.,M.D.H., M.G.), Cumming School of Medicine, University of Calgary, Canada; Departments of Radiology (J.L.R.) and Medicine (A.S.), University of Alberta, Edmonton, Canada; Departments of Neuroradiology (J.T.) andGeriatric and Stroke Medicine(D.W.), Beaumont Hospital and the Royal College of Surgeons in Ireland, Dublin; Departments
| | - Christopher Fanale
- From Department of Clinical Neurosciences and Radiology (B.K.M., T.T.S., M.E., N.R.K., A.M.D, M.D.H., M.G.) andDepartment of Community Health Sciences (B.K.M., Y.Z., A.M.D.,M.D.H., M.G.), Cumming School of Medicine, University of Calgary, Canada; Departments of Radiology (J.L.R.) and Medicine (A.S.), University of Alberta, Edmonton, Canada; Departments of Neuroradiology (J.T.) andGeriatric and Stroke Medicine(D.W.), Beaumont Hospital and the Royal College of Surgeons in Ireland, Dublin; Departments
| | - Donatella Tampieri
- From Department of Clinical Neurosciences and Radiology (B.K.M., T.T.S., M.E., N.R.K., A.M.D, M.D.H., M.G.) andDepartment of Community Health Sciences (B.K.M., Y.Z., A.M.D.,M.D.H., M.G.), Cumming School of Medicine, University of Calgary, Canada; Departments of Radiology (J.L.R.) and Medicine (A.S.), University of Alberta, Edmonton, Canada; Departments of Neuroradiology (J.T.) andGeriatric and Stroke Medicine(D.W.), Beaumont Hospital and the Royal College of Surgeons in Ireland, Dublin; Departments
| | - Jeanne Teitelbaum
- From Department of Clinical Neurosciences and Radiology (B.K.M., T.T.S., M.E., N.R.K., A.M.D, M.D.H., M.G.) andDepartment of Community Health Sciences (B.K.M., Y.Z., A.M.D.,M.D.H., M.G.), Cumming School of Medicine, University of Calgary, Canada; Departments of Radiology (J.L.R.) and Medicine (A.S.), University of Alberta, Edmonton, Canada; Departments of Neuroradiology (J.T.) andGeriatric and Stroke Medicine(D.W.), Beaumont Hospital and the Royal College of Surgeons in Ireland, Dublin; Departments
| | - Cheemun Lum
- From Department of Clinical Neurosciences and Radiology (B.K.M., T.T.S., M.E., N.R.K., A.M.D, M.D.H., M.G.) andDepartment of Community Health Sciences (B.K.M., Y.Z., A.M.D.,M.D.H., M.G.), Cumming School of Medicine, University of Calgary, Canada; Departments of Radiology (J.L.R.) and Medicine (A.S.), University of Alberta, Edmonton, Canada; Departments of Neuroradiology (J.T.) andGeriatric and Stroke Medicine(D.W.), Beaumont Hospital and the Royal College of Surgeons in Ireland, Dublin; Departments
| | - Dar Dowlatshahi
- From Department of Clinical Neurosciences and Radiology (B.K.M., T.T.S., M.E., N.R.K., A.M.D, M.D.H., M.G.) andDepartment of Community Health Sciences (B.K.M., Y.Z., A.M.D.,M.D.H., M.G.), Cumming School of Medicine, University of Calgary, Canada; Departments of Radiology (J.L.R.) and Medicine (A.S.), University of Alberta, Edmonton, Canada; Departments of Neuroradiology (J.T.) andGeriatric and Stroke Medicine(D.W.), Beaumont Hospital and the Royal College of Surgeons in Ireland, Dublin; Departments
| | - Muneer Eesa
- From Department of Clinical Neurosciences and Radiology (B.K.M., T.T.S., M.E., N.R.K., A.M.D, M.D.H., M.G.) andDepartment of Community Health Sciences (B.K.M., Y.Z., A.M.D.,M.D.H., M.G.), Cumming School of Medicine, University of Calgary, Canada; Departments of Radiology (J.L.R.) and Medicine (A.S.), University of Alberta, Edmonton, Canada; Departments of Neuroradiology (J.T.) andGeriatric and Stroke Medicine(D.W.), Beaumont Hospital and the Royal College of Surgeons in Ireland, Dublin; Departments
| | - Mark W. Lowerison
- From Department of Clinical Neurosciences and Radiology (B.K.M., T.T.S., M.E., N.R.K., A.M.D, M.D.H., M.G.) andDepartment of Community Health Sciences (B.K.M., Y.Z., A.M.D.,M.D.H., M.G.), Cumming School of Medicine, University of Calgary, Canada; Departments of Radiology (J.L.R.) and Medicine (A.S.), University of Alberta, Edmonton, Canada; Departments of Neuroradiology (J.T.) andGeriatric and Stroke Medicine(D.W.), Beaumont Hospital and the Royal College of Surgeons in Ireland, Dublin; Departments
| | - Noreen R. Kamal
- From Department of Clinical Neurosciences and Radiology (B.K.M., T.T.S., M.E., N.R.K., A.M.D, M.D.H., M.G.) andDepartment of Community Health Sciences (B.K.M., Y.Z., A.M.D.,M.D.H., M.G.), Cumming School of Medicine, University of Calgary, Canada; Departments of Radiology (J.L.R.) and Medicine (A.S.), University of Alberta, Edmonton, Canada; Departments of Neuroradiology (J.T.) andGeriatric and Stroke Medicine(D.W.), Beaumont Hospital and the Royal College of Surgeons in Ireland, Dublin; Departments
| | - Andrew M. Demchuk
- From Department of Clinical Neurosciences and Radiology (B.K.M., T.T.S., M.E., N.R.K., A.M.D, M.D.H., M.G.) andDepartment of Community Health Sciences (B.K.M., Y.Z., A.M.D.,M.D.H., M.G.), Cumming School of Medicine, University of Calgary, Canada; Departments of Radiology (J.L.R.) and Medicine (A.S.), University of Alberta, Edmonton, Canada; Departments of Neuroradiology (J.T.) andGeriatric and Stroke Medicine(D.W.), Beaumont Hospital and the Royal College of Surgeons in Ireland, Dublin; Departments
| | - Michael D. Hill
- From Department of Clinical Neurosciences and Radiology (B.K.M., T.T.S., M.E., N.R.K., A.M.D, M.D.H., M.G.) andDepartment of Community Health Sciences (B.K.M., Y.Z., A.M.D.,M.D.H., M.G.), Cumming School of Medicine, University of Calgary, Canada; Departments of Radiology (J.L.R.) and Medicine (A.S.), University of Alberta, Edmonton, Canada; Departments of Neuroradiology (J.T.) andGeriatric and Stroke Medicine(D.W.), Beaumont Hospital and the Royal College of Surgeons in Ireland, Dublin; Departments
| | - Mayank Goyal
- From Department of Clinical Neurosciences and Radiology (B.K.M., T.T.S., M.E., N.R.K., A.M.D, M.D.H., M.G.) andDepartment of Community Health Sciences (B.K.M., Y.Z., A.M.D.,M.D.H., M.G.), Cumming School of Medicine, University of Calgary, Canada; Departments of Radiology (J.L.R.) and Medicine (A.S.), University of Alberta, Edmonton, Canada; Departments of Neuroradiology (J.T.) andGeriatric and Stroke Medicine(D.W.), Beaumont Hospital and the Royal College of Surgeons in Ireland, Dublin; Departments
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Abstract
INTRODUCTION Acute ischemic stroke (AIS) is one of the leading causes of mortality and adult disability worldwide. For two decades, the preferred approach for AIS was intravenous recombinant tissue plasminogen activator (IV tPA). However, IV tPA cannot be given to many AIS patients who do not meet strict criteria for its use. IV tPA has also had lesser benefit in patients with large clot burden in the context of large vessel occlusion (LVO). AREAS COVERED Endovascular stroke therapy had been an 'unproven' therapy despite numerous trials of intra-arterial pharmacologic thrombolysis and mechanical thrombectomy. With the advent of stent-retriever devices, there has been a paradigm shift in the utilization of endovascular therapies for AIS. Our review discusses cerebrovascular hemodynamics, the basis of the recanalization models in AIS, aspects of intravenous thrombolysis, prior generations of endovascular therapy, and the recent successful AIS stent retriever trials. Expert commentary: Recently 'stent-retrievers', a new generation of mechanical thrombectomy devices, were shown to be associated with improved functional outcomes in AIS secondary to proximal intracranial anterior circulation LVO. Stent retrievers are a major advance in AIS care and will have significant impact on the evolution of stroke systems of care.
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Affiliation(s)
- Rick Gill
- a Department of Neurology , Loyola University Chicago - Stritch School of Medicine , Maywood , IL , USA
| | - Michael J Schneck
- a Department of Neurology , Loyola University Chicago - Stritch School of Medicine , Maywood , IL , USA.,b Department of Neurological Surgery , Loyola University Chicago - Stritch School of Medicine , Maywood , IL , USA
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Nogueira RG, Zaidat OO, Castonguay AC, Haussen DC, Martin CO, Holloway WE, Mueller-Kronast N, English J, Linfante I, Dabus G, Malisch TW, Marden FA, Bozorgchami H, Xavier A, Rai AT, Froehler MT, Badruddin A, Nguyen TN, Taqi MA, Abraham MG, Janardhan V, Yoo AJ, Shaltoni H, Abou-Chebl A, Chen PR, Britz GW, Novakovic R, Nanda A, Kaushal R, Issa MA, Frankel MR, Gupta R. Rescue Thrombectomy in Large Vessel Occlusion Strokes Leads to Better Outcomes than Intravenous Thrombolysis Alone: A 'Real World' Applicability of the Recent Trials. INTERVENTIONAL NEUROLOGY 2016; 5:101-110. [PMID: 27781037 DOI: 10.1159/000445809] [Citation(s) in RCA: 13] [Impact Index Per Article: 1.4] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Subscribe] [Scholar Register] [Received: 11/23/2015] [Accepted: 02/03/2016] [Indexed: 01/17/2023]
Abstract
BACKGROUND The Interventional Management of Stroke III (IMS-III) trial demonstrated no benefit for intravenous recombinant tissue plasminogen activator (IV rt-PA) followed by endovascular therapy versus IV rt-PA alone. However, IMS-III mostly included earlier generation devices. The recent thrombectomy trials have incorporated the stent-retriever technology, but their generalizability remains unknown. METHODS The North American Solitaire Acute Stroke (NASA) registry recruited patients treated with the Solitaire FR™ device between March 2012 and February 2013. The NASA-IMS-III-Like Group (NILG baseline NIHSS score ≥10 who received IV rt-PA) was compared to the IV rt-PA and IV + intra-arterial (IA)-IMS-III groups and the MR CLEAN, ESCAPE, SWIFT Prime, and REVASCAT trial controls to assess the stent-retriever treatment in the 'real-world' setting. The NILG was also compared to non-IV rt-PA NASA patients to evaluate the impact of IV rt-PA on thrombectomy. RESULTS A total of 136 of the 354 NASA patients fulfilled criteria for the NILG. Baseline characteristics were well balanced across groups. Time from onset to puncture was higher in NILG than IV+IA-IMS-III patients (274 ± 112 vs. 208 ± 47 min, p < 0.0001). Occlusions involving the intracranial ICA, MCA-M1, or basilar arteries were more common in NILG than IV+IA-IMS-III patients (91.2 vs. 47.2%, p < 0.00001). Modified thrombolysis in cerebral infarction ≥2b reperfusion was higher in NILG than IV+IA-IMS-III patients (74.3 vs. 39.6%, p < 0.00001). A 90-day modified Rankin Scale score ≤2 was more frequent in the NILG than IV+IA-IMS-III patients (51.9 vs. 40.8%, p = 0.03) and MR CLEAN (51.9 vs. 19.1%, p < 0.00001), ESCAPE (51.9 vs. 29.3%, p = 0.0002), SWIFT Prime (51.9 vs. 35.5%, p = 0.02), and REVASCAT (51.9 vs. 28.2%, p = 0.0003) controls. Symptomatic intracranial hemorrhage definitions varied across the different studies with rates ranging from 2.7% (ESCAPE) to 11.9% (NILG). The NILG 90-day mortality (24.4%) was higher than in SWIFT Prime but comparable to all other groups. IV rt-PA was an independent predictor of good outcome in NASA (OR = 2.3, 95% CI 1.2-4.7). CONCLUSION Our results support the 'real-world' applicability of the recent thrombectomy trials.
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Affiliation(s)
- Raul G Nogueira
- Department of Neurology, Emory University School of Medicine, Atlanta, Ga., USA
| | - Osama O Zaidat
- Department of Neurology, Medical College of Wisconsin, Milwaukee, Wis., USA
| | | | - Diogo C Haussen
- Department of Neurology, Emory University School of Medicine, Atlanta, Ga., USA
| | | | | | | | - Joey English
- California Pacific Medical Center, San Francisco, Calif., USA
| | - Italo Linfante
- Division of Interventional Neuroradiology, Baptist Cardiac and Vascular Institute, Miami, Fla., USA
| | - Guilherme Dabus
- Division of Interventional Neuroradiology, Baptist Cardiac and Vascular Institute, Miami, Fla., USA
| | - Tim W Malisch
- Alexian Brothers Medical Center, Elk Grove Village, Ill., USA
| | | | | | - Andrew Xavier
- Department of Neurology, Wayne State University School of Medicine, Detroit, Mich., USA
| | - Ansaar T Rai
- Department of Radiology, West Virginia University Hospital, Morgantown, W.Va., USA
| | - Michael T Froehler
- Department of Neurology, Neurosurgery, and Radiology, Vanderbilt University Medical Center, Nashville, Tenn., USA
| | - Aamir Badruddin
- Department of Neurosurgery, Presence Saint Joseph Medical Center, Joliet, Ill., USA
| | - Thanh N Nguyen
- Department of Neurology, Boston University School of Medicine, Boston, Mass., USA
| | - M Asif Taqi
- Desert Regional Medical Center, Palm Springs, Calif., USA
| | | | | | - Albert J Yoo
- Texas Stroke Institute, Dallas Fort-Worth Metroplex, Tex., USA
| | | | - Alex Abou-Chebl
- Department of Neurology, University of Louisville Medical School, Louisville, Ky., USA
| | - Peng R Chen
- Department of Neurosurgery, University of Texas, Houston, Tex., USA
| | - Gavin W Britz
- Department of Neurosurgery, Methodist Neurological Institute, Houston, Tex., USA
| | - Roberta Novakovic
- Department of Radiology and Neurology, UT Southwestern Medical Center, Dallas, Tex., USA
| | | | | | - Mohammad A Issa
- Department of Neurology, Medical College of Wisconsin, Milwaukee, Wis., USA
| | - Michael R Frankel
- Department of Neurology, Emory University School of Medicine, Atlanta, Ga., USA
| | - Rishi Gupta
- Department of Neurosurgery, Wellstar Medical Group, Marietta., USA
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Stampfl S, Pfaff J, Herweh C, Pham M, Schieber S, Ringleb PA, Bendszus M, Möhlenbruch MA. Combined proximal balloon occlusion and distal aspiration: a new approach to prevent distal embolization during neurothrombectomy. J Neurointerv Surg 2016; 9:346-351. [DOI: 10.1136/neurintsurg-2015-012208] [Citation(s) in RCA: 52] [Impact Index Per Article: 5.8] [Reference Citation Analysis] [Abstract] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 12/08/2015] [Revised: 03/08/2016] [Accepted: 03/12/2016] [Indexed: 11/04/2022]
Abstract
Background and purposeEmbolization of thrombus fragments in a new vascular territory is a potential adverse event in neurothrombectomy. This study was performed to evaluate the safety and feasibility of a novel approach combining proximal balloon occlusion and distal aspiration to prevent distal thrombembolic complications.MethodsPatients with ischemic stroke meeting the following inclusion criteria were eligible: occlusion in the anterior circulation, neurothrombectomy using a balloon catheter for proximal flow arrest, and an intermediate catheter for distal aspiration. Pre- and post-interventional Thrombolysis In Cerebral Infarction (TICI) scores were assessed. Clinical presentation at admission and discharge and after 3 months was also evaluated and complications (particularly new thrombembolic events) were recorded.ResultsWe retrospectively identified 31 patients from our prospectively collected stroke database who met the inclusion criteria. In all patients the initial TICI was 0. A TICI score of ≥2b was achieved in 96.8%. No new thrombembolic complications occurred. The median NIH Stroke Scale score was 19 at admission and 4.5 at discharge. After 3 months, 51.6% of the patients had a favorable clinical outcome (modified Rankin Scale score 0–2) and 19.3% had died.ConclusionsA combination of proximal internal carotid artery occlusion using a balloon catheter and distal aspiration through an intermediate catheter represents a safe and efficient adjunct to mechanical thrombectomy with stent retrievers. In our patient cohort, no new thrombembolic complications were detected.
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Akbik F, Hirsch JA, Cougo-Pinto PT, Chandra RV, Simonsen CZ, Leslie-Mazwi T. The Evolution of Mechanical Thrombectomy for Acute Stroke. CURRENT TREATMENT OPTIONS IN CARDIOVASCULAR MEDICINE 2016; 18:32. [PMID: 26932587 DOI: 10.1007/s11936-016-0457-7] [Citation(s) in RCA: 10] [Impact Index Per Article: 1.1] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Journal Information] [Submit a Manuscript] [Subscribe] [Scholar Register] [Indexed: 01/19/2023]
Abstract
OPINION STATEMENT The natural history of an acute ischemic stroke from a large vessel occlusion (LVO) is poor and has long challenged stroke therapy. Recently, endovascular therapy has demonstrated superiority to medical management in appropriately selected patients. This advance has revolutionized acute care for LVO and mandates a reevaluation of the entire chain of stroke care delivery, including patient selection, intervention, and post-procedural care. Since endovascular therapy is a therapy specifically targeting LVO, its application should be restricted to those patients only. Clinical and radiologic parameters need to be considered in patient selection. Data supports that all patients over the age of 18 years presenting with a National Institutes of Health Stroke Scale (NIHSS) of 6 or greater within 6 hours of symptom onset should be considered for emergent endovascular therapy. Radiologically, those with a LVO of the internal carotid artery (ICA) or middle cerebral artery (MCA) M1 portion, intermediate or good collaterals and without large established infarct should be considered endovascular candidates. Selection beyond these parameters remains an open question and is being actively evaluated. In all cases, revascularization should be attempted with a new generation device (stentriever or direct aspiration), as these techniques are most likely to deliver adequate reperfusion. Post-revascularization, patients are closely monitored in an intensive care setting followed by discharge to rehabilitation, if required, or directly home. Patients should be evaluated in delayed fashion to assess recovery (typically at 3 months post-treatment). Ultimately, the poor natural history of ischemic stroke from LVO and the potential significant benefit from endovascular therapy over medical management alone necessitate a national response to ensure we identify and treat all eligible patients as rapidly and effectively as possible.
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Affiliation(s)
- Feras Akbik
- Department of Neurology, Massachusetts General Hospital, Boston, MA, USA
| | - Joshua A Hirsch
- Neuroendovascular Service, Massachusetts General Hospital, Boston, MA, 02114, USA
| | - Pedro Telles Cougo-Pinto
- Department of Neurosciences and Behavior Sciences, Ribeirão Preto Medical School, Ribeirão Preto, SP, Brazil
| | - Ronil V Chandra
- Interventional Neuroradiology, Monash Health, Monash University, Melbourne, Australia
| | - Claus Z Simonsen
- Department of Neurology, Aarhus University Hospital, Aarhus, Denmark
| | - Thabele Leslie-Mazwi
- Neuroendovascular Service, Massachusetts General Hospital, Boston, MA, 02114, USA.
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Chueh JY, Puri AS, Gounis MJ. An in vitro evaluation of distal emboli following Lazarus Cover-assisted stent retriever thrombectomy. J Neurointerv Surg 2016; 9:183-187. [DOI: 10.1136/neurintsurg-2015-012256] [Citation(s) in RCA: 21] [Impact Index Per Article: 2.3] [Reference Citation Analysis] [Abstract] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 12/30/2015] [Revised: 01/28/2016] [Accepted: 01/30/2016] [Indexed: 11/04/2022]
Abstract
BackgroundFormation of clot fragments during mechanical thrombectomy for acute ischemic stroke can occlude the distal vasculature, which may reduce the rate of good clinical outcome.ObjectiveTo examine the hypothesis that distal embolization can be reduced using stent retriever thrombectomy in combination with Lazarus Cover technology.MethodsHard, fragment-prone clots were used to create middle cerebral artery occlusions in a vascular phantom. Three different treatment strategies using Solitaire FR included: group 1—proximal flow control with an 8F balloon guide catheter (BGC), group 2—thrombectomy through a 6F conventional guide catheter (CGC), and group 3—a similar thrombectomy procedure to group 2 but including the Lazarus Cover device. The primary endpoint was distal emboli quantified by the number and size of the clot debris.ResultsThe Cover-assisted stent retriever thrombectomy significantly reduced the generation of clot fragments >200 μm as compared with thrombectomy with a CGC, and was similar to the BGC group. Particle size distribution <200 μm was similar across the groups. All groups were associated with high rates of recanalization, with only one failed recanalization with partial clot retention after three passes in one experiment of stent retriever thrombectomy through a CGC. Use of the adjunctive Cover device did not prolong the procedure as compared with control groups.ConclusionsFor a fragment-prone clot, Solitaire thrombectomy in conjunction with the Cover device may lower the risk of distal embolization and is comparable to BGC-protected embolectomy.
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164
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Massari F, Henninger N, Lozano JD, Patel A, Kuhn AL, Howk M, Perras M, Brooks C, Gounis MJ, Kan P, Wakhloo AK, Puri AS. ARTS (Aspiration-Retriever Technique for Stroke): Initial clinical experience. Interv Neuroradiol 2016; 22:325-32. [PMID: 26908591 DOI: 10.1177/1591019916632369] [Citation(s) in RCA: 139] [Impact Index Per Article: 15.4] [Reference Citation Analysis] [Abstract] [Key Words] [Journal Information] [Subscribe] [Scholar Register] [Received: 11/27/2015] [Accepted: 01/21/2016] [Indexed: 11/15/2022] Open
Abstract
BACKGROUND A new generation of highly navigable large-bore aspiration catheters and retriever devices for intracranial mechanical thrombectomy has markedly improved recanalization rates, time and clinical outcomes. We report collected clinical data utilizing a new technique based on combined large lumen aspiration catheter and partially resheathed stent retriever (ARTS: Aspiration (catheter)-(stent) Retriever Technique for Stroke). This technique is applied, especially in presence of bulky/rubbery emboli, when resistance is felt while retracting the stent retriever; at that point the entire assembly is locked and removed in-toto under continuous aspiration with additional flow arrest. METHODS A retrospective data analysis was performed to identify patients with large cerebral artery acute ischemic stroke treated with ARTS. The study was conducted between August 2013 and February 2015 at a single high volume stroke center. Procedural and clinical data were captured for analysis. RESULTS Forty-two patients (median age 66 years) met inclusion criteria for this study. The ARTS was successful in achieving Thrombolysis in Cerebral Infarction (TICI) ≥2b revascularization in 97.6% of cases (TICI 2b = 18 patients, TICI 3 = 23 patients). Patients' median National Institutes of Health Stroke Scale score at admission was 18 (6-40). A 3-month follow-up modified Rankin Scale value of 0-2 was achieved in 65.7% of the successfully treated patients (average 2.4). Two patients (4.8%) developed symptomatic intraparenchymal hemorrhages. Six procedure unrelated deaths were observed. CONCLUSIONS We found that ARTS is a fast, safe and effective method for endovascular recanalization of large vessel occlusions presenting within the context of acute ischemic stroke.
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Affiliation(s)
- Francesco Massari
- Division Neuroimaging and Intervention (NII) and New England Center for Stroke Research, Department of Radiology, University of Massachusetts, Worcester, USA
| | - Nils Henninger
- Departments of Neurology and Psychiatry, University of Massachusetts, Worcester, USA
| | - Juan Diego Lozano
- Division Neuroimaging and Intervention (NII) and New England Center for Stroke Research, Department of Radiology, University of Massachusetts, Worcester, USA
| | - Anand Patel
- Departments of Neurology and Psychiatry, University of Massachusetts, Worcester, USA
| | - Anna Luisa Kuhn
- Division Neuroimaging and Intervention (NII) and New England Center for Stroke Research, Department of Radiology, University of Massachusetts, Worcester, USA
| | - Mary Howk
- Division Neuroimaging and Intervention (NII) and New England Center for Stroke Research, Department of Radiology, University of Massachusetts, Worcester, USA
| | - Mary Perras
- Division Neuroimaging and Intervention (NII) and New England Center for Stroke Research, Department of Radiology, University of Massachusetts, Worcester, USA
| | - Christopher Brooks
- Division Neuroimaging and Intervention (NII) and New England Center for Stroke Research, Department of Radiology, University of Massachusetts, Worcester, USA
| | - Matthew J Gounis
- Division Neuroimaging and Intervention (NII) and New England Center for Stroke Research, Department of Radiology, University of Massachusetts, Worcester, USA
| | - Peter Kan
- Department of Neurosurgery, Baylor College of Medicine, Houston, USA
| | - Ajay K Wakhloo
- Division Neuroimaging and Intervention (NII) and New England Center for Stroke Research, Department of Radiology, University of Massachusetts, Worcester, USA
| | - Ajit S Puri
- Division Neuroimaging and Intervention (NII) and New England Center for Stroke Research, Department of Radiology, University of Massachusetts, Worcester, USA
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Demerath T, Reinhard M, Elsheikh S, Keuler A, Urbach H, Meckel S. Balloon Guide Catheter in Complex Anterior Circulation Mechanical Thrombectomy: Beyond Proximal Occlusion and Flow Reversal. Clin Neuroradiol 2016; 26:369-73. [PMID: 26801392 DOI: 10.1007/s00062-016-0498-z] [Citation(s) in RCA: 5] [Impact Index Per Article: 0.6] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 10/28/2015] [Accepted: 01/08/2016] [Indexed: 10/22/2022]
Affiliation(s)
- T Demerath
- Department of Neuroradiology, Neurocenter, University Hospital Freiburg, Breisacher Strasse 64, 79106, Freiburg, Germany
| | - M Reinhard
- Department of Neurology, Neurocenter, University Hospital Freiburg, Freiburg, Germany
| | - S Elsheikh
- Department of Neuroradiology, Neurocenter, University Hospital Freiburg, Breisacher Strasse 64, 79106, Freiburg, Germany
| | - A Keuler
- Department of Radiology, University Hospital of Cologne, Cologne, Germany
| | - H Urbach
- Department of Neuroradiology, Neurocenter, University Hospital Freiburg, Breisacher Strasse 64, 79106, Freiburg, Germany
| | - S Meckel
- Department of Neuroradiology, Neurocenter, University Hospital Freiburg, Breisacher Strasse 64, 79106, Freiburg, Germany.
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Velasco A, Buerke B, Stracke CP, Berkemeyer S, Mosimann PJ, Schwindt W, Alcázar P, Cnyrim C, Niederstadt T, Chapot R, Heindel W. Comparison of a Balloon Guide Catheter and a Non-Balloon Guide Catheter for Mechanical Thrombectomy. Radiology 2016; 280:169-76. [PMID: 26789499 DOI: 10.1148/radiol.2015150575] [Citation(s) in RCA: 99] [Impact Index Per Article: 11.0] [Reference Citation Analysis] [Abstract] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 01/19/2023]
Abstract
Purpose To evaluate the effectiveness of mechanical thrombectomy with the use of a stent retriever in acute ischemic stroke, performed by using a balloon guide catheter or non-balloon guide catheter. Materials and Methods In accordance with the institutional review board approval obtained at the two participating institutions, retrospective analysis was performed in 183 consecutive patients treated between 2013 and 2014 for occlusions in the middle cerebral artery or carotid terminus by using a stent retriever with a balloon guide catheter (n = 102) at one center and a non-balloon guide catheter (n = 81) at the other center. Data on procedure duration, number of passes, angiographic findings, type of stent retriever used, and expertise of the operators were collected. Successful recanalization was defined as grade 3 or 2b modified Treatment in Cerebral Ischemia recanalization accomplished in up to three passes. Univariate and multivariate subgroup analyses were conducted to control for the confounding variables of prior thrombolysis, location of occlusion, and operator expertise. Results Successful recanalization with the balloon guide catheter was achieved in 89.2% of thrombectomies (91 of 102) versus 67.9% (55 of 81) achieved with the non-balloon guide catheter (P = .0004). The one-pass thrombectomy rate with the balloon guide catheter was significantly higher than for that with the non-balloon guide catheter (63.7% [65 of 102] vs 35.8% [29 of 81], respectively; P = .001). The procedure duration was significantly shorter by using the balloon guide catheter than the non-balloon guide catheter (median, 20.5 minutes vs 41.0 minutes, respectively; P < .0001). Conclusion The effectiveness of mechanical thrombectomy with stent retrievers in acute ischemic stroke in the anterior circulation in terms of angiographic results and procedure duration was improved when performed in combination with the balloon guide catheter. (©) RSNA, 2016.
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Affiliation(s)
- Aglaé Velasco
- From the Department of Clinical Radiology-Neuroradiology (A.V., B.B., S.B., W.S., C.C., T.N., W.H.), University of Muenster, Albert-Schweitzer-Campus 1, Gebäude A1, 48149 Muenster, Germany; Department of Intracranial Endovascular Therapy and Department of Neuroradiology, Alfried-Krupp Krankenhaus Hospital, Essen, Germany (C.P.S., R.C.); Department of Neuroradiology and Interventional Neuroradiology, University Hospital Virgen de las Nieves, Granada, Spain (P.A.); and Department of Radiology, University Hospital of Lausanne, Lausanne, Switzerland (P.J.M.)
| | - Boris Buerke
- From the Department of Clinical Radiology-Neuroradiology (A.V., B.B., S.B., W.S., C.C., T.N., W.H.), University of Muenster, Albert-Schweitzer-Campus 1, Gebäude A1, 48149 Muenster, Germany; Department of Intracranial Endovascular Therapy and Department of Neuroradiology, Alfried-Krupp Krankenhaus Hospital, Essen, Germany (C.P.S., R.C.); Department of Neuroradiology and Interventional Neuroradiology, University Hospital Virgen de las Nieves, Granada, Spain (P.A.); and Department of Radiology, University Hospital of Lausanne, Lausanne, Switzerland (P.J.M.)
| | - Christian P Stracke
- From the Department of Clinical Radiology-Neuroradiology (A.V., B.B., S.B., W.S., C.C., T.N., W.H.), University of Muenster, Albert-Schweitzer-Campus 1, Gebäude A1, 48149 Muenster, Germany; Department of Intracranial Endovascular Therapy and Department of Neuroradiology, Alfried-Krupp Krankenhaus Hospital, Essen, Germany (C.P.S., R.C.); Department of Neuroradiology and Interventional Neuroradiology, University Hospital Virgen de las Nieves, Granada, Spain (P.A.); and Department of Radiology, University Hospital of Lausanne, Lausanne, Switzerland (P.J.M.)
| | - Shoma Berkemeyer
- From the Department of Clinical Radiology-Neuroradiology (A.V., B.B., S.B., W.S., C.C., T.N., W.H.), University of Muenster, Albert-Schweitzer-Campus 1, Gebäude A1, 48149 Muenster, Germany; Department of Intracranial Endovascular Therapy and Department of Neuroradiology, Alfried-Krupp Krankenhaus Hospital, Essen, Germany (C.P.S., R.C.); Department of Neuroradiology and Interventional Neuroradiology, University Hospital Virgen de las Nieves, Granada, Spain (P.A.); and Department of Radiology, University Hospital of Lausanne, Lausanne, Switzerland (P.J.M.)
| | - Pascal J Mosimann
- From the Department of Clinical Radiology-Neuroradiology (A.V., B.B., S.B., W.S., C.C., T.N., W.H.), University of Muenster, Albert-Schweitzer-Campus 1, Gebäude A1, 48149 Muenster, Germany; Department of Intracranial Endovascular Therapy and Department of Neuroradiology, Alfried-Krupp Krankenhaus Hospital, Essen, Germany (C.P.S., R.C.); Department of Neuroradiology and Interventional Neuroradiology, University Hospital Virgen de las Nieves, Granada, Spain (P.A.); and Department of Radiology, University Hospital of Lausanne, Lausanne, Switzerland (P.J.M.)
| | - Wolfram Schwindt
- From the Department of Clinical Radiology-Neuroradiology (A.V., B.B., S.B., W.S., C.C., T.N., W.H.), University of Muenster, Albert-Schweitzer-Campus 1, Gebäude A1, 48149 Muenster, Germany; Department of Intracranial Endovascular Therapy and Department of Neuroradiology, Alfried-Krupp Krankenhaus Hospital, Essen, Germany (C.P.S., R.C.); Department of Neuroradiology and Interventional Neuroradiology, University Hospital Virgen de las Nieves, Granada, Spain (P.A.); and Department of Radiology, University Hospital of Lausanne, Lausanne, Switzerland (P.J.M.)
| | - Pedro Alcázar
- From the Department of Clinical Radiology-Neuroradiology (A.V., B.B., S.B., W.S., C.C., T.N., W.H.), University of Muenster, Albert-Schweitzer-Campus 1, Gebäude A1, 48149 Muenster, Germany; Department of Intracranial Endovascular Therapy and Department of Neuroradiology, Alfried-Krupp Krankenhaus Hospital, Essen, Germany (C.P.S., R.C.); Department of Neuroradiology and Interventional Neuroradiology, University Hospital Virgen de las Nieves, Granada, Spain (P.A.); and Department of Radiology, University Hospital of Lausanne, Lausanne, Switzerland (P.J.M.)
| | - Christian Cnyrim
- From the Department of Clinical Radiology-Neuroradiology (A.V., B.B., S.B., W.S., C.C., T.N., W.H.), University of Muenster, Albert-Schweitzer-Campus 1, Gebäude A1, 48149 Muenster, Germany; Department of Intracranial Endovascular Therapy and Department of Neuroradiology, Alfried-Krupp Krankenhaus Hospital, Essen, Germany (C.P.S., R.C.); Department of Neuroradiology and Interventional Neuroradiology, University Hospital Virgen de las Nieves, Granada, Spain (P.A.); and Department of Radiology, University Hospital of Lausanne, Lausanne, Switzerland (P.J.M.)
| | - Thomas Niederstadt
- From the Department of Clinical Radiology-Neuroradiology (A.V., B.B., S.B., W.S., C.C., T.N., W.H.), University of Muenster, Albert-Schweitzer-Campus 1, Gebäude A1, 48149 Muenster, Germany; Department of Intracranial Endovascular Therapy and Department of Neuroradiology, Alfried-Krupp Krankenhaus Hospital, Essen, Germany (C.P.S., R.C.); Department of Neuroradiology and Interventional Neuroradiology, University Hospital Virgen de las Nieves, Granada, Spain (P.A.); and Department of Radiology, University Hospital of Lausanne, Lausanne, Switzerland (P.J.M.)
| | - René Chapot
- From the Department of Clinical Radiology-Neuroradiology (A.V., B.B., S.B., W.S., C.C., T.N., W.H.), University of Muenster, Albert-Schweitzer-Campus 1, Gebäude A1, 48149 Muenster, Germany; Department of Intracranial Endovascular Therapy and Department of Neuroradiology, Alfried-Krupp Krankenhaus Hospital, Essen, Germany (C.P.S., R.C.); Department of Neuroradiology and Interventional Neuroradiology, University Hospital Virgen de las Nieves, Granada, Spain (P.A.); and Department of Radiology, University Hospital of Lausanne, Lausanne, Switzerland (P.J.M.)
| | - Walter Heindel
- From the Department of Clinical Radiology-Neuroradiology (A.V., B.B., S.B., W.S., C.C., T.N., W.H.), University of Muenster, Albert-Schweitzer-Campus 1, Gebäude A1, 48149 Muenster, Germany; Department of Intracranial Endovascular Therapy and Department of Neuroradiology, Alfried-Krupp Krankenhaus Hospital, Essen, Germany (C.P.S., R.C.); Department of Neuroradiology and Interventional Neuroradiology, University Hospital Virgen de las Nieves, Granada, Spain (P.A.); and Department of Radiology, University Hospital of Lausanne, Lausanne, Switzerland (P.J.M.)
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Stent Retriever Thrombectomy of Small Caliber Intracranial Vessels Using pREset LITE: Safety and Efficacy. Clin Neuroradiol 2016; 27:351-360. [PMID: 26795038 PMCID: PMC5577062 DOI: 10.1007/s00062-016-0497-0] [Citation(s) in RCA: 51] [Impact Index Per Article: 5.7] [Reference Citation Analysis] [Abstract] [Key Words] [Download PDF] [Figures] [Journal Information] [Subscribe] [Scholar Register] [Received: 09/29/2015] [Accepted: 01/04/2016] [Indexed: 11/26/2022]
Abstract
Purpose Few devices are approved for thrombectomy of distal vessel branches, and clinical experience is limited. Here we report our experience with pREset LITE for thrombectomy of small intracranial vessels. Methods From an institutional database we selected consecutive patients treated with pREset LITE for an occlusion of small (≤ 2 mm), intracranial target vessels. Recanalization success was measured by applying the modified Thrombolysis In Cerebral Infarction (mTICI) score. To assess safety, we recorded device-related procedural events and potentially device-related hemorrhages on follow-up imaging. Infarcts in the dependent territory served as a measure for efficacy. Results Of 536 patients treated between August 2013 and March 2015, 76 met the inclusion criteria. pREset LITE was used in 90 branches with an average diameter of 1.6 mm (1.3–2.0 mm). An mTICI score ≥ 2b was achieved in 70.0 %. Procedural events consisted of 5.6 % significant vasospasm, 2.2 % suspected dissections, 2.2 % downstream emboli, and 1.1 % self-limiting extravasations. On posttreatment imaging 2.2 % parenchymal hemorrhages type I (PHI) and 13.3 % focal subarachnoid hemorrhage (SAH) were potentially device related, but all of these events remained asymptomatic. After successful recanalization, 33.3 % developed no ischemia in the dependent territory while 41.7 % developed a partial infarct, and 25 % developed a complete infarct. Successful recanalization significantly increased the chance to develop no or only partial infarct compared with a complete infarction (p = 0.003, p = 0.013). Conclusions Thrombectomy of small vessels with pREset LITE is feasible with good recanalization and reasonable safety margins. Successful recanalization significantly reduces the risk of infarction in the dependent territory. The impact on the overall clinical outcome remains to be determined.
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169
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Hino A, Oka H, Hashimoto Y, Echigo T, Koseki H, Fujii A, Katsumori T, Shiomi N, Nozaki K, Arima H, Hashimoto N. Direct Microsurgical Embolectomy for Acute Occlusion of the Internal Carotid Artery and Middle Cerebral Artery. World Neurosurg 2015; 88:243-251. [PMID: 26748169 DOI: 10.1016/j.wneu.2015.12.069] [Citation(s) in RCA: 8] [Impact Index Per Article: 0.8] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 09/27/2015] [Revised: 12/23/2015] [Accepted: 12/24/2015] [Indexed: 11/28/2022]
Abstract
BACKGROUND Surgical embolectomy is the most promising therapy for physically removing emboli from major cerebral arteries. However, it requires an experienced surgical team, time-consuming steps, and is not incorporated into acute stroke therapy. METHODS We established seamless collaboration between services, refined surgical techniques, and conducted a prospective trial of emergency surgical embolectomy. Surgical indications included the presence of acute hemispheric symptoms, absence of low-density area on computed tomography, evidence of internal carotid artery terminus or proximal middle cerebral artery occlusion, and availability of resources to start surgery within 3 hours of symptom onset. The indications were confirmed by an interdisciplinary team. We assessed revascularization rates, time from admission to surgery and from surgery to recanalization, procedural complications, and clinical outcomes. RESULTS Between 2005 and 2014, 14 consecutive patients with acute proximal middle cerebral artery or internal carotid artery terminus occlusion underwent emergency surgical embolectomy. All patients showed complete recanalization. Twelve patients survived and 7 had fair functional outcome (Rankin Scale score, ≤3). No significant procedural adverse events occurred. The mean times from admission to start of surgery, from surgery to recanalization, and from onset to recanalization were 14 minutes, 79 minutes, and 223 minutes, respectively. CONCLUSIONS Our results suggest that microsurgical embolectomy can rapidly, safely, and effectively retrieve clots and deserves reappraisal, although the choice largely depends on local institutional expertise.
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Affiliation(s)
- Akihiko Hino
- Department of Neurosurgery, Saiseikai Shigaken Hospital, Ritto, Japan.
| | - Hideki Oka
- Department of Neurosurgery, Saiseikai Shigaken Hospital, Ritto, Japan
| | - Youichi Hashimoto
- Department of Neurosurgery, Saiseikai Shigaken Hospital, Ritto, Japan
| | - Tadashi Echigo
- Department of Neurosurgery, Saiseikai Shigaken Hospital, Ritto, Japan
| | - Hirokazu Koseki
- Department of Neurosurgery, Saiseikai Shigaken Hospital, Ritto, Japan
| | - Akihiro Fujii
- Department of Neurology, Saiseikai Shigaken Hospital, Ritto, Japan
| | | | - Naoto Shiomi
- Department of Emergency and Critical Care Center, Saiseikai Shigaken Hospital, Ritto, Japan
| | - Kazuhiko Nozaki
- Department of Neurosurgery, Shiga University of Medical Science, Otsu, Japan
| | - Hisatomi Arima
- Center of Epidemiologic Research in Asia, Shiga University of Medical Science, Otsu, Japan
| | - Naoya Hashimoto
- Department of Neurosurgery, Kyoto Prefectural University of Medicine, Kyoto, Japan
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170
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Kim S, Kang M, Choi JH. Thrombectomy using a stent retriever with artificially induced vertebral artery vasospasm in a patient with acute basilar artery occlusion: a case report. Neuroradiol J 2015; 29:90-2. [PMID: 26678752 DOI: 10.1177/1971400915620438] [Citation(s) in RCA: 1] [Impact Index Per Article: 0.1] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 11/15/2022] Open
Abstract
An acute basilar artery occlusion is not an uncommon cause of stroke. It represents 6-10% of large vessel strokes and has been associated with poor clinical outcomes. Multimodal treatments have been introduced to recanalise a basilar artery occlusion successfully. However, all mechanical thrombectomy devices are not always usable in an emergent situation. We present a case of basilar artery occlusion treated with a stent retriever assisted by a vertebral artery vasospasm. We attempted thrombectomy with a stent retriever several times. However, the captured thrombus was not pulled out and migrated to the distal basilar artery and posterior cerebral artery due to anterograde flow of the vertebral artery. We carefully advanced the catheter into the distal vertebral artery and generated a vasospasm. The vertebral artery vasospasm reduced the forward flow significantly like a balloon-guided catheter. The thrombus was pulled out with the stent.
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Affiliation(s)
- Sanghyeon Kim
- Department of Radiology, Busan-Ulsan Regional Cardio-Cerebrovascular Diseases Center, Republic of Korea
| | - Myongjin Kang
- Department of Radiology, Busan-Ulsan Regional Cardio-Cerebrovascular Diseases Center, Republic of Korea
| | - Jae-Hyung Choi
- Department of Neurosurgery, Busan-Ulsan Regional Cardio-Cerebrovascular Diseases Center, Republic of Korea
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171
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Delgado Almandoz JE, Kayan Y, Young ML, Fease JL, Scholz JM, Milner AM, Hehr TH, Roohani P, Mulder M, Tarrel RM. Comparison of clinical outcomes in patients with acute ischemic strokes treated with mechanical thrombectomy using either Solumbra or ADAPT techniques. J Neurointerv Surg 2015; 8:1123-1128. [PMID: 26667250 DOI: 10.1136/neurintsurg-2015-012122] [Citation(s) in RCA: 142] [Impact Index Per Article: 14.2] [Reference Citation Analysis] [Abstract] [Key Words] [Journal Information] [Subscribe] [Scholar Register] [Received: 10/15/2015] [Accepted: 11/16/2015] [Indexed: 11/04/2022]
Abstract
PURPOSE To compare rates of symptomatic intracranial hemorrhage (SICH) and good clinical outcome at 90 days in patients with ischemic strokes from anterior circulation emergent large vessel occlusions (ELVO) treated with mechanical thrombectomy using either Solumbra or A Direct Aspiration first-Pass Thrombectomy (ADAPT) techniques. METHODS We compared clinical characteristics, procedural variables, and clinical outcomes in patients with anterior circulation ELVOs treated with mechanical thrombectomy using either a Solumbra or ADAPT technique at our institution over a 38-month period. SICH was defined using the SITS-MOST criteria. A good clinical outcome was defined as a modified Rankin Scale score of 0-2 at 90 days. RESULTS One hundred patients were included, 55 in the Solumbra group and 45 in the ADAPT group. Patients in the ADAPT group had higher National Institutes of Health Stroke Scale (NIHSS) (19.2 vs 16.8, p=0.02) and a higher proportion of internal carotid artery terminus thrombi (42.2% vs 20%, p=0.03) than patients in the Solumbra group. Patients in the ADAPT group had a trend toward a lower rate of SICH than patients in the Solumbra group (2.2% vs 12.7%, p=0.07). Patients in the ADAPT group had a significantly higher rate of good clinical outcome at 90 days than patients in the Solumbra group (55.6% vs 30.9%, p=0.015). Use of the ADAPT technique (OR 6 (95% CI 1.0 to 31.2), p=0.049) was an independent predictor of a good clinical outcome at 90 days in our cohort. CONCLUSIONS In our cohort, the ADAPT technique was associated with significantly higher good clinical outcomes at 90 days in patients with acute ischemic stroke due to anterior circulation ELVOs treated with mechanical thrombectomy.
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Affiliation(s)
- Josser E Delgado Almandoz
- Division of Neurointerventional Radiology, Neuroscience Institute, Abbott Northwestern Hospital, Minneapolis, Minnesota, USA
| | - Yasha Kayan
- Division of Neurointerventional Radiology, Neuroscience Institute, Abbott Northwestern Hospital, Minneapolis, Minnesota, USA
| | - Mark L Young
- Division of Vascular Neurology, Neuroscience Institute, Abbott Northwestern Hospital, Minneapolis, Minnesota, USA
| | - Jennifer L Fease
- Division of Neurointerventional Radiology, Neuroscience Institute, Abbott Northwestern Hospital, Minneapolis, Minnesota, USA
| | - Jill M Scholz
- Division of Neurointerventional Radiology, Neuroscience Institute, Abbott Northwestern Hospital, Minneapolis, Minnesota, USA
| | - Anna M Milner
- Division of Neurointerventional Radiology, Neuroscience Institute, Abbott Northwestern Hospital, Minneapolis, Minnesota, USA
| | - Timothy H Hehr
- Division of Vascular Neurology, Neuroscience Institute, Abbott Northwestern Hospital, Minneapolis, Minnesota, USA
| | - Pezhman Roohani
- Division of Vascular Neurology, Neuroscience Institute, Abbott Northwestern Hospital, Minneapolis, Minnesota, USA
| | - Maximilian Mulder
- Division of Critical Care Medicine, Neuroscience Institute, Abbott Northwestern Hospital, Minneapolis, Minnesota, USA
| | - Ronald M Tarrel
- Division of Vascular Neurology, Neuroscience Institute, Abbott Northwestern Hospital, Minneapolis, Minnesota, USA
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Phan K, Phan S, Huo YR, Jia F, Mortimer A. Outcomes of endovascular treatment of basilar artery occlusion in the stent retriever era: a systematic review and meta-analysis. J Neurointerv Surg 2015; 8:1107-1115. [DOI: 10.1136/neurintsurg-2015-012089] [Citation(s) in RCA: 64] [Impact Index Per Article: 6.4] [Reference Citation Analysis] [Abstract] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 09/28/2015] [Accepted: 10/30/2015] [Indexed: 11/03/2022]
Abstract
BackgroundStent retriever thrombectomy has recently been found to be effective for anterior circulation strokes, but its efficacy for basilar artery occlusion (BAO) is unclear.ObjectiveTo carry out a systematic review and meta-analysis to analyze the available evidence for the use of stent retrievers for BAO.MethodsTwo independent reviewers searched six databases for studies reporting outcomes following endovascular treatment for BAO.ResultsA total of 17 articles (6 prospective and 11 retrospective) were included. The weighted mean age of patients was 67 years (range 59–82) and 59% were male. Thrombolytic drugs were administered intravenously and intra-arterially in 46% (range 0–88%) and 38% (range 0–90%) of patients, respectively. Weighted pooled estimates of successful recanalization (TICI 2b–3) and good outcome (modified Rankin Scale ≤2) were 80.0% (95% CI 70.7% to 88.0%; I2=80.28%; p<0.001) and 42.8% (95% CI 34.0% to 51.8%; I2=61.83%; p=0.002), respectively. Pooled mortality was 29.4% (95% CI 23.9% to 35.3%; I2=37.01%; p=0.087). Incidence of procedure-related complications and symptomatic hemorrhage was 10.0% (95% CI 3.7% to 18.3%; I2=61.05%; p=0.017) and 6.8% (95% CI 3.5% to 10.8%; I2=37.99%; p=0.08), respectively.ConclusionsStent retriever thrombectomy achieves a high rate of recanalization and functional independence while being relatively safe for patients with BAO. Future prospective studies with long-term follow-up are warranted.
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Mazur MD, Kilburg C, Park MS, Taussky P. Patterns and Clinical Impact of Angiographically Visible Distal Emboli During Thrombectomy With Solitaire for Acute Ischemic Stroke. Neurosurgery 2015; 78:242-50. [DOI: 10.1227/neu.0000000000001135] [Citation(s) in RCA: 10] [Impact Index Per Article: 1.0] [Reference Citation Analysis] [Abstract] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 11/19/2022] Open
Abstract
ABSTRACT
BACKGROUND:
Revascularization rates with stent retrievers after acute ischemic stroke are 69% to 86%, but favorable clinical outcomes occur in just 43% to 58% of cases. New distal emboli may negatively impact clinical outcomes.
OBJECTIVE:
To determine the prevalence and angiographic pattern of distal emboli associated with mechanical thrombectomy using the Solitaire Flow Restoration device and evaluate their correlation with clinical outcome.
METHODS:
We retrospectively reviewed the cerebral angiography of all patients with acute ischemic stroke who underwent mechanical thrombectomy with the use of the Solitaire FR device from 2012 to 2013. Angiographic microcatheter runs prior to Solitaire deployment and after thrombectomy were compared to identify new distal filling defects. Clinical outcome was assessed at discharge and after 90 days.
RESULTS:
Successful revascularization using the Solitaire device occurred in 36 of 39 patients (92%). Three distinct patterns were identified: new distal emboli in the same vascular territory (n = 3), new distal emboli in a new vascular territory (n = 3), and distal emboli that resolved after proximal revascularization (n = 7). Thirteen patients had distal emboli before and after Solitaire runs, and 13 showed no evidence of distal emboli. Favorable outcome (modified Rankin scores 0-2) was seen in 54% of all patients and 83% of patients with new distal emboli; thus, there was no correlation between new emboli and unfavorable clinical outcome (P = .67).
CONCLUSION:
We report an incidence rate of at least 15% of new emboli associated with use of the Solitaire device during thrombectomy in our series. Filling defects after Solitaire use were not associated with poor outcomes at discharge or 90-day follow-up.
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Affiliation(s)
- Marcus D. Mazur
- Department of Neurosurgery, Clinical Neurosciences Center, University of Utah, Salt Lake City, Utah
| | - Craig Kilburg
- Department of Neurosurgery, Clinical Neurosciences Center, University of Utah, Salt Lake City, Utah
| | - Min S. Park
- Department of Neurosurgery, Clinical Neurosciences Center, University of Utah, Salt Lake City, Utah
| | - Philipp Taussky
- Department of Neurosurgery, Clinical Neurosciences Center, University of Utah, Salt Lake City, Utah
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Pfaff J, Herweh C, Pham M, Schieber S, Ringleb PA, Bendszus M, Möhlenbruch M. Mechanical Thrombectomy of Distal Occlusions in the Anterior Cerebral Artery: Recanalization Rates, Periprocedural Complications, and Clinical Outcome. AJNR Am J Neuroradiol 2015; 37:673-8. [PMID: 26542233 DOI: 10.3174/ajnr.a4594] [Citation(s) in RCA: 62] [Impact Index Per Article: 6.2] [Reference Citation Analysis] [Abstract] [Journal Information] [Subscribe] [Scholar Register] [Received: 07/27/2015] [Accepted: 08/29/2015] [Indexed: 12/11/2022]
Abstract
BACKGROUND AND PURPOSE Patients with acute ischemic stroke in the anterior circulation are at risk for either primary or, following mechanical thrombectomy, secondary occlusion of the anterior cerebral artery. Because previous studies had only a limited informative value, we report our data concerning the frequency and location of distal anterior cerebral artery occlusions, recanalization rates, periprocedural complications, and clinical outcome. MATERIALS AND METHODS We performed a retrospective analysis of prospectively collected data of patients with acute ischemic stroke undergoing mechanical thrombectomy in the anterior circulation between June 2010 and April 2015. RESULTS Of 368 patients included in this analysis, we identified 30 (8.1%) with either primary (n = 17, 4.6%) or secondary (n = 13, 3.5%) embolic occlusion of the distal anterior cerebral artery. The recanalization rate after placement of a stent retriever was 88%. Periprocedural complications were rare and included vasospasms (n = 3, 10%) and dissection (n = 1, 3.3%). However, 16 (53.5%) patients sustained an (at least partial) infarction of the anterior cerebral artery territory. Ninety days after the ictus, clinical outcome according to the modified Rankin Scale score was the following: 0-2, n = 11 (36.6%); 3-4, n = 9 (30%); 5-6, n = 10 (33.3%). CONCLUSIONS Occlusions of the distal anterior cerebral artery affect approximately 8% of patients with acute ischemic stroke in the anterior circulation receiving mechanical thrombectomy. Despite a high recanalization rate and a low complication rate, subsequent (partial) infarction in the anterior cerebral artery territory occurs in approximately half of patients. Fortunately, clinical outcome appears not to be predominately unfavorable.
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Affiliation(s)
- J Pfaff
- From the Departments of Neuroradiology (J.P., C.H., M.P., M.B., M.M.)
| | - C Herweh
- From the Departments of Neuroradiology (J.P., C.H., M.P., M.B., M.M.)
| | - M Pham
- From the Departments of Neuroradiology (J.P., C.H., M.P., M.B., M.M.)
| | - S Schieber
- Neurology (S.S., P.A.R.), University of Heidelberg, Heidelberg, Germany
| | - P A Ringleb
- Neurology (S.S., P.A.R.), University of Heidelberg, Heidelberg, Germany
| | - M Bendszus
- From the Departments of Neuroradiology (J.P., C.H., M.P., M.B., M.M.)
| | - M Möhlenbruch
- From the Departments of Neuroradiology (J.P., C.H., M.P., M.B., M.M.)
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Haussen DC, Rebello LC, Nogueira RG. Optimizating Clot Retrieval in Acute Stroke: The Push and Fluff Technique for Closed-Cell Stentrievers. Stroke 2015; 46:2838-42. [PMID: 26374483 DOI: 10.1161/strokeaha.115.010044] [Citation(s) in RCA: 67] [Impact Index Per Article: 6.7] [Reference Citation Analysis] [Abstract] [Key Words] [Journal Information] [Subscribe] [Scholar Register] [Received: 05/11/2015] [Accepted: 07/30/2015] [Indexed: 11/16/2022]
Abstract
BACKGROUND AND PURPOSE We aimed to investigate the safety and efficacy of the Push and Fluff technique (PFT) as compared with the standard unsheathing technique for closed-cell stent retrievers in acute ischemic stroke. METHODS Acute ischemic stroke thrombectomy database was analyzed (September 2010 to January 2015) with the Trevo Retriever as a primary strategy. The PFT was compared with our internal standard unsheathing technique and with the Trevo Versus Merci Retrievers for Thrombectomy Revascularization of Large Vessel Occlusions in Acute Ischemic Stroke 2 (TREVO2) trial. Additionally, a silicon flow model was used to compare cell size/configuration, wall apposition/device diameter, and degree of foreshortening/device length across the 2 techniques. RESULTS One hundred fifty-one out of 662 patients qualified for the study. The PFT (n=71) was associated with higher rates of first-pass reperfusion (54% versus 35%, P=0.03; 54% versus 32.6%, P<0.01), lower number of passes (1.3±0.8 versus 1.8±1.0, P<0.01; 1.7±1.0 versus 2.4±1.6, P<0.01), and higher rates of modified treatment in cerebral ischemia-3 reperfusion (58% versus 40%, P=0.03; 58% versus 14%, P<0.01) as compared with the standard unsheathing technique (n=81) and the TREVO2 Trevo arm (n=88), respectively. No differences in hemorrhagic complications were observed across the groups. The in vitro model indicated that, compared with standard unsheathing technique, PFT resulted in improved wall apposition (device diameter, 75% larger) and cell size (mean area, 51% larger) at the cost of a mild degree of foreshortening (25% length reduction). CONCLUSIONS The PFT is safe and leads to optimization of wall apposition and cell size/configuration, resulting in higher chances of first-pass reperfusion, lower number of passes, and better rates of complete reperfusion.
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Affiliation(s)
- Diogo C Haussen
- From the Emory University School of Medicine/Marcus Stroke and Neuroscience Center-Grady Memorial Hospital, Atlanta, GA
| | - Leticia C Rebello
- From the Emory University School of Medicine/Marcus Stroke and Neuroscience Center-Grady Memorial Hospital, Atlanta, GA
| | - Raul G Nogueira
- From the Emory University School of Medicine/Marcus Stroke and Neuroscience Center-Grady Memorial Hospital, Atlanta, GA.
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Savastano L, Gemmete JJ, Pandey AS, Roark C, Chaudhary N. Republished: Acute ischemic stroke in a child due to basilar artery occlusion treated successfully with a stent retriever. J Neurointerv Surg 2015; 8:e33. [DOI: 10.1136/neurintsurg-2015-011821.rep] [Citation(s) in RCA: 25] [Impact Index Per Article: 2.5] [Reference Citation Analysis] [Abstract] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Accepted: 06/08/2015] [Indexed: 11/03/2022]
Abstract
Ischemic strokes in childhood are rare. Thrombolytic therapy with intravenous (IV) tissue plasminogen activator (tPA) has been the main intervention for the management of pediatric stroke patients, but safety data are lacking and efficacy has been questioned. Recently, successful endovascular treatments for acute ischemic stroke in children have been reported with increasing frequency, suggesting that mechanical thrombectomy can be a safe and effective treatment. We present the case of a 22-month-old child with acute ischemic stroke due to basilar artery occlusion that was successfully treated with a stent retriever.
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177
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Savastano L, Gemmete JJ, Pandey AS, Roark C, Chaudhary N. Acute ischemic stroke in a child due to basilar artery occlusion treated successfully with a stent retriever. BMJ Case Rep 2015; 2015:bcr-2015-011821. [PMID: 26150626 DOI: 10.1136/bcr-2015-011821] [Citation(s) in RCA: 5] [Impact Index Per Article: 0.5] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 11/03/2022] Open
Abstract
Ischemic strokes in childhood are rare. Thrombolytic therapy with intravenous (IV) tissue plasminogen activator (tPA) has been the main intervention for the management of pediatric stroke patients, but safety data are lacking and efficacy has been questioned. Recently, successful endovascular treatments for acute ischemic stroke in children have been reported with increasing frequency, suggesting that mechanical thrombectomy can be a safe and effective treatment. We present the case of a 22-month-old child with acute ischemic stroke due to basilar artery occlusion that was successfully treated with a stent retriever.
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Affiliation(s)
- Luis Savastano
- Department of Neurosurgery, University of Michigan Health System, Ann Arbor, Michigan, USA
| | - Joseph J Gemmete
- Department of Neurosurgery, University of Michigan Health System, Ann Arbor, Michigan, USA Department of Radiology, University of Michigan Health System, Ann Arbor, Michigan, USA
| | - Aditya S Pandey
- Department of Neurosurgery, University of Michigan Health System, Ann Arbor, Michigan, USA Department of Radiology, University of Michigan Health System, Ann Arbor, Michigan, USA
| | - Christopher Roark
- Department of Neurosurgery, University of Michigan Health System, Ann Arbor, Michigan, USA
| | - Neeraj Chaudhary
- Department of Neurosurgery, University of Michigan Health System, Ann Arbor, Michigan, USA Department of Radiology, University of Michigan Health System, Ann Arbor, Michigan, USA
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Powers WJ, Derdeyn CP, Biller J, Coffey CS, Hoh BL, Jauch EC, Johnston KC, Johnston SC, Khalessi AA, Kidwell CS, Meschia JF, Ovbiagele B, Yavagal DR. 2015 American Heart Association/American Stroke Association Focused Update of the 2013 Guidelines for the Early Management of Patients With Acute Ischemic Stroke Regarding Endovascular Treatment: A Guideline for Healthcare Professionals From the American Heart Association/American Stroke Association. Stroke 2015; 46:3020-35. [PMID: 26123479 DOI: 10.1161/str.0000000000000074] [Citation(s) in RCA: 1566] [Impact Index Per Article: 156.6] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Grants] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 12/15/2022]
Abstract
PURPOSE The aim of this guideline is to provide a focused update of the current recommendations for the endovascular treatment of acute ischemic stroke. When there is overlap, the recommendations made here supersede those of previous guidelines. METHODS This focused update analyzes results from 8 randomized, clinical trials of endovascular treatment and other relevant data published since 2013. It is not intended to be a complete literature review from the date of the previous guideline publication but rather to include pivotal new evidence that justifies changes in current recommendations. Members of the writing committee were appointed by the American Heart Association/American Stroke Association Stroke Council's Scientific Statement Oversight Committee and the American Heart Association/American Stroke Association Manuscript Oversight Committee. Strict adherence to the American Heart Association conflict of interest policy was maintained throughout the consensus process. Recommendations follow the American Heart Association/American Stroke Association methods of classifying the level of certainty of the treatment effect and the class of evidence. Prerelease review of the draft guideline was performed by 6 expert peer reviewers and by the members of the Stroke Council Scientific Statement Oversight Committee and Stroke Council Leadership Committee. RESULTS Evidence-based guidelines are presented for the selection of patients with acute ischemic stroke for endovascular treatment, for the endovascular procedure, and for systems of care to facilitate endovascular treatment. CONCLUSIONS Certain endovascular procedures have been demonstrated to provide clinical benefit in selected patients with acute ischemic stroke. Systems of care should be organized to facilitate the delivery of this care.
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179
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Mokin M, Ionita CN, Nagesh SVS, Rudin S, Levy EI, Siddiqui AH. Primary stentriever versus combined stentriever plus aspiration thrombectomy approaches: in vitro stroke model comparison. J Neurointerv Surg 2015; 7:453-7. [PMID: 24789594 PMCID: PMC4214918 DOI: 10.1136/neurintsurg-2014-011148] [Citation(s) in RCA: 59] [Impact Index Per Article: 5.9] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Grants] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 01/31/2014] [Accepted: 04/10/2014] [Indexed: 11/04/2022]
Abstract
BACKGROUND Artificial stroke models can be used for testing various thrombectomy devices. OBJECTIVE To determine the value of combined stentriever-aspiration thrombectomy compared with the stentriever-alone approach. METHODS We designed an in vitro model of the intracranial circulation with a focus on the middle cerebral artery (MCA) that closely resembles the human intracranial circulation. After introducing fresh clot in the MCA, we used conventional biplane angiography and microangiographic fluoroscopy to compare recanalization rates and occurrence of emboli in new, unaffected territory for thrombectomy approaches in which a stentriever (Solitaire flow restoration stentriever, Covidien) was used alone or in combination with continuous manual aspiration through a Navien catheter (Covidien). RESULTS In a total of 22 experiments (11 for each approach), successful clot delivery to the MCA was achieved in all cases. Successful angiographic recanalization (thrombolysis in cerebral infarction score of 2b-3) was achieved more frequently with the combined stentriever-aspiration approach than with the stentriever-alone approach (in 10 vs 4 experiments, p=0.023). Emboli in new territory occurred in three experiments with the stentriever-alone approach, and none were seen with the combined approach (p=0.21). CONCLUSIONS The combined stentriever-aspiration approach to thrombectomy leads to better angiographic recanalization rates than use of the stentriever alone. Further experiments are needed to test the value of balloon-guide catheters and aspiration performed using other types of catheters and modes of aspiration.
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Affiliation(s)
- Maxim Mokin
- Department of Neurosurgery, University at Buffalo, State University of New York, Buffalo, New York, USA
| | - Ciprian N Ionita
- Department of Neurosurgery, University at Buffalo, State University of New York, Buffalo, New York, USA
- Department of Biomedical Engineering, University at Buffalo, State University of New York, Buffalo, New York, USA
- Toshiba Stroke and Vascular Research Center, University at Buffalo, State University of New York, Buffalo, New York, USA
| | - Swetadri Vasan Setlur Nagesh
- Department of Biomedical Engineering, University at Buffalo, State University of New York, Buffalo, New York, USA
- Toshiba Stroke and Vascular Research Center, University at Buffalo, State University of New York, Buffalo, New York, USA
- Department of Electrical Engineering, University at Buffalo, State University of New York, Buffalo, New York, USA
- Department of Mechanical and Aerospace Engineering, University at Buffalo, State University of New York, Buffalo, New York, USA
| | - Stephen Rudin
- Department of Neurosurgery, University at Buffalo, State University of New York, Buffalo, New York, USA
- Department of Biomedical Engineering, University at Buffalo, State University of New York, Buffalo, New York, USA
- Toshiba Stroke and Vascular Research Center, University at Buffalo, State University of New York, Buffalo, New York, USA
- Department of Mechanical and Aerospace Engineering, University at Buffalo, State University of New York, Buffalo, New York, USA
- Department of Physiology and Biophysics, University at Buffalo, State University of New York, Buffalo, New York, USA
| | - Elad I Levy
- Department of Neurosurgery, University at Buffalo, State University of New York, Buffalo, New York, USA
- Toshiba Stroke and Vascular Research Center, University at Buffalo, State University of New York, Buffalo, New York, USA
| | - Adnan H Siddiqui
- Department of Neurosurgery, University at Buffalo, State University of New York, Buffalo, New York, USA
- Toshiba Stroke and Vascular Research Center, University at Buffalo, State University of New York, Buffalo, New York, USA
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180
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Pierot L, Derdeyn C. Interventionalist Perspective on the New Endovascular Trials. Stroke 2015; 46:1440-6. [DOI: 10.1161/strokeaha.115.008416] [Citation(s) in RCA: 23] [Impact Index Per Article: 2.3] [Reference Citation Analysis] [Abstract] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 03/18/2015] [Accepted: 04/03/2015] [Indexed: 11/16/2022]
Abstract
Three recently published trials have conclusively proven the benefit of mechanical endovascular thrombectomy over best medical therapy for patients with acute ischemic stroke and large vessel occlusion. These trials shared some features and differed in others. These similarities and differences in trial design and execution affect the conclusions and recommendations that can be made from the data. We will examine the implications of these studies for neurointerventionists, both for current practice and for future studies. In particular, we will focus on procedural details such as patient selection, devices, adjunctive therapies, treatment time windows, and performance metrics.
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Affiliation(s)
- Laurent Pierot
- From the Department of Neuroradiology, Hôpital Maison-Blanche, Reims, France (L.P.); and Departments of Neurology and Neurological Surgery, Mallinckrodt Institute of Radiology, Washington University School of Medicine, St. Louis, MO (C.D.)
| | - Colin Derdeyn
- From the Department of Neuroradiology, Hôpital Maison-Blanche, Reims, France (L.P.); and Departments of Neurology and Neurological Surgery, Mallinckrodt Institute of Radiology, Washington University School of Medicine, St. Louis, MO (C.D.)
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181
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Shah VA, Martin CO, Hawkins AM, Holloway WE, Junna S, Akhtar N. Groin complications in endovascular mechanical thrombectomy for acute ischemic stroke: a 10-year single center experience. J Neurointerv Surg 2015; 8:568-70. [PMID: 26002302 PMCID: PMC4893108 DOI: 10.1136/neurintsurg-2015-011763] [Citation(s) in RCA: 31] [Impact Index Per Article: 3.1] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Download PDF] [Journal Information] [Subscribe] [Scholar Register] [Received: 03/24/2015] [Accepted: 05/05/2015] [Indexed: 11/18/2022]
Abstract
Background The increasing utilization of balloon guide catheters (BGCs) in thrombectomy therapy for ischemic stroke has led to concerns about large-bore sheaths causing vascular groin complications. Objective To retrospectively assess the impact of large large-bore sheaths and vascular closure devices on groin complication rates at a comprehensive stroke center over a 10-year period. Methods Radiological and clinical records of patients with acute ischemic stroke who underwent mechanical endovascular therapy with an 8Fr or larger sheaths were reviewed. A groin complication was defined as the formation of a groin hematoma, retroperitoneal hematoma, femoral artery pseudoaneurysm, or the need for surgical repair. Information collected included size of sheath, type of hemostatic device, and anticoagulation status of the patient. Blood bank records were also analyzed to identify patients who may have had an undocumented blood transfusion for a groin hematoma. Results A total of 472 patients with acute ischemic stroke who underwent mechanical thrombectomy with a sheath and BGC sized 8Fr or larger were identified. 260 patients (55.1%) had tissue Plasminogen Activator (tPA) administered as part of stroke treatment. Vascular closure devices were used in 97.9% of cases (n=462). Two patients were identified who had definite groin complications and a further two were included as having possible complications. There was a very low rate of clinically significant groin complications (0.4–0.8%) associated with the use of large-bore sheaths. Conclusions These findings suggest that concerns for groin complications should not preclude the use of BGCs and large-bore sheaths in mechanical thrombectomy for acute ischemic stroke.
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Affiliation(s)
- Veer A Shah
- Marion Bloch Neuroscience Institute, St. Luke's Plaza, Kansas City, Missouri, USA
| | - Coleman O Martin
- Marion Bloch Neuroscience Institute, St. Luke's Plaza, Kansas City, Missouri, USA
| | - Angela M Hawkins
- Marion Bloch Neuroscience Institute, St. Luke's Plaza, Kansas City, Missouri, USA
| | - William E Holloway
- Marion Bloch Neuroscience Institute, St. Luke's Plaza, Kansas City, Missouri, USA
| | - Shilpa Junna
- University of Missouri-Kansas City School of Medicine, Kansas City, Missouri, USA
| | - Naveed Akhtar
- Marion Bloch Neuroscience Institute, St. Luke's Plaza, Kansas City, Missouri, USA
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Abstract
Endovascular therapy for acute stroke has evolved with the use of intra-arterial thrombolytics, intravenous/intra-arterial bridging strategies, and mechanical thrombectomy/aspiration devices. Despite widespread use in clinical practice, randomized trials of first-generation devices failed to demonstrate improved outcomes compared with standard care. New-generation stent retriever devices demonstrate higher rates of revascularization and clinical outcomes compared with first-generation devices. Additional randomized trials are underway and have the potential to confirm clinical efficacy of new-generation devices compared with standard care. The role of additional advanced imaging for patient selection remains unclear, and further trials are needed to demonstrate the role of these techniques for patient selection.
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Affiliation(s)
- Chelsea S Kidwell
- Department of Neurology, University of Arizona, 1501 North Campbell Avenue, Tucson, AZ 85724-5023, USA.
| | - Reza Jahan
- Division of Interventional Neuroradiology, Department of Radiology, David Geffen School of Medicine at UCLA, 757 Westwood Plaza, Suite 2129, Los Angeles, CA 90095-7437, USA
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183
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Mokin M, Setlur Nagesh SV, Ionita CN, Levy EI, Siddiqui AH. Comparison of modern stroke thrombectomy approaches using an in vitro cerebrovascular occlusion model. AJNR Am J Neuroradiol 2015; 36:547-51. [PMID: 25376809 DOI: 10.3174/ajnr.a4149] [Citation(s) in RCA: 55] [Impact Index Per Article: 5.5] [Reference Citation Analysis] [Abstract] [MESH Headings] [Grants] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 11/07/2022]
Abstract
BACKGROUND AND PURPOSE A new in vitro cerebrovascular occlusion model of the intracranial circulation was developed recently for testing thrombectomy devices. Using this model, we compared recanalization success associated with different modern endovascular thrombectomy approaches. MATERIALS AND METHODS Model experiments were performed in 4 thrombectomy test groups: 1) primary or direct Stentriever thrombectomy with a conventional guide catheter (control group), 2) primary Stentriever thrombectomy with a balloon-guide catheter, 3) combined Stentriever-continuous aspiration approach, and 4) direct aspiration alone. Successful recanalization was defined as a TICI score of 2b or 3. RESULTS Seventy-one thrombectomy experiments were conducted. Similar rates of TICI 2b-3 scores were achieved with balloon-guide and conventional guide catheters (P = .34). The combined Stentriever plus aspiration approach and the primary aspiration thrombectomy resulted in significantly higher rates of TICI 2b or 3 than the conventional guide-catheter approach in the control group (P = .008 and P = .0001, respectively). The primary Stentriever thrombectomy with the conventional guide catheter showed the highest rate of embolization to new territories (53%). CONCLUSIONS Data from our in vitro model experiments show that the Stentriever thrombectomy under continuous aspiration and primary aspiration thrombectomy approaches led to the highest degree of recanalization.
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Affiliation(s)
- M Mokin
- From the Departments of Neurosurgery (M.M., E.I.L., A.H.S.)
| | - S V Setlur Nagesh
- Biomedical Engineering (S.V.S.N., C.N.I.) Electrical Engineering (S.V.S.N.) Mechanical and Aerospace Engineering (S.V.S.N.)
| | - C N Ionita
- Biomedical Engineering (S.V.S.N., C.N.I.) Toshiba Stroke and Vascular Research Center (C.N.I., E.I.L., A.H.S.), University at Buffalo, State University of New York, Buffalo, New York
| | - E I Levy
- From the Departments of Neurosurgery (M.M., E.I.L., A.H.S.) Radiology (E.I.L., A.H.S.) Toshiba Stroke and Vascular Research Center (C.N.I., E.I.L., A.H.S.), University at Buffalo, State University of New York, Buffalo, New York
| | - A H Siddiqui
- From the Departments of Neurosurgery (M.M., E.I.L., A.H.S.) Radiology (E.I.L., A.H.S.) Toshiba Stroke and Vascular Research Center (C.N.I., E.I.L., A.H.S.), University at Buffalo, State University of New York, Buffalo, New York Jacobs Institute (A.H.S.), Buffalo, New York.
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184
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Mokin M, Setlur Nagesh SV, Ionita CN, Mocco J, Siddiqui AH. Stent retriever thrombectomy with the Cover accessory device versus proximal protection with a balloon guide catheter: in vitro stroke model comparison. J Neurointerv Surg 2015; 8:413-7. [DOI: 10.1136/neurintsurg-2014-011617] [Citation(s) in RCA: 42] [Impact Index Per Article: 4.2] [Reference Citation Analysis] [Abstract] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 12/16/2014] [Accepted: 01/23/2015] [Indexed: 11/04/2022]
Abstract
BackgroundRecently, an in vitro cerebrovascular occlusion model of the intracranial circulation was developed for testing thrombectomy devices. The Cover accessory (Lazarus Effect; Campbell, California, USA) is a novel nitinol braided mesh device that surrounds the stent retrieval device and thrombus during the retrieval process to help prevent clot fragmentation and embolization.MethodsUsing the in vitro model, after introducing fresh clot into the middle cerebral artery, we compared rates of target vessel recanalization and embolization in new territories (areas in which clot had not been introduced) achieved with the Solitaire Flow Restoration (FR) stent retriever (Covidien, Irvine, California) in conjunction with the use of a conventional guide catheter (control group), a balloon guide catheter (BGC group), and the Cover device (Cover group).ResultsIn a total of 51 thrombectomy experiments (20 in the control group, 20 in the BGC group, and 11 in the Cover group), successful recanalization (Thrombolysis in Cerebral Infarction 2b–3) was achieved more frequently in the Cover group than in the control group or in the BGC group (p=0.047 and p=0.020, respectively). Embolization of new (previously unaffected) territories occurred in five (25%) experiments from the control group and in three (15%) experiments from the BGC group, whereas no embolization of new territories was seen with Cover device assisted thrombectomy.ConclusionsApplication of the Cover device in this experimental model resulted in higher successful recanalization rates, no embolic events, and was more effective than use of the conventional guide catheter or BGC.
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185
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Chueh JY, Puri AS, Wakhloo AK, Gounis MJ. Risk of distal embolization with stent retriever thrombectomy and ADAPT. J Neurointerv Surg 2014; 8:197-202. [PMID: 25540180 PMCID: PMC4752657 DOI: 10.1136/neurintsurg-2014-011491] [Citation(s) in RCA: 179] [Impact Index Per Article: 16.3] [Reference Citation Analysis] [Abstract] [Key Words] [Download PDF] [Figures] [Journal Information] [Subscribe] [Scholar Register] [Received: 09/26/2014] [Accepted: 12/01/2014] [Indexed: 11/21/2022]
Abstract
Background There is a discrepancy in clinical outcomes and the achieved recanalization rates with stent retrievers in the endovascular treatment of ischemic stroke. It is our hypothesis that procedural release of embolic particulate may be one contributor to poor outcomes and is a modifiable risk. The goal of this study is to assess various treatment strategies that reduce the risk of distal emboli. Methods Mechanical thrombectomy was simulated in a vascular phantom with collateral circulation. Hard fragment-prone clots (HFC) and soft elastic clots (SECs) were used to generate middle cerebral artery (MCA) occlusions that were retrieved by the Solitaire FR devices through (1) an 8 Fr balloon guide catheter (BGC), (2) a 5 Fr distal access catheter at the proximal aspect of the clot in the MCA (Solumbra), or (3) a 6 Fr guide catheter with the tip at the cervical internal carotid artery (guide catheter, GC). Results from mechanical thrombectomy were compared with those from direct aspiration using the Penumbra 5MAX catheter. The primary endpoint was the size distribution of emboli to the distribution of the middle and anterior cerebral arteries. Results Solumbra was the most efficient method for reducing HFC fragments (p<0.05) while BGC was the best method for preventing SEC fragmentation (p<0.05). The risk of forming HFC distal emboli (>1000 µm) was significantly increased using GC. A non-statistically significant benefit of direct aspiration was observed in several subgroups of emboli with size 50–1000 µm. However, compared with the stent-retriever mechanical thrombectomy techniques, direct aspiration significantly increased the risk of SEC fragmentation (<50 µm) by at least twofold. Conclusions The risk of distal embolization is affected by the catheterization technique and clot mechanics.
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Affiliation(s)
- Ju-Yu Chueh
- Department of Radiology, New England Center for Stroke Research, University of Massachusetts Medical School, Worcester, Massachusetts, USA
| | - Ajit S Puri
- Department of Radiology, New England Center for Stroke Research, University of Massachusetts Medical School, Worcester, Massachusetts, USA
| | - Ajay K Wakhloo
- Department of Radiology, New England Center for Stroke Research, University of Massachusetts Medical School, Worcester, Massachusetts, USA
| | - Matthew J Gounis
- Department of Radiology, New England Center for Stroke Research, University of Massachusetts Medical School, Worcester, Massachusetts, USA
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Gupta R, Rai AT, Hirsch JA, Linfante I, Mack W, Mocco J, Albuquerque F, Chen M, Fiorella D, Tarr RW. A research roadmap of future endovascular stroke trials. J Neurointerv Surg 2014; 7:82-3. [DOI: 10.1136/neurintsurg-2014-011592] [Citation(s) in RCA: 5] [Impact Index Per Article: 0.5] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 01/22/2023]
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Castonguay AC, Zaidat OO, Novakovic R, Nguyen TN, Taqi MA, Gupta R, Sun CHJ, Martin C, Holloway WE, Mueller-Kronast N, E English J, Linfante I, Dabus G, Malisch TW, Marden FA, Bozorgchami H, Xavier A, Rai AT, Froehler MT, Badruddin A, Abraham MG, Janardhan V, Shaltoni H, Yoo AJ, Abou-Chebl A, Chen PR, Britz GW, Kaushal R, Nanda A, A Issa M, Nogueira RG. Influence of age on clinical and revascularization outcomes in the North American Solitaire Stent-Retriever Acute Stroke Registry. Stroke 2014; 45:3631-6. [PMID: 25358699 DOI: 10.1161/strokeaha.114.006487] [Citation(s) in RCA: 68] [Impact Index Per Article: 6.2] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 11/16/2022]
Abstract
BACKGROUND AND PURPOSE The Solitaire With the Intention for Thrombectomy (SWIFT) and thrombectomy revascularization of large vessel occlusions in acute ischemic stroke (TREVO 2) trial results demonstrated improved recanalization rates with mechanical thrombectomy; however, outcomes in the elderly population remain poorly understood. Here, we report the effect of age on clinical and angiographic outcome within the North American Solitaire-FR Stent-Retriever Acute Stroke (NASA) Registry. METHODS The NASA Registry recruited sites to submit data on consecutive patients treated with Solitaire-FR. Influence of age on clinical and angiographic outcomes was assessed by dichotomizing the cohort into ≤80 and >80 years of age. RESULTS Three hundred fifty-four patients underwent treatment in 24 centers; 276 patients were ≤80 years and 78 were >80 years of age. Mean age in the ≤80 and >80 cohorts was 62.2±13.2 and 85.2±3.8 years, respectively. Of patients >80 years, 27.3% had a 90-day modified Rankin Score ≤2 versus 45.4% ≤80 years (P=0.02). Mortality was 43.9% and 27.3% in the >80 and ≤80 years cohorts, respectively (P=0.01). There was no significant difference in time to revascularization, revascularization success, or symptomatic intracranial hemorrhage between the groups. Multivariate analysis showed age >80 years as an independent predictor of poor clinical outcome and mortality. Within the >80 cohort, National Institutes of Health Stroke Scale (NIHSS), revascularization rate, rescue therapy use, and symptomatic intracranial hemorrhage were independent predictors of mortality. CONCLUSION Greater than 80 years of age is predictive of poor clinical outcome and increased mortality compared with younger patients in the NASA registry. However, intravenous tissue-type plasminogen activator use, lower NIHSS, and shorter revascularization time are associated with better outcomes. Further studies are needed to understand the endovascular therapy role in this cohort compared with medical therapy.
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Affiliation(s)
- Alicia C Castonguay
- From the Departments of Neurology (A.C.C., O.O.Z., M.A.I.), Neurosurgery (O.O.Z.), and Radiology (O.O.Z.), Medical College of Wisconsin/Froedtert Hospital, Milwaukee, WI; Departments of Radiology and Neurology, UT Southwestern Medical Center, Dallas, TX (R.N.); Departments of Neurology, Neurosurgery, and Radiology, Boston Medical Center, Boston, MA (T.N.N.); Desert Regional Medical Center, Palm Springs, CA (M.A.T.); Wellstar Neurosurgery Kennestone Hospital, Atlanta, GA (R.G.); Department of Neurology, Emory University School of Medicine, Atlanta, GA (C.-H.J.S., R.G.N.); Saint Luke's Kansas City, Kansas City, MO (C.M., W.E.H.); Department of Neurology, Delray Medical Center, Delray Beach, FL (N.M.-K.); California Pacific Medical Center, San Francisco, CA (J.E.E.); Division of Interventional Neuroradiology, Baptist Cardiac and Vascular Institute, Miami, FL (I.L., G.D.); Alexian Brothers Medical Center, Elk Grove Village, IL (T.W.M., F.A.M.); Oregon Health and Science University, Portland, OR (H.B.); Department of Neurology, Wayne State University School of Medicine, Detroit, MI (A.X.); Department of Radiology, West Virginia University Hospital, Morgantown, WV (A.T.R.); Departments of Neurology, Neurosurgery, and Radiology, Vanderbilt University Medical Center, Nashville, TN (M.T.F.); Provena Saint Joseph Medical Center, Joliet, IL (A.B.); University of Kansas Medical Center, Kansas City, KS (M.G.A.); Texas Stroke Institute, Plano, TX (V.J., A.A.-C.); University of Texas Health Science Center, Houston, TX (H.S.); Department of Radiology, Division of Diagnostic and Interventional Neuroradiology, Massachusetts General Hospital, Boston, MA (A.J.Y.); University of Texas, Houston, TX (P.R.C.); Department of Neurosurgery, Methodist Neurological Institute, Houston, TX (G.W.B.); Saint Louis University, St. Louis, MO (R.K.); and University of Missouri, Columbia, MO (A.N.)
| | - Osama O Zaidat
- From the Departments of Neurology (A.C.C., O.O.Z., M.A.I.), Neurosurgery (O.O.Z.), and Radiology (O.O.Z.), Medical College of Wisconsin/Froedtert Hospital, Milwaukee, WI; Departments of Radiology and Neurology, UT Southwestern Medical Center, Dallas, TX (R.N.); Departments of Neurology, Neurosurgery, and Radiology, Boston Medical Center, Boston, MA (T.N.N.); Desert Regional Medical Center, Palm Springs, CA (M.A.T.); Wellstar Neurosurgery Kennestone Hospital, Atlanta, GA (R.G.); Department of Neurology, Emory University School of Medicine, Atlanta, GA (C.-H.J.S., R.G.N.); Saint Luke's Kansas City, Kansas City, MO (C.M., W.E.H.); Department of Neurology, Delray Medical Center, Delray Beach, FL (N.M.-K.); California Pacific Medical Center, San Francisco, CA (J.E.E.); Division of Interventional Neuroradiology, Baptist Cardiac and Vascular Institute, Miami, FL (I.L., G.D.); Alexian Brothers Medical Center, Elk Grove Village, IL (T.W.M., F.A.M.); Oregon Health and Science University, Portland, OR (H.B.); Department of Neurology, Wayne State University School of Medicine, Detroit, MI (A.X.); Department of Radiology, West Virginia University Hospital, Morgantown, WV (A.T.R.); Departments of Neurology, Neurosurgery, and Radiology, Vanderbilt University Medical Center, Nashville, TN (M.T.F.); Provena Saint Joseph Medical Center, Joliet, IL (A.B.); University of Kansas Medical Center, Kansas City, KS (M.G.A.); Texas Stroke Institute, Plano, TX (V.J., A.A.-C.); University of Texas Health Science Center, Houston, TX (H.S.); Department of Radiology, Division of Diagnostic and Interventional Neuroradiology, Massachusetts General Hospital, Boston, MA (A.J.Y.); University of Texas, Houston, TX (P.R.C.); Department of Neurosurgery, Methodist Neurological Institute, Houston, TX (G.W.B.); Saint Louis University, St. Louis, MO (R.K.); and University of Missouri, Columbia, MO (A.N.).
| | - Roberta Novakovic
- From the Departments of Neurology (A.C.C., O.O.Z., M.A.I.), Neurosurgery (O.O.Z.), and Radiology (O.O.Z.), Medical College of Wisconsin/Froedtert Hospital, Milwaukee, WI; Departments of Radiology and Neurology, UT Southwestern Medical Center, Dallas, TX (R.N.); Departments of Neurology, Neurosurgery, and Radiology, Boston Medical Center, Boston, MA (T.N.N.); Desert Regional Medical Center, Palm Springs, CA (M.A.T.); Wellstar Neurosurgery Kennestone Hospital, Atlanta, GA (R.G.); Department of Neurology, Emory University School of Medicine, Atlanta, GA (C.-H.J.S., R.G.N.); Saint Luke's Kansas City, Kansas City, MO (C.M., W.E.H.); Department of Neurology, Delray Medical Center, Delray Beach, FL (N.M.-K.); California Pacific Medical Center, San Francisco, CA (J.E.E.); Division of Interventional Neuroradiology, Baptist Cardiac and Vascular Institute, Miami, FL (I.L., G.D.); Alexian Brothers Medical Center, Elk Grove Village, IL (T.W.M., F.A.M.); Oregon Health and Science University, Portland, OR (H.B.); Department of Neurology, Wayne State University School of Medicine, Detroit, MI (A.X.); Department of Radiology, West Virginia University Hospital, Morgantown, WV (A.T.R.); Departments of Neurology, Neurosurgery, and Radiology, Vanderbilt University Medical Center, Nashville, TN (M.T.F.); Provena Saint Joseph Medical Center, Joliet, IL (A.B.); University of Kansas Medical Center, Kansas City, KS (M.G.A.); Texas Stroke Institute, Plano, TX (V.J., A.A.-C.); University of Texas Health Science Center, Houston, TX (H.S.); Department of Radiology, Division of Diagnostic and Interventional Neuroradiology, Massachusetts General Hospital, Boston, MA (A.J.Y.); University of Texas, Houston, TX (P.R.C.); Department of Neurosurgery, Methodist Neurological Institute, Houston, TX (G.W.B.); Saint Louis University, St. Louis, MO (R.K.); and University of Missouri, Columbia, MO (A.N.)
| | - Thanh N Nguyen
- From the Departments of Neurology (A.C.C., O.O.Z., M.A.I.), Neurosurgery (O.O.Z.), and Radiology (O.O.Z.), Medical College of Wisconsin/Froedtert Hospital, Milwaukee, WI; Departments of Radiology and Neurology, UT Southwestern Medical Center, Dallas, TX (R.N.); Departments of Neurology, Neurosurgery, and Radiology, Boston Medical Center, Boston, MA (T.N.N.); Desert Regional Medical Center, Palm Springs, CA (M.A.T.); Wellstar Neurosurgery Kennestone Hospital, Atlanta, GA (R.G.); Department of Neurology, Emory University School of Medicine, Atlanta, GA (C.-H.J.S., R.G.N.); Saint Luke's Kansas City, Kansas City, MO (C.M., W.E.H.); Department of Neurology, Delray Medical Center, Delray Beach, FL (N.M.-K.); California Pacific Medical Center, San Francisco, CA (J.E.E.); Division of Interventional Neuroradiology, Baptist Cardiac and Vascular Institute, Miami, FL (I.L., G.D.); Alexian Brothers Medical Center, Elk Grove Village, IL (T.W.M., F.A.M.); Oregon Health and Science University, Portland, OR (H.B.); Department of Neurology, Wayne State University School of Medicine, Detroit, MI (A.X.); Department of Radiology, West Virginia University Hospital, Morgantown, WV (A.T.R.); Departments of Neurology, Neurosurgery, and Radiology, Vanderbilt University Medical Center, Nashville, TN (M.T.F.); Provena Saint Joseph Medical Center, Joliet, IL (A.B.); University of Kansas Medical Center, Kansas City, KS (M.G.A.); Texas Stroke Institute, Plano, TX (V.J., A.A.-C.); University of Texas Health Science Center, Houston, TX (H.S.); Department of Radiology, Division of Diagnostic and Interventional Neuroradiology, Massachusetts General Hospital, Boston, MA (A.J.Y.); University of Texas, Houston, TX (P.R.C.); Department of Neurosurgery, Methodist Neurological Institute, Houston, TX (G.W.B.); Saint Louis University, St. Louis, MO (R.K.); and University of Missouri, Columbia, MO (A.N.)
| | - M Asif Taqi
- From the Departments of Neurology (A.C.C., O.O.Z., M.A.I.), Neurosurgery (O.O.Z.), and Radiology (O.O.Z.), Medical College of Wisconsin/Froedtert Hospital, Milwaukee, WI; Departments of Radiology and Neurology, UT Southwestern Medical Center, Dallas, TX (R.N.); Departments of Neurology, Neurosurgery, and Radiology, Boston Medical Center, Boston, MA (T.N.N.); Desert Regional Medical Center, Palm Springs, CA (M.A.T.); Wellstar Neurosurgery Kennestone Hospital, Atlanta, GA (R.G.); Department of Neurology, Emory University School of Medicine, Atlanta, GA (C.-H.J.S., R.G.N.); Saint Luke's Kansas City, Kansas City, MO (C.M., W.E.H.); Department of Neurology, Delray Medical Center, Delray Beach, FL (N.M.-K.); California Pacific Medical Center, San Francisco, CA (J.E.E.); Division of Interventional Neuroradiology, Baptist Cardiac and Vascular Institute, Miami, FL (I.L., G.D.); Alexian Brothers Medical Center, Elk Grove Village, IL (T.W.M., F.A.M.); Oregon Health and Science University, Portland, OR (H.B.); Department of Neurology, Wayne State University School of Medicine, Detroit, MI (A.X.); Department of Radiology, West Virginia University Hospital, Morgantown, WV (A.T.R.); Departments of Neurology, Neurosurgery, and Radiology, Vanderbilt University Medical Center, Nashville, TN (M.T.F.); Provena Saint Joseph Medical Center, Joliet, IL (A.B.); University of Kansas Medical Center, Kansas City, KS (M.G.A.); Texas Stroke Institute, Plano, TX (V.J., A.A.-C.); University of Texas Health Science Center, Houston, TX (H.S.); Department of Radiology, Division of Diagnostic and Interventional Neuroradiology, Massachusetts General Hospital, Boston, MA (A.J.Y.); University of Texas, Houston, TX (P.R.C.); Department of Neurosurgery, Methodist Neurological Institute, Houston, TX (G.W.B.); Saint Louis University, St. Louis, MO (R.K.); and University of Missouri, Columbia, MO (A.N.)
| | - Rishi Gupta
- From the Departments of Neurology (A.C.C., O.O.Z., M.A.I.), Neurosurgery (O.O.Z.), and Radiology (O.O.Z.), Medical College of Wisconsin/Froedtert Hospital, Milwaukee, WI; Departments of Radiology and Neurology, UT Southwestern Medical Center, Dallas, TX (R.N.); Departments of Neurology, Neurosurgery, and Radiology, Boston Medical Center, Boston, MA (T.N.N.); Desert Regional Medical Center, Palm Springs, CA (M.A.T.); Wellstar Neurosurgery Kennestone Hospital, Atlanta, GA (R.G.); Department of Neurology, Emory University School of Medicine, Atlanta, GA (C.-H.J.S., R.G.N.); Saint Luke's Kansas City, Kansas City, MO (C.M., W.E.H.); Department of Neurology, Delray Medical Center, Delray Beach, FL (N.M.-K.); California Pacific Medical Center, San Francisco, CA (J.E.E.); Division of Interventional Neuroradiology, Baptist Cardiac and Vascular Institute, Miami, FL (I.L., G.D.); Alexian Brothers Medical Center, Elk Grove Village, IL (T.W.M., F.A.M.); Oregon Health and Science University, Portland, OR (H.B.); Department of Neurology, Wayne State University School of Medicine, Detroit, MI (A.X.); Department of Radiology, West Virginia University Hospital, Morgantown, WV (A.T.R.); Departments of Neurology, Neurosurgery, and Radiology, Vanderbilt University Medical Center, Nashville, TN (M.T.F.); Provena Saint Joseph Medical Center, Joliet, IL (A.B.); University of Kansas Medical Center, Kansas City, KS (M.G.A.); Texas Stroke Institute, Plano, TX (V.J., A.A.-C.); University of Texas Health Science Center, Houston, TX (H.S.); Department of Radiology, Division of Diagnostic and Interventional Neuroradiology, Massachusetts General Hospital, Boston, MA (A.J.Y.); University of Texas, Houston, TX (P.R.C.); Department of Neurosurgery, Methodist Neurological Institute, Houston, TX (G.W.B.); Saint Louis University, St. Louis, MO (R.K.); and University of Missouri, Columbia, MO (A.N.)
| | - Chung-Huan J Sun
- From the Departments of Neurology (A.C.C., O.O.Z., M.A.I.), Neurosurgery (O.O.Z.), and Radiology (O.O.Z.), Medical College of Wisconsin/Froedtert Hospital, Milwaukee, WI; Departments of Radiology and Neurology, UT Southwestern Medical Center, Dallas, TX (R.N.); Departments of Neurology, Neurosurgery, and Radiology, Boston Medical Center, Boston, MA (T.N.N.); Desert Regional Medical Center, Palm Springs, CA (M.A.T.); Wellstar Neurosurgery Kennestone Hospital, Atlanta, GA (R.G.); Department of Neurology, Emory University School of Medicine, Atlanta, GA (C.-H.J.S., R.G.N.); Saint Luke's Kansas City, Kansas City, MO (C.M., W.E.H.); Department of Neurology, Delray Medical Center, Delray Beach, FL (N.M.-K.); California Pacific Medical Center, San Francisco, CA (J.E.E.); Division of Interventional Neuroradiology, Baptist Cardiac and Vascular Institute, Miami, FL (I.L., G.D.); Alexian Brothers Medical Center, Elk Grove Village, IL (T.W.M., F.A.M.); Oregon Health and Science University, Portland, OR (H.B.); Department of Neurology, Wayne State University School of Medicine, Detroit, MI (A.X.); Department of Radiology, West Virginia University Hospital, Morgantown, WV (A.T.R.); Departments of Neurology, Neurosurgery, and Radiology, Vanderbilt University Medical Center, Nashville, TN (M.T.F.); Provena Saint Joseph Medical Center, Joliet, IL (A.B.); University of Kansas Medical Center, Kansas City, KS (M.G.A.); Texas Stroke Institute, Plano, TX (V.J., A.A.-C.); University of Texas Health Science Center, Houston, TX (H.S.); Department of Radiology, Division of Diagnostic and Interventional Neuroradiology, Massachusetts General Hospital, Boston, MA (A.J.Y.); University of Texas, Houston, TX (P.R.C.); Department of Neurosurgery, Methodist Neurological Institute, Houston, TX (G.W.B.); Saint Louis University, St. Louis, MO (R.K.); and University of Missouri, Columbia, MO (A.N.)
| | - Coleman Martin
- From the Departments of Neurology (A.C.C., O.O.Z., M.A.I.), Neurosurgery (O.O.Z.), and Radiology (O.O.Z.), Medical College of Wisconsin/Froedtert Hospital, Milwaukee, WI; Departments of Radiology and Neurology, UT Southwestern Medical Center, Dallas, TX (R.N.); Departments of Neurology, Neurosurgery, and Radiology, Boston Medical Center, Boston, MA (T.N.N.); Desert Regional Medical Center, Palm Springs, CA (M.A.T.); Wellstar Neurosurgery Kennestone Hospital, Atlanta, GA (R.G.); Department of Neurology, Emory University School of Medicine, Atlanta, GA (C.-H.J.S., R.G.N.); Saint Luke's Kansas City, Kansas City, MO (C.M., W.E.H.); Department of Neurology, Delray Medical Center, Delray Beach, FL (N.M.-K.); California Pacific Medical Center, San Francisco, CA (J.E.E.); Division of Interventional Neuroradiology, Baptist Cardiac and Vascular Institute, Miami, FL (I.L., G.D.); Alexian Brothers Medical Center, Elk Grove Village, IL (T.W.M., F.A.M.); Oregon Health and Science University, Portland, OR (H.B.); Department of Neurology, Wayne State University School of Medicine, Detroit, MI (A.X.); Department of Radiology, West Virginia University Hospital, Morgantown, WV (A.T.R.); Departments of Neurology, Neurosurgery, and Radiology, Vanderbilt University Medical Center, Nashville, TN (M.T.F.); Provena Saint Joseph Medical Center, Joliet, IL (A.B.); University of Kansas Medical Center, Kansas City, KS (M.G.A.); Texas Stroke Institute, Plano, TX (V.J., A.A.-C.); University of Texas Health Science Center, Houston, TX (H.S.); Department of Radiology, Division of Diagnostic and Interventional Neuroradiology, Massachusetts General Hospital, Boston, MA (A.J.Y.); University of Texas, Houston, TX (P.R.C.); Department of Neurosurgery, Methodist Neurological Institute, Houston, TX (G.W.B.); Saint Louis University, St. Louis, MO (R.K.); and University of Missouri, Columbia, MO (A.N.)
| | - William E Holloway
- From the Departments of Neurology (A.C.C., O.O.Z., M.A.I.), Neurosurgery (O.O.Z.), and Radiology (O.O.Z.), Medical College of Wisconsin/Froedtert Hospital, Milwaukee, WI; Departments of Radiology and Neurology, UT Southwestern Medical Center, Dallas, TX (R.N.); Departments of Neurology, Neurosurgery, and Radiology, Boston Medical Center, Boston, MA (T.N.N.); Desert Regional Medical Center, Palm Springs, CA (M.A.T.); Wellstar Neurosurgery Kennestone Hospital, Atlanta, GA (R.G.); Department of Neurology, Emory University School of Medicine, Atlanta, GA (C.-H.J.S., R.G.N.); Saint Luke's Kansas City, Kansas City, MO (C.M., W.E.H.); Department of Neurology, Delray Medical Center, Delray Beach, FL (N.M.-K.); California Pacific Medical Center, San Francisco, CA (J.E.E.); Division of Interventional Neuroradiology, Baptist Cardiac and Vascular Institute, Miami, FL (I.L., G.D.); Alexian Brothers Medical Center, Elk Grove Village, IL (T.W.M., F.A.M.); Oregon Health and Science University, Portland, OR (H.B.); Department of Neurology, Wayne State University School of Medicine, Detroit, MI (A.X.); Department of Radiology, West Virginia University Hospital, Morgantown, WV (A.T.R.); Departments of Neurology, Neurosurgery, and Radiology, Vanderbilt University Medical Center, Nashville, TN (M.T.F.); Provena Saint Joseph Medical Center, Joliet, IL (A.B.); University of Kansas Medical Center, Kansas City, KS (M.G.A.); Texas Stroke Institute, Plano, TX (V.J., A.A.-C.); University of Texas Health Science Center, Houston, TX (H.S.); Department of Radiology, Division of Diagnostic and Interventional Neuroradiology, Massachusetts General Hospital, Boston, MA (A.J.Y.); University of Texas, Houston, TX (P.R.C.); Department of Neurosurgery, Methodist Neurological Institute, Houston, TX (G.W.B.); Saint Louis University, St. Louis, MO (R.K.); and University of Missouri, Columbia, MO (A.N.)
| | - Nils Mueller-Kronast
- From the Departments of Neurology (A.C.C., O.O.Z., M.A.I.), Neurosurgery (O.O.Z.), and Radiology (O.O.Z.), Medical College of Wisconsin/Froedtert Hospital, Milwaukee, WI; Departments of Radiology and Neurology, UT Southwestern Medical Center, Dallas, TX (R.N.); Departments of Neurology, Neurosurgery, and Radiology, Boston Medical Center, Boston, MA (T.N.N.); Desert Regional Medical Center, Palm Springs, CA (M.A.T.); Wellstar Neurosurgery Kennestone Hospital, Atlanta, GA (R.G.); Department of Neurology, Emory University School of Medicine, Atlanta, GA (C.-H.J.S., R.G.N.); Saint Luke's Kansas City, Kansas City, MO (C.M., W.E.H.); Department of Neurology, Delray Medical Center, Delray Beach, FL (N.M.-K.); California Pacific Medical Center, San Francisco, CA (J.E.E.); Division of Interventional Neuroradiology, Baptist Cardiac and Vascular Institute, Miami, FL (I.L., G.D.); Alexian Brothers Medical Center, Elk Grove Village, IL (T.W.M., F.A.M.); Oregon Health and Science University, Portland, OR (H.B.); Department of Neurology, Wayne State University School of Medicine, Detroit, MI (A.X.); Department of Radiology, West Virginia University Hospital, Morgantown, WV (A.T.R.); Departments of Neurology, Neurosurgery, and Radiology, Vanderbilt University Medical Center, Nashville, TN (M.T.F.); Provena Saint Joseph Medical Center, Joliet, IL (A.B.); University of Kansas Medical Center, Kansas City, KS (M.G.A.); Texas Stroke Institute, Plano, TX (V.J., A.A.-C.); University of Texas Health Science Center, Houston, TX (H.S.); Department of Radiology, Division of Diagnostic and Interventional Neuroradiology, Massachusetts General Hospital, Boston, MA (A.J.Y.); University of Texas, Houston, TX (P.R.C.); Department of Neurosurgery, Methodist Neurological Institute, Houston, TX (G.W.B.); Saint Louis University, St. Louis, MO (R.K.); and University of Missouri, Columbia, MO (A.N.)
| | - Joey E English
- From the Departments of Neurology (A.C.C., O.O.Z., M.A.I.), Neurosurgery (O.O.Z.), and Radiology (O.O.Z.), Medical College of Wisconsin/Froedtert Hospital, Milwaukee, WI; Departments of Radiology and Neurology, UT Southwestern Medical Center, Dallas, TX (R.N.); Departments of Neurology, Neurosurgery, and Radiology, Boston Medical Center, Boston, MA (T.N.N.); Desert Regional Medical Center, Palm Springs, CA (M.A.T.); Wellstar Neurosurgery Kennestone Hospital, Atlanta, GA (R.G.); Department of Neurology, Emory University School of Medicine, Atlanta, GA (C.-H.J.S., R.G.N.); Saint Luke's Kansas City, Kansas City, MO (C.M., W.E.H.); Department of Neurology, Delray Medical Center, Delray Beach, FL (N.M.-K.); California Pacific Medical Center, San Francisco, CA (J.E.E.); Division of Interventional Neuroradiology, Baptist Cardiac and Vascular Institute, Miami, FL (I.L., G.D.); Alexian Brothers Medical Center, Elk Grove Village, IL (T.W.M., F.A.M.); Oregon Health and Science University, Portland, OR (H.B.); Department of Neurology, Wayne State University School of Medicine, Detroit, MI (A.X.); Department of Radiology, West Virginia University Hospital, Morgantown, WV (A.T.R.); Departments of Neurology, Neurosurgery, and Radiology, Vanderbilt University Medical Center, Nashville, TN (M.T.F.); Provena Saint Joseph Medical Center, Joliet, IL (A.B.); University of Kansas Medical Center, Kansas City, KS (M.G.A.); Texas Stroke Institute, Plano, TX (V.J., A.A.-C.); University of Texas Health Science Center, Houston, TX (H.S.); Department of Radiology, Division of Diagnostic and Interventional Neuroradiology, Massachusetts General Hospital, Boston, MA (A.J.Y.); University of Texas, Houston, TX (P.R.C.); Department of Neurosurgery, Methodist Neurological Institute, Houston, TX (G.W.B.); Saint Louis University, St. Louis, MO (R.K.); and University of Missouri, Columbia, MO (A.N.)
| | - Italo Linfante
- From the Departments of Neurology (A.C.C., O.O.Z., M.A.I.), Neurosurgery (O.O.Z.), and Radiology (O.O.Z.), Medical College of Wisconsin/Froedtert Hospital, Milwaukee, WI; Departments of Radiology and Neurology, UT Southwestern Medical Center, Dallas, TX (R.N.); Departments of Neurology, Neurosurgery, and Radiology, Boston Medical Center, Boston, MA (T.N.N.); Desert Regional Medical Center, Palm Springs, CA (M.A.T.); Wellstar Neurosurgery Kennestone Hospital, Atlanta, GA (R.G.); Department of Neurology, Emory University School of Medicine, Atlanta, GA (C.-H.J.S., R.G.N.); Saint Luke's Kansas City, Kansas City, MO (C.M., W.E.H.); Department of Neurology, Delray Medical Center, Delray Beach, FL (N.M.-K.); California Pacific Medical Center, San Francisco, CA (J.E.E.); Division of Interventional Neuroradiology, Baptist Cardiac and Vascular Institute, Miami, FL (I.L., G.D.); Alexian Brothers Medical Center, Elk Grove Village, IL (T.W.M., F.A.M.); Oregon Health and Science University, Portland, OR (H.B.); Department of Neurology, Wayne State University School of Medicine, Detroit, MI (A.X.); Department of Radiology, West Virginia University Hospital, Morgantown, WV (A.T.R.); Departments of Neurology, Neurosurgery, and Radiology, Vanderbilt University Medical Center, Nashville, TN (M.T.F.); Provena Saint Joseph Medical Center, Joliet, IL (A.B.); University of Kansas Medical Center, Kansas City, KS (M.G.A.); Texas Stroke Institute, Plano, TX (V.J., A.A.-C.); University of Texas Health Science Center, Houston, TX (H.S.); Department of Radiology, Division of Diagnostic and Interventional Neuroradiology, Massachusetts General Hospital, Boston, MA (A.J.Y.); University of Texas, Houston, TX (P.R.C.); Department of Neurosurgery, Methodist Neurological Institute, Houston, TX (G.W.B.); Saint Louis University, St. Louis, MO (R.K.); and University of Missouri, Columbia, MO (A.N.)
| | - Guilherme Dabus
- From the Departments of Neurology (A.C.C., O.O.Z., M.A.I.), Neurosurgery (O.O.Z.), and Radiology (O.O.Z.), Medical College of Wisconsin/Froedtert Hospital, Milwaukee, WI; Departments of Radiology and Neurology, UT Southwestern Medical Center, Dallas, TX (R.N.); Departments of Neurology, Neurosurgery, and Radiology, Boston Medical Center, Boston, MA (T.N.N.); Desert Regional Medical Center, Palm Springs, CA (M.A.T.); Wellstar Neurosurgery Kennestone Hospital, Atlanta, GA (R.G.); Department of Neurology, Emory University School of Medicine, Atlanta, GA (C.-H.J.S., R.G.N.); Saint Luke's Kansas City, Kansas City, MO (C.M., W.E.H.); Department of Neurology, Delray Medical Center, Delray Beach, FL (N.M.-K.); California Pacific Medical Center, San Francisco, CA (J.E.E.); Division of Interventional Neuroradiology, Baptist Cardiac and Vascular Institute, Miami, FL (I.L., G.D.); Alexian Brothers Medical Center, Elk Grove Village, IL (T.W.M., F.A.M.); Oregon Health and Science University, Portland, OR (H.B.); Department of Neurology, Wayne State University School of Medicine, Detroit, MI (A.X.); Department of Radiology, West Virginia University Hospital, Morgantown, WV (A.T.R.); Departments of Neurology, Neurosurgery, and Radiology, Vanderbilt University Medical Center, Nashville, TN (M.T.F.); Provena Saint Joseph Medical Center, Joliet, IL (A.B.); University of Kansas Medical Center, Kansas City, KS (M.G.A.); Texas Stroke Institute, Plano, TX (V.J., A.A.-C.); University of Texas Health Science Center, Houston, TX (H.S.); Department of Radiology, Division of Diagnostic and Interventional Neuroradiology, Massachusetts General Hospital, Boston, MA (A.J.Y.); University of Texas, Houston, TX (P.R.C.); Department of Neurosurgery, Methodist Neurological Institute, Houston, TX (G.W.B.); Saint Louis University, St. Louis, MO (R.K.); and University of Missouri, Columbia, MO (A.N.)
| | - Tim W Malisch
- From the Departments of Neurology (A.C.C., O.O.Z., M.A.I.), Neurosurgery (O.O.Z.), and Radiology (O.O.Z.), Medical College of Wisconsin/Froedtert Hospital, Milwaukee, WI; Departments of Radiology and Neurology, UT Southwestern Medical Center, Dallas, TX (R.N.); Departments of Neurology, Neurosurgery, and Radiology, Boston Medical Center, Boston, MA (T.N.N.); Desert Regional Medical Center, Palm Springs, CA (M.A.T.); Wellstar Neurosurgery Kennestone Hospital, Atlanta, GA (R.G.); Department of Neurology, Emory University School of Medicine, Atlanta, GA (C.-H.J.S., R.G.N.); Saint Luke's Kansas City, Kansas City, MO (C.M., W.E.H.); Department of Neurology, Delray Medical Center, Delray Beach, FL (N.M.-K.); California Pacific Medical Center, San Francisco, CA (J.E.E.); Division of Interventional Neuroradiology, Baptist Cardiac and Vascular Institute, Miami, FL (I.L., G.D.); Alexian Brothers Medical Center, Elk Grove Village, IL (T.W.M., F.A.M.); Oregon Health and Science University, Portland, OR (H.B.); Department of Neurology, Wayne State University School of Medicine, Detroit, MI (A.X.); Department of Radiology, West Virginia University Hospital, Morgantown, WV (A.T.R.); Departments of Neurology, Neurosurgery, and Radiology, Vanderbilt University Medical Center, Nashville, TN (M.T.F.); Provena Saint Joseph Medical Center, Joliet, IL (A.B.); University of Kansas Medical Center, Kansas City, KS (M.G.A.); Texas Stroke Institute, Plano, TX (V.J., A.A.-C.); University of Texas Health Science Center, Houston, TX (H.S.); Department of Radiology, Division of Diagnostic and Interventional Neuroradiology, Massachusetts General Hospital, Boston, MA (A.J.Y.); University of Texas, Houston, TX (P.R.C.); Department of Neurosurgery, Methodist Neurological Institute, Houston, TX (G.W.B.); Saint Louis University, St. Louis, MO (R.K.); and University of Missouri, Columbia, MO (A.N.)
| | - Franklin A Marden
- From the Departments of Neurology (A.C.C., O.O.Z., M.A.I.), Neurosurgery (O.O.Z.), and Radiology (O.O.Z.), Medical College of Wisconsin/Froedtert Hospital, Milwaukee, WI; Departments of Radiology and Neurology, UT Southwestern Medical Center, Dallas, TX (R.N.); Departments of Neurology, Neurosurgery, and Radiology, Boston Medical Center, Boston, MA (T.N.N.); Desert Regional Medical Center, Palm Springs, CA (M.A.T.); Wellstar Neurosurgery Kennestone Hospital, Atlanta, GA (R.G.); Department of Neurology, Emory University School of Medicine, Atlanta, GA (C.-H.J.S., R.G.N.); Saint Luke's Kansas City, Kansas City, MO (C.M., W.E.H.); Department of Neurology, Delray Medical Center, Delray Beach, FL (N.M.-K.); California Pacific Medical Center, San Francisco, CA (J.E.E.); Division of Interventional Neuroradiology, Baptist Cardiac and Vascular Institute, Miami, FL (I.L., G.D.); Alexian Brothers Medical Center, Elk Grove Village, IL (T.W.M., F.A.M.); Oregon Health and Science University, Portland, OR (H.B.); Department of Neurology, Wayne State University School of Medicine, Detroit, MI (A.X.); Department of Radiology, West Virginia University Hospital, Morgantown, WV (A.T.R.); Departments of Neurology, Neurosurgery, and Radiology, Vanderbilt University Medical Center, Nashville, TN (M.T.F.); Provena Saint Joseph Medical Center, Joliet, IL (A.B.); University of Kansas Medical Center, Kansas City, KS (M.G.A.); Texas Stroke Institute, Plano, TX (V.J., A.A.-C.); University of Texas Health Science Center, Houston, TX (H.S.); Department of Radiology, Division of Diagnostic and Interventional Neuroradiology, Massachusetts General Hospital, Boston, MA (A.J.Y.); University of Texas, Houston, TX (P.R.C.); Department of Neurosurgery, Methodist Neurological Institute, Houston, TX (G.W.B.); Saint Louis University, St. Louis, MO (R.K.); and University of Missouri, Columbia, MO (A.N.)
| | - Hormozd Bozorgchami
- From the Departments of Neurology (A.C.C., O.O.Z., M.A.I.), Neurosurgery (O.O.Z.), and Radiology (O.O.Z.), Medical College of Wisconsin/Froedtert Hospital, Milwaukee, WI; Departments of Radiology and Neurology, UT Southwestern Medical Center, Dallas, TX (R.N.); Departments of Neurology, Neurosurgery, and Radiology, Boston Medical Center, Boston, MA (T.N.N.); Desert Regional Medical Center, Palm Springs, CA (M.A.T.); Wellstar Neurosurgery Kennestone Hospital, Atlanta, GA (R.G.); Department of Neurology, Emory University School of Medicine, Atlanta, GA (C.-H.J.S., R.G.N.); Saint Luke's Kansas City, Kansas City, MO (C.M., W.E.H.); Department of Neurology, Delray Medical Center, Delray Beach, FL (N.M.-K.); California Pacific Medical Center, San Francisco, CA (J.E.E.); Division of Interventional Neuroradiology, Baptist Cardiac and Vascular Institute, Miami, FL (I.L., G.D.); Alexian Brothers Medical Center, Elk Grove Village, IL (T.W.M., F.A.M.); Oregon Health and Science University, Portland, OR (H.B.); Department of Neurology, Wayne State University School of Medicine, Detroit, MI (A.X.); Department of Radiology, West Virginia University Hospital, Morgantown, WV (A.T.R.); Departments of Neurology, Neurosurgery, and Radiology, Vanderbilt University Medical Center, Nashville, TN (M.T.F.); Provena Saint Joseph Medical Center, Joliet, IL (A.B.); University of Kansas Medical Center, Kansas City, KS (M.G.A.); Texas Stroke Institute, Plano, TX (V.J., A.A.-C.); University of Texas Health Science Center, Houston, TX (H.S.); Department of Radiology, Division of Diagnostic and Interventional Neuroradiology, Massachusetts General Hospital, Boston, MA (A.J.Y.); University of Texas, Houston, TX (P.R.C.); Department of Neurosurgery, Methodist Neurological Institute, Houston, TX (G.W.B.); Saint Louis University, St. Louis, MO (R.K.); and University of Missouri, Columbia, MO (A.N.)
| | - Andrew Xavier
- From the Departments of Neurology (A.C.C., O.O.Z., M.A.I.), Neurosurgery (O.O.Z.), and Radiology (O.O.Z.), Medical College of Wisconsin/Froedtert Hospital, Milwaukee, WI; Departments of Radiology and Neurology, UT Southwestern Medical Center, Dallas, TX (R.N.); Departments of Neurology, Neurosurgery, and Radiology, Boston Medical Center, Boston, MA (T.N.N.); Desert Regional Medical Center, Palm Springs, CA (M.A.T.); Wellstar Neurosurgery Kennestone Hospital, Atlanta, GA (R.G.); Department of Neurology, Emory University School of Medicine, Atlanta, GA (C.-H.J.S., R.G.N.); Saint Luke's Kansas City, Kansas City, MO (C.M., W.E.H.); Department of Neurology, Delray Medical Center, Delray Beach, FL (N.M.-K.); California Pacific Medical Center, San Francisco, CA (J.E.E.); Division of Interventional Neuroradiology, Baptist Cardiac and Vascular Institute, Miami, FL (I.L., G.D.); Alexian Brothers Medical Center, Elk Grove Village, IL (T.W.M., F.A.M.); Oregon Health and Science University, Portland, OR (H.B.); Department of Neurology, Wayne State University School of Medicine, Detroit, MI (A.X.); Department of Radiology, West Virginia University Hospital, Morgantown, WV (A.T.R.); Departments of Neurology, Neurosurgery, and Radiology, Vanderbilt University Medical Center, Nashville, TN (M.T.F.); Provena Saint Joseph Medical Center, Joliet, IL (A.B.); University of Kansas Medical Center, Kansas City, KS (M.G.A.); Texas Stroke Institute, Plano, TX (V.J., A.A.-C.); University of Texas Health Science Center, Houston, TX (H.S.); Department of Radiology, Division of Diagnostic and Interventional Neuroradiology, Massachusetts General Hospital, Boston, MA (A.J.Y.); University of Texas, Houston, TX (P.R.C.); Department of Neurosurgery, Methodist Neurological Institute, Houston, TX (G.W.B.); Saint Louis University, St. Louis, MO (R.K.); and University of Missouri, Columbia, MO (A.N.)
| | - Ansaar T Rai
- From the Departments of Neurology (A.C.C., O.O.Z., M.A.I.), Neurosurgery (O.O.Z.), and Radiology (O.O.Z.), Medical College of Wisconsin/Froedtert Hospital, Milwaukee, WI; Departments of Radiology and Neurology, UT Southwestern Medical Center, Dallas, TX (R.N.); Departments of Neurology, Neurosurgery, and Radiology, Boston Medical Center, Boston, MA (T.N.N.); Desert Regional Medical Center, Palm Springs, CA (M.A.T.); Wellstar Neurosurgery Kennestone Hospital, Atlanta, GA (R.G.); Department of Neurology, Emory University School of Medicine, Atlanta, GA (C.-H.J.S., R.G.N.); Saint Luke's Kansas City, Kansas City, MO (C.M., W.E.H.); Department of Neurology, Delray Medical Center, Delray Beach, FL (N.M.-K.); California Pacific Medical Center, San Francisco, CA (J.E.E.); Division of Interventional Neuroradiology, Baptist Cardiac and Vascular Institute, Miami, FL (I.L., G.D.); Alexian Brothers Medical Center, Elk Grove Village, IL (T.W.M., F.A.M.); Oregon Health and Science University, Portland, OR (H.B.); Department of Neurology, Wayne State University School of Medicine, Detroit, MI (A.X.); Department of Radiology, West Virginia University Hospital, Morgantown, WV (A.T.R.); Departments of Neurology, Neurosurgery, and Radiology, Vanderbilt University Medical Center, Nashville, TN (M.T.F.); Provena Saint Joseph Medical Center, Joliet, IL (A.B.); University of Kansas Medical Center, Kansas City, KS (M.G.A.); Texas Stroke Institute, Plano, TX (V.J., A.A.-C.); University of Texas Health Science Center, Houston, TX (H.S.); Department of Radiology, Division of Diagnostic and Interventional Neuroradiology, Massachusetts General Hospital, Boston, MA (A.J.Y.); University of Texas, Houston, TX (P.R.C.); Department of Neurosurgery, Methodist Neurological Institute, Houston, TX (G.W.B.); Saint Louis University, St. Louis, MO (R.K.); and University of Missouri, Columbia, MO (A.N.)
| | - Michael T Froehler
- From the Departments of Neurology (A.C.C., O.O.Z., M.A.I.), Neurosurgery (O.O.Z.), and Radiology (O.O.Z.), Medical College of Wisconsin/Froedtert Hospital, Milwaukee, WI; Departments of Radiology and Neurology, UT Southwestern Medical Center, Dallas, TX (R.N.); Departments of Neurology, Neurosurgery, and Radiology, Boston Medical Center, Boston, MA (T.N.N.); Desert Regional Medical Center, Palm Springs, CA (M.A.T.); Wellstar Neurosurgery Kennestone Hospital, Atlanta, GA (R.G.); Department of Neurology, Emory University School of Medicine, Atlanta, GA (C.-H.J.S., R.G.N.); Saint Luke's Kansas City, Kansas City, MO (C.M., W.E.H.); Department of Neurology, Delray Medical Center, Delray Beach, FL (N.M.-K.); California Pacific Medical Center, San Francisco, CA (J.E.E.); Division of Interventional Neuroradiology, Baptist Cardiac and Vascular Institute, Miami, FL (I.L., G.D.); Alexian Brothers Medical Center, Elk Grove Village, IL (T.W.M., F.A.M.); Oregon Health and Science University, Portland, OR (H.B.); Department of Neurology, Wayne State University School of Medicine, Detroit, MI (A.X.); Department of Radiology, West Virginia University Hospital, Morgantown, WV (A.T.R.); Departments of Neurology, Neurosurgery, and Radiology, Vanderbilt University Medical Center, Nashville, TN (M.T.F.); Provena Saint Joseph Medical Center, Joliet, IL (A.B.); University of Kansas Medical Center, Kansas City, KS (M.G.A.); Texas Stroke Institute, Plano, TX (V.J., A.A.-C.); University of Texas Health Science Center, Houston, TX (H.S.); Department of Radiology, Division of Diagnostic and Interventional Neuroradiology, Massachusetts General Hospital, Boston, MA (A.J.Y.); University of Texas, Houston, TX (P.R.C.); Department of Neurosurgery, Methodist Neurological Institute, Houston, TX (G.W.B.); Saint Louis University, St. Louis, MO (R.K.); and University of Missouri, Columbia, MO (A.N.)
| | - Aamir Badruddin
- From the Departments of Neurology (A.C.C., O.O.Z., M.A.I.), Neurosurgery (O.O.Z.), and Radiology (O.O.Z.), Medical College of Wisconsin/Froedtert Hospital, Milwaukee, WI; Departments of Radiology and Neurology, UT Southwestern Medical Center, Dallas, TX (R.N.); Departments of Neurology, Neurosurgery, and Radiology, Boston Medical Center, Boston, MA (T.N.N.); Desert Regional Medical Center, Palm Springs, CA (M.A.T.); Wellstar Neurosurgery Kennestone Hospital, Atlanta, GA (R.G.); Department of Neurology, Emory University School of Medicine, Atlanta, GA (C.-H.J.S., R.G.N.); Saint Luke's Kansas City, Kansas City, MO (C.M., W.E.H.); Department of Neurology, Delray Medical Center, Delray Beach, FL (N.M.-K.); California Pacific Medical Center, San Francisco, CA (J.E.E.); Division of Interventional Neuroradiology, Baptist Cardiac and Vascular Institute, Miami, FL (I.L., G.D.); Alexian Brothers Medical Center, Elk Grove Village, IL (T.W.M., F.A.M.); Oregon Health and Science University, Portland, OR (H.B.); Department of Neurology, Wayne State University School of Medicine, Detroit, MI (A.X.); Department of Radiology, West Virginia University Hospital, Morgantown, WV (A.T.R.); Departments of Neurology, Neurosurgery, and Radiology, Vanderbilt University Medical Center, Nashville, TN (M.T.F.); Provena Saint Joseph Medical Center, Joliet, IL (A.B.); University of Kansas Medical Center, Kansas City, KS (M.G.A.); Texas Stroke Institute, Plano, TX (V.J., A.A.-C.); University of Texas Health Science Center, Houston, TX (H.S.); Department of Radiology, Division of Diagnostic and Interventional Neuroradiology, Massachusetts General Hospital, Boston, MA (A.J.Y.); University of Texas, Houston, TX (P.R.C.); Department of Neurosurgery, Methodist Neurological Institute, Houston, TX (G.W.B.); Saint Louis University, St. Louis, MO (R.K.); and University of Missouri, Columbia, MO (A.N.)
| | - Michael G Abraham
- From the Departments of Neurology (A.C.C., O.O.Z., M.A.I.), Neurosurgery (O.O.Z.), and Radiology (O.O.Z.), Medical College of Wisconsin/Froedtert Hospital, Milwaukee, WI; Departments of Radiology and Neurology, UT Southwestern Medical Center, Dallas, TX (R.N.); Departments of Neurology, Neurosurgery, and Radiology, Boston Medical Center, Boston, MA (T.N.N.); Desert Regional Medical Center, Palm Springs, CA (M.A.T.); Wellstar Neurosurgery Kennestone Hospital, Atlanta, GA (R.G.); Department of Neurology, Emory University School of Medicine, Atlanta, GA (C.-H.J.S., R.G.N.); Saint Luke's Kansas City, Kansas City, MO (C.M., W.E.H.); Department of Neurology, Delray Medical Center, Delray Beach, FL (N.M.-K.); California Pacific Medical Center, San Francisco, CA (J.E.E.); Division of Interventional Neuroradiology, Baptist Cardiac and Vascular Institute, Miami, FL (I.L., G.D.); Alexian Brothers Medical Center, Elk Grove Village, IL (T.W.M., F.A.M.); Oregon Health and Science University, Portland, OR (H.B.); Department of Neurology, Wayne State University School of Medicine, Detroit, MI (A.X.); Department of Radiology, West Virginia University Hospital, Morgantown, WV (A.T.R.); Departments of Neurology, Neurosurgery, and Radiology, Vanderbilt University Medical Center, Nashville, TN (M.T.F.); Provena Saint Joseph Medical Center, Joliet, IL (A.B.); University of Kansas Medical Center, Kansas City, KS (M.G.A.); Texas Stroke Institute, Plano, TX (V.J., A.A.-C.); University of Texas Health Science Center, Houston, TX (H.S.); Department of Radiology, Division of Diagnostic and Interventional Neuroradiology, Massachusetts General Hospital, Boston, MA (A.J.Y.); University of Texas, Houston, TX (P.R.C.); Department of Neurosurgery, Methodist Neurological Institute, Houston, TX (G.W.B.); Saint Louis University, St. Louis, MO (R.K.); and University of Missouri, Columbia, MO (A.N.)
| | - Vallabh Janardhan
- From the Departments of Neurology (A.C.C., O.O.Z., M.A.I.), Neurosurgery (O.O.Z.), and Radiology (O.O.Z.), Medical College of Wisconsin/Froedtert Hospital, Milwaukee, WI; Departments of Radiology and Neurology, UT Southwestern Medical Center, Dallas, TX (R.N.); Departments of Neurology, Neurosurgery, and Radiology, Boston Medical Center, Boston, MA (T.N.N.); Desert Regional Medical Center, Palm Springs, CA (M.A.T.); Wellstar Neurosurgery Kennestone Hospital, Atlanta, GA (R.G.); Department of Neurology, Emory University School of Medicine, Atlanta, GA (C.-H.J.S., R.G.N.); Saint Luke's Kansas City, Kansas City, MO (C.M., W.E.H.); Department of Neurology, Delray Medical Center, Delray Beach, FL (N.M.-K.); California Pacific Medical Center, San Francisco, CA (J.E.E.); Division of Interventional Neuroradiology, Baptist Cardiac and Vascular Institute, Miami, FL (I.L., G.D.); Alexian Brothers Medical Center, Elk Grove Village, IL (T.W.M., F.A.M.); Oregon Health and Science University, Portland, OR (H.B.); Department of Neurology, Wayne State University School of Medicine, Detroit, MI (A.X.); Department of Radiology, West Virginia University Hospital, Morgantown, WV (A.T.R.); Departments of Neurology, Neurosurgery, and Radiology, Vanderbilt University Medical Center, Nashville, TN (M.T.F.); Provena Saint Joseph Medical Center, Joliet, IL (A.B.); University of Kansas Medical Center, Kansas City, KS (M.G.A.); Texas Stroke Institute, Plano, TX (V.J., A.A.-C.); University of Texas Health Science Center, Houston, TX (H.S.); Department of Radiology, Division of Diagnostic and Interventional Neuroradiology, Massachusetts General Hospital, Boston, MA (A.J.Y.); University of Texas, Houston, TX (P.R.C.); Department of Neurosurgery, Methodist Neurological Institute, Houston, TX (G.W.B.); Saint Louis University, St. Louis, MO (R.K.); and University of Missouri, Columbia, MO (A.N.)
| | - Hashem Shaltoni
- From the Departments of Neurology (A.C.C., O.O.Z., M.A.I.), Neurosurgery (O.O.Z.), and Radiology (O.O.Z.), Medical College of Wisconsin/Froedtert Hospital, Milwaukee, WI; Departments of Radiology and Neurology, UT Southwestern Medical Center, Dallas, TX (R.N.); Departments of Neurology, Neurosurgery, and Radiology, Boston Medical Center, Boston, MA (T.N.N.); Desert Regional Medical Center, Palm Springs, CA (M.A.T.); Wellstar Neurosurgery Kennestone Hospital, Atlanta, GA (R.G.); Department of Neurology, Emory University School of Medicine, Atlanta, GA (C.-H.J.S., R.G.N.); Saint Luke's Kansas City, Kansas City, MO (C.M., W.E.H.); Department of Neurology, Delray Medical Center, Delray Beach, FL (N.M.-K.); California Pacific Medical Center, San Francisco, CA (J.E.E.); Division of Interventional Neuroradiology, Baptist Cardiac and Vascular Institute, Miami, FL (I.L., G.D.); Alexian Brothers Medical Center, Elk Grove Village, IL (T.W.M., F.A.M.); Oregon Health and Science University, Portland, OR (H.B.); Department of Neurology, Wayne State University School of Medicine, Detroit, MI (A.X.); Department of Radiology, West Virginia University Hospital, Morgantown, WV (A.T.R.); Departments of Neurology, Neurosurgery, and Radiology, Vanderbilt University Medical Center, Nashville, TN (M.T.F.); Provena Saint Joseph Medical Center, Joliet, IL (A.B.); University of Kansas Medical Center, Kansas City, KS (M.G.A.); Texas Stroke Institute, Plano, TX (V.J., A.A.-C.); University of Texas Health Science Center, Houston, TX (H.S.); Department of Radiology, Division of Diagnostic and Interventional Neuroradiology, Massachusetts General Hospital, Boston, MA (A.J.Y.); University of Texas, Houston, TX (P.R.C.); Department of Neurosurgery, Methodist Neurological Institute, Houston, TX (G.W.B.); Saint Louis University, St. Louis, MO (R.K.); and University of Missouri, Columbia, MO (A.N.)
| | - Albert J Yoo
- From the Departments of Neurology (A.C.C., O.O.Z., M.A.I.), Neurosurgery (O.O.Z.), and Radiology (O.O.Z.), Medical College of Wisconsin/Froedtert Hospital, Milwaukee, WI; Departments of Radiology and Neurology, UT Southwestern Medical Center, Dallas, TX (R.N.); Departments of Neurology, Neurosurgery, and Radiology, Boston Medical Center, Boston, MA (T.N.N.); Desert Regional Medical Center, Palm Springs, CA (M.A.T.); Wellstar Neurosurgery Kennestone Hospital, Atlanta, GA (R.G.); Department of Neurology, Emory University School of Medicine, Atlanta, GA (C.-H.J.S., R.G.N.); Saint Luke's Kansas City, Kansas City, MO (C.M., W.E.H.); Department of Neurology, Delray Medical Center, Delray Beach, FL (N.M.-K.); California Pacific Medical Center, San Francisco, CA (J.E.E.); Division of Interventional Neuroradiology, Baptist Cardiac and Vascular Institute, Miami, FL (I.L., G.D.); Alexian Brothers Medical Center, Elk Grove Village, IL (T.W.M., F.A.M.); Oregon Health and Science University, Portland, OR (H.B.); Department of Neurology, Wayne State University School of Medicine, Detroit, MI (A.X.); Department of Radiology, West Virginia University Hospital, Morgantown, WV (A.T.R.); Departments of Neurology, Neurosurgery, and Radiology, Vanderbilt University Medical Center, Nashville, TN (M.T.F.); Provena Saint Joseph Medical Center, Joliet, IL (A.B.); University of Kansas Medical Center, Kansas City, KS (M.G.A.); Texas Stroke Institute, Plano, TX (V.J., A.A.-C.); University of Texas Health Science Center, Houston, TX (H.S.); Department of Radiology, Division of Diagnostic and Interventional Neuroradiology, Massachusetts General Hospital, Boston, MA (A.J.Y.); University of Texas, Houston, TX (P.R.C.); Department of Neurosurgery, Methodist Neurological Institute, Houston, TX (G.W.B.); Saint Louis University, St. Louis, MO (R.K.); and University of Missouri, Columbia, MO (A.N.)
| | - Alex Abou-Chebl
- From the Departments of Neurology (A.C.C., O.O.Z., M.A.I.), Neurosurgery (O.O.Z.), and Radiology (O.O.Z.), Medical College of Wisconsin/Froedtert Hospital, Milwaukee, WI; Departments of Radiology and Neurology, UT Southwestern Medical Center, Dallas, TX (R.N.); Departments of Neurology, Neurosurgery, and Radiology, Boston Medical Center, Boston, MA (T.N.N.); Desert Regional Medical Center, Palm Springs, CA (M.A.T.); Wellstar Neurosurgery Kennestone Hospital, Atlanta, GA (R.G.); Department of Neurology, Emory University School of Medicine, Atlanta, GA (C.-H.J.S., R.G.N.); Saint Luke's Kansas City, Kansas City, MO (C.M., W.E.H.); Department of Neurology, Delray Medical Center, Delray Beach, FL (N.M.-K.); California Pacific Medical Center, San Francisco, CA (J.E.E.); Division of Interventional Neuroradiology, Baptist Cardiac and Vascular Institute, Miami, FL (I.L., G.D.); Alexian Brothers Medical Center, Elk Grove Village, IL (T.W.M., F.A.M.); Oregon Health and Science University, Portland, OR (H.B.); Department of Neurology, Wayne State University School of Medicine, Detroit, MI (A.X.); Department of Radiology, West Virginia University Hospital, Morgantown, WV (A.T.R.); Departments of Neurology, Neurosurgery, and Radiology, Vanderbilt University Medical Center, Nashville, TN (M.T.F.); Provena Saint Joseph Medical Center, Joliet, IL (A.B.); University of Kansas Medical Center, Kansas City, KS (M.G.A.); Texas Stroke Institute, Plano, TX (V.J., A.A.-C.); University of Texas Health Science Center, Houston, TX (H.S.); Department of Radiology, Division of Diagnostic and Interventional Neuroradiology, Massachusetts General Hospital, Boston, MA (A.J.Y.); University of Texas, Houston, TX (P.R.C.); Department of Neurosurgery, Methodist Neurological Institute, Houston, TX (G.W.B.); Saint Louis University, St. Louis, MO (R.K.); and University of Missouri, Columbia, MO (A.N.)
| | - Peng R Chen
- From the Departments of Neurology (A.C.C., O.O.Z., M.A.I.), Neurosurgery (O.O.Z.), and Radiology (O.O.Z.), Medical College of Wisconsin/Froedtert Hospital, Milwaukee, WI; Departments of Radiology and Neurology, UT Southwestern Medical Center, Dallas, TX (R.N.); Departments of Neurology, Neurosurgery, and Radiology, Boston Medical Center, Boston, MA (T.N.N.); Desert Regional Medical Center, Palm Springs, CA (M.A.T.); Wellstar Neurosurgery Kennestone Hospital, Atlanta, GA (R.G.); Department of Neurology, Emory University School of Medicine, Atlanta, GA (C.-H.J.S., R.G.N.); Saint Luke's Kansas City, Kansas City, MO (C.M., W.E.H.); Department of Neurology, Delray Medical Center, Delray Beach, FL (N.M.-K.); California Pacific Medical Center, San Francisco, CA (J.E.E.); Division of Interventional Neuroradiology, Baptist Cardiac and Vascular Institute, Miami, FL (I.L., G.D.); Alexian Brothers Medical Center, Elk Grove Village, IL (T.W.M., F.A.M.); Oregon Health and Science University, Portland, OR (H.B.); Department of Neurology, Wayne State University School of Medicine, Detroit, MI (A.X.); Department of Radiology, West Virginia University Hospital, Morgantown, WV (A.T.R.); Departments of Neurology, Neurosurgery, and Radiology, Vanderbilt University Medical Center, Nashville, TN (M.T.F.); Provena Saint Joseph Medical Center, Joliet, IL (A.B.); University of Kansas Medical Center, Kansas City, KS (M.G.A.); Texas Stroke Institute, Plano, TX (V.J., A.A.-C.); University of Texas Health Science Center, Houston, TX (H.S.); Department of Radiology, Division of Diagnostic and Interventional Neuroradiology, Massachusetts General Hospital, Boston, MA (A.J.Y.); University of Texas, Houston, TX (P.R.C.); Department of Neurosurgery, Methodist Neurological Institute, Houston, TX (G.W.B.); Saint Louis University, St. Louis, MO (R.K.); and University of Missouri, Columbia, MO (A.N.)
| | - Gavin W Britz
- From the Departments of Neurology (A.C.C., O.O.Z., M.A.I.), Neurosurgery (O.O.Z.), and Radiology (O.O.Z.), Medical College of Wisconsin/Froedtert Hospital, Milwaukee, WI; Departments of Radiology and Neurology, UT Southwestern Medical Center, Dallas, TX (R.N.); Departments of Neurology, Neurosurgery, and Radiology, Boston Medical Center, Boston, MA (T.N.N.); Desert Regional Medical Center, Palm Springs, CA (M.A.T.); Wellstar Neurosurgery Kennestone Hospital, Atlanta, GA (R.G.); Department of Neurology, Emory University School of Medicine, Atlanta, GA (C.-H.J.S., R.G.N.); Saint Luke's Kansas City, Kansas City, MO (C.M., W.E.H.); Department of Neurology, Delray Medical Center, Delray Beach, FL (N.M.-K.); California Pacific Medical Center, San Francisco, CA (J.E.E.); Division of Interventional Neuroradiology, Baptist Cardiac and Vascular Institute, Miami, FL (I.L., G.D.); Alexian Brothers Medical Center, Elk Grove Village, IL (T.W.M., F.A.M.); Oregon Health and Science University, Portland, OR (H.B.); Department of Neurology, Wayne State University School of Medicine, Detroit, MI (A.X.); Department of Radiology, West Virginia University Hospital, Morgantown, WV (A.T.R.); Departments of Neurology, Neurosurgery, and Radiology, Vanderbilt University Medical Center, Nashville, TN (M.T.F.); Provena Saint Joseph Medical Center, Joliet, IL (A.B.); University of Kansas Medical Center, Kansas City, KS (M.G.A.); Texas Stroke Institute, Plano, TX (V.J., A.A.-C.); University of Texas Health Science Center, Houston, TX (H.S.); Department of Radiology, Division of Diagnostic and Interventional Neuroradiology, Massachusetts General Hospital, Boston, MA (A.J.Y.); University of Texas, Houston, TX (P.R.C.); Department of Neurosurgery, Methodist Neurological Institute, Houston, TX (G.W.B.); Saint Louis University, St. Louis, MO (R.K.); and University of Missouri, Columbia, MO (A.N.)
| | - Ritesh Kaushal
- From the Departments of Neurology (A.C.C., O.O.Z., M.A.I.), Neurosurgery (O.O.Z.), and Radiology (O.O.Z.), Medical College of Wisconsin/Froedtert Hospital, Milwaukee, WI; Departments of Radiology and Neurology, UT Southwestern Medical Center, Dallas, TX (R.N.); Departments of Neurology, Neurosurgery, and Radiology, Boston Medical Center, Boston, MA (T.N.N.); Desert Regional Medical Center, Palm Springs, CA (M.A.T.); Wellstar Neurosurgery Kennestone Hospital, Atlanta, GA (R.G.); Department of Neurology, Emory University School of Medicine, Atlanta, GA (C.-H.J.S., R.G.N.); Saint Luke's Kansas City, Kansas City, MO (C.M., W.E.H.); Department of Neurology, Delray Medical Center, Delray Beach, FL (N.M.-K.); California Pacific Medical Center, San Francisco, CA (J.E.E.); Division of Interventional Neuroradiology, Baptist Cardiac and Vascular Institute, Miami, FL (I.L., G.D.); Alexian Brothers Medical Center, Elk Grove Village, IL (T.W.M., F.A.M.); Oregon Health and Science University, Portland, OR (H.B.); Department of Neurology, Wayne State University School of Medicine, Detroit, MI (A.X.); Department of Radiology, West Virginia University Hospital, Morgantown, WV (A.T.R.); Departments of Neurology, Neurosurgery, and Radiology, Vanderbilt University Medical Center, Nashville, TN (M.T.F.); Provena Saint Joseph Medical Center, Joliet, IL (A.B.); University of Kansas Medical Center, Kansas City, KS (M.G.A.); Texas Stroke Institute, Plano, TX (V.J., A.A.-C.); University of Texas Health Science Center, Houston, TX (H.S.); Department of Radiology, Division of Diagnostic and Interventional Neuroradiology, Massachusetts General Hospital, Boston, MA (A.J.Y.); University of Texas, Houston, TX (P.R.C.); Department of Neurosurgery, Methodist Neurological Institute, Houston, TX (G.W.B.); Saint Louis University, St. Louis, MO (R.K.); and University of Missouri, Columbia, MO (A.N.)
| | - Ashish Nanda
- From the Departments of Neurology (A.C.C., O.O.Z., M.A.I.), Neurosurgery (O.O.Z.), and Radiology (O.O.Z.), Medical College of Wisconsin/Froedtert Hospital, Milwaukee, WI; Departments of Radiology and Neurology, UT Southwestern Medical Center, Dallas, TX (R.N.); Departments of Neurology, Neurosurgery, and Radiology, Boston Medical Center, Boston, MA (T.N.N.); Desert Regional Medical Center, Palm Springs, CA (M.A.T.); Wellstar Neurosurgery Kennestone Hospital, Atlanta, GA (R.G.); Department of Neurology, Emory University School of Medicine, Atlanta, GA (C.-H.J.S., R.G.N.); Saint Luke's Kansas City, Kansas City, MO (C.M., W.E.H.); Department of Neurology, Delray Medical Center, Delray Beach, FL (N.M.-K.); California Pacific Medical Center, San Francisco, CA (J.E.E.); Division of Interventional Neuroradiology, Baptist Cardiac and Vascular Institute, Miami, FL (I.L., G.D.); Alexian Brothers Medical Center, Elk Grove Village, IL (T.W.M., F.A.M.); Oregon Health and Science University, Portland, OR (H.B.); Department of Neurology, Wayne State University School of Medicine, Detroit, MI (A.X.); Department of Radiology, West Virginia University Hospital, Morgantown, WV (A.T.R.); Departments of Neurology, Neurosurgery, and Radiology, Vanderbilt University Medical Center, Nashville, TN (M.T.F.); Provena Saint Joseph Medical Center, Joliet, IL (A.B.); University of Kansas Medical Center, Kansas City, KS (M.G.A.); Texas Stroke Institute, Plano, TX (V.J., A.A.-C.); University of Texas Health Science Center, Houston, TX (H.S.); Department of Radiology, Division of Diagnostic and Interventional Neuroradiology, Massachusetts General Hospital, Boston, MA (A.J.Y.); University of Texas, Houston, TX (P.R.C.); Department of Neurosurgery, Methodist Neurological Institute, Houston, TX (G.W.B.); Saint Louis University, St. Louis, MO (R.K.); and University of Missouri, Columbia, MO (A.N.)
| | - Mohammad A Issa
- From the Departments of Neurology (A.C.C., O.O.Z., M.A.I.), Neurosurgery (O.O.Z.), and Radiology (O.O.Z.), Medical College of Wisconsin/Froedtert Hospital, Milwaukee, WI; Departments of Radiology and Neurology, UT Southwestern Medical Center, Dallas, TX (R.N.); Departments of Neurology, Neurosurgery, and Radiology, Boston Medical Center, Boston, MA (T.N.N.); Desert Regional Medical Center, Palm Springs, CA (M.A.T.); Wellstar Neurosurgery Kennestone Hospital, Atlanta, GA (R.G.); Department of Neurology, Emory University School of Medicine, Atlanta, GA (C.-H.J.S., R.G.N.); Saint Luke's Kansas City, Kansas City, MO (C.M., W.E.H.); Department of Neurology, Delray Medical Center, Delray Beach, FL (N.M.-K.); California Pacific Medical Center, San Francisco, CA (J.E.E.); Division of Interventional Neuroradiology, Baptist Cardiac and Vascular Institute, Miami, FL (I.L., G.D.); Alexian Brothers Medical Center, Elk Grove Village, IL (T.W.M., F.A.M.); Oregon Health and Science University, Portland, OR (H.B.); Department of Neurology, Wayne State University School of Medicine, Detroit, MI (A.X.); Department of Radiology, West Virginia University Hospital, Morgantown, WV (A.T.R.); Departments of Neurology, Neurosurgery, and Radiology, Vanderbilt University Medical Center, Nashville, TN (M.T.F.); Provena Saint Joseph Medical Center, Joliet, IL (A.B.); University of Kansas Medical Center, Kansas City, KS (M.G.A.); Texas Stroke Institute, Plano, TX (V.J., A.A.-C.); University of Texas Health Science Center, Houston, TX (H.S.); Department of Radiology, Division of Diagnostic and Interventional Neuroradiology, Massachusetts General Hospital, Boston, MA (A.J.Y.); University of Texas, Houston, TX (P.R.C.); Department of Neurosurgery, Methodist Neurological Institute, Houston, TX (G.W.B.); Saint Louis University, St. Louis, MO (R.K.); and University of Missouri, Columbia, MO (A.N.)
| | - Raul G Nogueira
- From the Departments of Neurology (A.C.C., O.O.Z., M.A.I.), Neurosurgery (O.O.Z.), and Radiology (O.O.Z.), Medical College of Wisconsin/Froedtert Hospital, Milwaukee, WI; Departments of Radiology and Neurology, UT Southwestern Medical Center, Dallas, TX (R.N.); Departments of Neurology, Neurosurgery, and Radiology, Boston Medical Center, Boston, MA (T.N.N.); Desert Regional Medical Center, Palm Springs, CA (M.A.T.); Wellstar Neurosurgery Kennestone Hospital, Atlanta, GA (R.G.); Department of Neurology, Emory University School of Medicine, Atlanta, GA (C.-H.J.S., R.G.N.); Saint Luke's Kansas City, Kansas City, MO (C.M., W.E.H.); Department of Neurology, Delray Medical Center, Delray Beach, FL (N.M.-K.); California Pacific Medical Center, San Francisco, CA (J.E.E.); Division of Interventional Neuroradiology, Baptist Cardiac and Vascular Institute, Miami, FL (I.L., G.D.); Alexian Brothers Medical Center, Elk Grove Village, IL (T.W.M., F.A.M.); Oregon Health and Science University, Portland, OR (H.B.); Department of Neurology, Wayne State University School of Medicine, Detroit, MI (A.X.); Department of Radiology, West Virginia University Hospital, Morgantown, WV (A.T.R.); Departments of Neurology, Neurosurgery, and Radiology, Vanderbilt University Medical Center, Nashville, TN (M.T.F.); Provena Saint Joseph Medical Center, Joliet, IL (A.B.); University of Kansas Medical Center, Kansas City, KS (M.G.A.); Texas Stroke Institute, Plano, TX (V.J., A.A.-C.); University of Texas Health Science Center, Houston, TX (H.S.); Department of Radiology, Division of Diagnostic and Interventional Neuroradiology, Massachusetts General Hospital, Boston, MA (A.J.Y.); University of Texas, Houston, TX (P.R.C.); Department of Neurosurgery, Methodist Neurological Institute, Houston, TX (G.W.B.); Saint Louis University, St. Louis, MO (R.K.); and University of Missouri, Columbia, MO (A.N.)
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Mokin M, Snyder KV, Siddiqui AH, Hopkins LN, Levy EI. Endovascular Management and Treatment of Acute Ischemic Stroke. Neurosurg Clin N Am 2014; 25:583-92. [DOI: 10.1016/j.nec.2014.04.013] [Citation(s) in RCA: 7] [Impact Index Per Article: 0.6] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 01/26/2023]
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Abou-Chebl A, Zaidat OO, Castonguay AC, Gupta R, Sun CHJ, Martin CO, Holloway WE, Mueller-Kronast N, English JD, Linfante I, Dabus G, Malisch TW, Marden FA, Bozorgchami H, Xavier A, Rai AT, Froehler MT, Badruddin A, Nguyen TN, Taqi M, Abraham MG, Janardhan V, Shaltoni H, Novakovic R, Yoo AJ, Chen PR, Britz GW, Kaushal R, Nanda A, Issa MA, Nogueira RG. North American SOLITAIRE Stent-Retriever Acute Stroke Registry. Stroke 2014; 45:1396-401. [DOI: 10.1161/strokeaha.113.003698] [Citation(s) in RCA: 104] [Impact Index Per Article: 9.5] [Reference Citation Analysis] [Abstract] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 11/16/2022]
Abstract
Background and Purpose—
Previous work that predated the availability of the safer stent-retriever devices has suggested that general anesthesia (GA) may have a negative impact on outcomes in patients with acute ischemic stroke undergoing endovascular therapy.
Methods—
We reviewed demographic, clinical, procedural (GA versus local anesthesia [LA], etc), and site-adjudicated angiographic and clinical outcomes data from consecutive patients treated with the Solitaire FR device in the investigator-initiated North American SOLITAIRE Stent-Retriever Acute Stroke (NASA) Registry. The primary outcomes were 90-day modified Rankin Scale, mortality, and symptomatic intracranial hemorrhage.
Results—
A total of 281 patients from 18 centers were enrolled. GA was used in 69.8% (196/281) of patients. Baseline demographic and procedural factors were comparable between the LA and GA groups, except the former demonstrated longer time-to-groin puncture (395.4±254 versus 337.4±208 min;
P
=0.04), lower National Institutes of Health Stroke Scale (NIHSS; 16.2±5.8 versus 18.8±6.9;
P
=0.002), lower balloon-guide catheter usage (22.4% versus 49.2%;
P
=0.0001), and longer fluoroscopy times (39.5±33 versus 28±22.8 min;
P
=0.008). Recanalization (thrombolysis in cerebral infarction ≥2b; 72.94% versus 73.6%;
P
=0.9) and rate of symptomatic intracranial hemorrhage (7.1% versus 11.2%;
P
=0.4) were similar but modified Rankin Scale ≤2 was achieved in more LA patients, 52.6% versus 35.6% (odds ratio, 1.4 [1.1–1.8];
P
=0.01). In multivariate analysis, hypertension, NIHSS, unsuccessful revascularization, and GA use (odds ratio, 3.3 [1.6–7.1];
P
=0.001) were associated with death. When only anterior circulation and elective GA patients were included, there was a persistent difference in good outcomes in favor of LA patients (50.7% versus 35.5%; odds ratio, 1.3 [1.01–1.6];
P
=0.04).
Conclusions—
The NASA Registry has demonstrated that clinical outcomes and survival are significantly better in patients treated with LA, without increased symptomatic intracranial hemorrhage risk. Future trials should prospectively evaluate the effect of GA on outcomes.
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Affiliation(s)
- Alex Abou-Chebl
- From the Texas Stroke Institute, Plano, TX (A.A.-C., V.J.); Departments of Neurology, Neurosurgery, and Radiology, Medical College of Wisconsin/Froedtert Hospital, Atlanta, GA (O.O.Z., A.C.C., M.A.I.); Wellstar Neurosurgery Kennestone Hospital, Atlanta, GA (R.G.); Department of Neurology, Emory University School of Medicine, Atlanta, GA (C.-H.J.S. R.G.N.); Saint Luke’s Kansas City, Kansas City, MO (C.O.M., W.E.H.); Department of Neurology, Delray Medical Center, Delray Beach, FL (N.M.-K.)
| | - Ossama O. Zaidat
- From the Texas Stroke Institute, Plano, TX (A.A.-C., V.J.); Departments of Neurology, Neurosurgery, and Radiology, Medical College of Wisconsin/Froedtert Hospital, Atlanta, GA (O.O.Z., A.C.C., M.A.I.); Wellstar Neurosurgery Kennestone Hospital, Atlanta, GA (R.G.); Department of Neurology, Emory University School of Medicine, Atlanta, GA (C.-H.J.S. R.G.N.); Saint Luke’s Kansas City, Kansas City, MO (C.O.M., W.E.H.); Department of Neurology, Delray Medical Center, Delray Beach, FL (N.M.-K.)
| | - Alicia C. Castonguay
- From the Texas Stroke Institute, Plano, TX (A.A.-C., V.J.); Departments of Neurology, Neurosurgery, and Radiology, Medical College of Wisconsin/Froedtert Hospital, Atlanta, GA (O.O.Z., A.C.C., M.A.I.); Wellstar Neurosurgery Kennestone Hospital, Atlanta, GA (R.G.); Department of Neurology, Emory University School of Medicine, Atlanta, GA (C.-H.J.S. R.G.N.); Saint Luke’s Kansas City, Kansas City, MO (C.O.M., W.E.H.); Department of Neurology, Delray Medical Center, Delray Beach, FL (N.M.-K.)
| | - Rishi Gupta
- From the Texas Stroke Institute, Plano, TX (A.A.-C., V.J.); Departments of Neurology, Neurosurgery, and Radiology, Medical College of Wisconsin/Froedtert Hospital, Atlanta, GA (O.O.Z., A.C.C., M.A.I.); Wellstar Neurosurgery Kennestone Hospital, Atlanta, GA (R.G.); Department of Neurology, Emory University School of Medicine, Atlanta, GA (C.-H.J.S. R.G.N.); Saint Luke’s Kansas City, Kansas City, MO (C.O.M., W.E.H.); Department of Neurology, Delray Medical Center, Delray Beach, FL (N.M.-K.)
| | - Chung-Huan J. Sun
- From the Texas Stroke Institute, Plano, TX (A.A.-C., V.J.); Departments of Neurology, Neurosurgery, and Radiology, Medical College of Wisconsin/Froedtert Hospital, Atlanta, GA (O.O.Z., A.C.C., M.A.I.); Wellstar Neurosurgery Kennestone Hospital, Atlanta, GA (R.G.); Department of Neurology, Emory University School of Medicine, Atlanta, GA (C.-H.J.S. R.G.N.); Saint Luke’s Kansas City, Kansas City, MO (C.O.M., W.E.H.); Department of Neurology, Delray Medical Center, Delray Beach, FL (N.M.-K.)
| | - Coleman O. Martin
- From the Texas Stroke Institute, Plano, TX (A.A.-C., V.J.); Departments of Neurology, Neurosurgery, and Radiology, Medical College of Wisconsin/Froedtert Hospital, Atlanta, GA (O.O.Z., A.C.C., M.A.I.); Wellstar Neurosurgery Kennestone Hospital, Atlanta, GA (R.G.); Department of Neurology, Emory University School of Medicine, Atlanta, GA (C.-H.J.S. R.G.N.); Saint Luke’s Kansas City, Kansas City, MO (C.O.M., W.E.H.); Department of Neurology, Delray Medical Center, Delray Beach, FL (N.M.-K.)
| | - William E. Holloway
- From the Texas Stroke Institute, Plano, TX (A.A.-C., V.J.); Departments of Neurology, Neurosurgery, and Radiology, Medical College of Wisconsin/Froedtert Hospital, Atlanta, GA (O.O.Z., A.C.C., M.A.I.); Wellstar Neurosurgery Kennestone Hospital, Atlanta, GA (R.G.); Department of Neurology, Emory University School of Medicine, Atlanta, GA (C.-H.J.S. R.G.N.); Saint Luke’s Kansas City, Kansas City, MO (C.O.M., W.E.H.); Department of Neurology, Delray Medical Center, Delray Beach, FL (N.M.-K.)
| | - Nils Mueller-Kronast
- From the Texas Stroke Institute, Plano, TX (A.A.-C., V.J.); Departments of Neurology, Neurosurgery, and Radiology, Medical College of Wisconsin/Froedtert Hospital, Atlanta, GA (O.O.Z., A.C.C., M.A.I.); Wellstar Neurosurgery Kennestone Hospital, Atlanta, GA (R.G.); Department of Neurology, Emory University School of Medicine, Atlanta, GA (C.-H.J.S. R.G.N.); Saint Luke’s Kansas City, Kansas City, MO (C.O.M., W.E.H.); Department of Neurology, Delray Medical Center, Delray Beach, FL (N.M.-K.)
| | - Joey D. English
- From the Texas Stroke Institute, Plano, TX (A.A.-C., V.J.); Departments of Neurology, Neurosurgery, and Radiology, Medical College of Wisconsin/Froedtert Hospital, Atlanta, GA (O.O.Z., A.C.C., M.A.I.); Wellstar Neurosurgery Kennestone Hospital, Atlanta, GA (R.G.); Department of Neurology, Emory University School of Medicine, Atlanta, GA (C.-H.J.S. R.G.N.); Saint Luke’s Kansas City, Kansas City, MO (C.O.M., W.E.H.); Department of Neurology, Delray Medical Center, Delray Beach, FL (N.M.-K.)
| | - Italo Linfante
- From the Texas Stroke Institute, Plano, TX (A.A.-C., V.J.); Departments of Neurology, Neurosurgery, and Radiology, Medical College of Wisconsin/Froedtert Hospital, Atlanta, GA (O.O.Z., A.C.C., M.A.I.); Wellstar Neurosurgery Kennestone Hospital, Atlanta, GA (R.G.); Department of Neurology, Emory University School of Medicine, Atlanta, GA (C.-H.J.S. R.G.N.); Saint Luke’s Kansas City, Kansas City, MO (C.O.M., W.E.H.); Department of Neurology, Delray Medical Center, Delray Beach, FL (N.M.-K.)
| | - Guilherme Dabus
- From the Texas Stroke Institute, Plano, TX (A.A.-C., V.J.); Departments of Neurology, Neurosurgery, and Radiology, Medical College of Wisconsin/Froedtert Hospital, Atlanta, GA (O.O.Z., A.C.C., M.A.I.); Wellstar Neurosurgery Kennestone Hospital, Atlanta, GA (R.G.); Department of Neurology, Emory University School of Medicine, Atlanta, GA (C.-H.J.S. R.G.N.); Saint Luke’s Kansas City, Kansas City, MO (C.O.M., W.E.H.); Department of Neurology, Delray Medical Center, Delray Beach, FL (N.M.-K.)
| | - Timothy W. Malisch
- From the Texas Stroke Institute, Plano, TX (A.A.-C., V.J.); Departments of Neurology, Neurosurgery, and Radiology, Medical College of Wisconsin/Froedtert Hospital, Atlanta, GA (O.O.Z., A.C.C., M.A.I.); Wellstar Neurosurgery Kennestone Hospital, Atlanta, GA (R.G.); Department of Neurology, Emory University School of Medicine, Atlanta, GA (C.-H.J.S. R.G.N.); Saint Luke’s Kansas City, Kansas City, MO (C.O.M., W.E.H.); Department of Neurology, Delray Medical Center, Delray Beach, FL (N.M.-K.)
| | - Franklin A. Marden
- From the Texas Stroke Institute, Plano, TX (A.A.-C., V.J.); Departments of Neurology, Neurosurgery, and Radiology, Medical College of Wisconsin/Froedtert Hospital, Atlanta, GA (O.O.Z., A.C.C., M.A.I.); Wellstar Neurosurgery Kennestone Hospital, Atlanta, GA (R.G.); Department of Neurology, Emory University School of Medicine, Atlanta, GA (C.-H.J.S. R.G.N.); Saint Luke’s Kansas City, Kansas City, MO (C.O.M., W.E.H.); Department of Neurology, Delray Medical Center, Delray Beach, FL (N.M.-K.)
| | - Hormozd Bozorgchami
- From the Texas Stroke Institute, Plano, TX (A.A.-C., V.J.); Departments of Neurology, Neurosurgery, and Radiology, Medical College of Wisconsin/Froedtert Hospital, Atlanta, GA (O.O.Z., A.C.C., M.A.I.); Wellstar Neurosurgery Kennestone Hospital, Atlanta, GA (R.G.); Department of Neurology, Emory University School of Medicine, Atlanta, GA (C.-H.J.S. R.G.N.); Saint Luke’s Kansas City, Kansas City, MO (C.O.M., W.E.H.); Department of Neurology, Delray Medical Center, Delray Beach, FL (N.M.-K.)
| | - Andrew Xavier
- From the Texas Stroke Institute, Plano, TX (A.A.-C., V.J.); Departments of Neurology, Neurosurgery, and Radiology, Medical College of Wisconsin/Froedtert Hospital, Atlanta, GA (O.O.Z., A.C.C., M.A.I.); Wellstar Neurosurgery Kennestone Hospital, Atlanta, GA (R.G.); Department of Neurology, Emory University School of Medicine, Atlanta, GA (C.-H.J.S. R.G.N.); Saint Luke’s Kansas City, Kansas City, MO (C.O.M., W.E.H.); Department of Neurology, Delray Medical Center, Delray Beach, FL (N.M.-K.)
| | - Ansaar T. Rai
- From the Texas Stroke Institute, Plano, TX (A.A.-C., V.J.); Departments of Neurology, Neurosurgery, and Radiology, Medical College of Wisconsin/Froedtert Hospital, Atlanta, GA (O.O.Z., A.C.C., M.A.I.); Wellstar Neurosurgery Kennestone Hospital, Atlanta, GA (R.G.); Department of Neurology, Emory University School of Medicine, Atlanta, GA (C.-H.J.S. R.G.N.); Saint Luke’s Kansas City, Kansas City, MO (C.O.M., W.E.H.); Department of Neurology, Delray Medical Center, Delray Beach, FL (N.M.-K.)
| | - Micahel T. Froehler
- From the Texas Stroke Institute, Plano, TX (A.A.-C., V.J.); Departments of Neurology, Neurosurgery, and Radiology, Medical College of Wisconsin/Froedtert Hospital, Atlanta, GA (O.O.Z., A.C.C., M.A.I.); Wellstar Neurosurgery Kennestone Hospital, Atlanta, GA (R.G.); Department of Neurology, Emory University School of Medicine, Atlanta, GA (C.-H.J.S. R.G.N.); Saint Luke’s Kansas City, Kansas City, MO (C.O.M., W.E.H.); Department of Neurology, Delray Medical Center, Delray Beach, FL (N.M.-K.)
| | - Aamir Badruddin
- From the Texas Stroke Institute, Plano, TX (A.A.-C., V.J.); Departments of Neurology, Neurosurgery, and Radiology, Medical College of Wisconsin/Froedtert Hospital, Atlanta, GA (O.O.Z., A.C.C., M.A.I.); Wellstar Neurosurgery Kennestone Hospital, Atlanta, GA (R.G.); Department of Neurology, Emory University School of Medicine, Atlanta, GA (C.-H.J.S. R.G.N.); Saint Luke’s Kansas City, Kansas City, MO (C.O.M., W.E.H.); Department of Neurology, Delray Medical Center, Delray Beach, FL (N.M.-K.)
| | - Thanh N. Nguyen
- From the Texas Stroke Institute, Plano, TX (A.A.-C., V.J.); Departments of Neurology, Neurosurgery, and Radiology, Medical College of Wisconsin/Froedtert Hospital, Atlanta, GA (O.O.Z., A.C.C., M.A.I.); Wellstar Neurosurgery Kennestone Hospital, Atlanta, GA (R.G.); Department of Neurology, Emory University School of Medicine, Atlanta, GA (C.-H.J.S. R.G.N.); Saint Luke’s Kansas City, Kansas City, MO (C.O.M., W.E.H.); Department of Neurology, Delray Medical Center, Delray Beach, FL (N.M.-K.)
| | - Muhammad Taqi
- From the Texas Stroke Institute, Plano, TX (A.A.-C., V.J.); Departments of Neurology, Neurosurgery, and Radiology, Medical College of Wisconsin/Froedtert Hospital, Atlanta, GA (O.O.Z., A.C.C., M.A.I.); Wellstar Neurosurgery Kennestone Hospital, Atlanta, GA (R.G.); Department of Neurology, Emory University School of Medicine, Atlanta, GA (C.-H.J.S. R.G.N.); Saint Luke’s Kansas City, Kansas City, MO (C.O.M., W.E.H.); Department of Neurology, Delray Medical Center, Delray Beach, FL (N.M.-K.)
| | - Michael G. Abraham
- From the Texas Stroke Institute, Plano, TX (A.A.-C., V.J.); Departments of Neurology, Neurosurgery, and Radiology, Medical College of Wisconsin/Froedtert Hospital, Atlanta, GA (O.O.Z., A.C.C., M.A.I.); Wellstar Neurosurgery Kennestone Hospital, Atlanta, GA (R.G.); Department of Neurology, Emory University School of Medicine, Atlanta, GA (C.-H.J.S. R.G.N.); Saint Luke’s Kansas City, Kansas City, MO (C.O.M., W.E.H.); Department of Neurology, Delray Medical Center, Delray Beach, FL (N.M.-K.)
| | - Vallabh Janardhan
- From the Texas Stroke Institute, Plano, TX (A.A.-C., V.J.); Departments of Neurology, Neurosurgery, and Radiology, Medical College of Wisconsin/Froedtert Hospital, Atlanta, GA (O.O.Z., A.C.C., M.A.I.); Wellstar Neurosurgery Kennestone Hospital, Atlanta, GA (R.G.); Department of Neurology, Emory University School of Medicine, Atlanta, GA (C.-H.J.S. R.G.N.); Saint Luke’s Kansas City, Kansas City, MO (C.O.M., W.E.H.); Department of Neurology, Delray Medical Center, Delray Beach, FL (N.M.-K.)
| | - Hashem Shaltoni
- From the Texas Stroke Institute, Plano, TX (A.A.-C., V.J.); Departments of Neurology, Neurosurgery, and Radiology, Medical College of Wisconsin/Froedtert Hospital, Atlanta, GA (O.O.Z., A.C.C., M.A.I.); Wellstar Neurosurgery Kennestone Hospital, Atlanta, GA (R.G.); Department of Neurology, Emory University School of Medicine, Atlanta, GA (C.-H.J.S. R.G.N.); Saint Luke’s Kansas City, Kansas City, MO (C.O.M., W.E.H.); Department of Neurology, Delray Medical Center, Delray Beach, FL (N.M.-K.)
| | - Roberta Novakovic
- From the Texas Stroke Institute, Plano, TX (A.A.-C., V.J.); Departments of Neurology, Neurosurgery, and Radiology, Medical College of Wisconsin/Froedtert Hospital, Atlanta, GA (O.O.Z., A.C.C., M.A.I.); Wellstar Neurosurgery Kennestone Hospital, Atlanta, GA (R.G.); Department of Neurology, Emory University School of Medicine, Atlanta, GA (C.-H.J.S. R.G.N.); Saint Luke’s Kansas City, Kansas City, MO (C.O.M., W.E.H.); Department of Neurology, Delray Medical Center, Delray Beach, FL (N.M.-K.)
| | - Albert J. Yoo
- From the Texas Stroke Institute, Plano, TX (A.A.-C., V.J.); Departments of Neurology, Neurosurgery, and Radiology, Medical College of Wisconsin/Froedtert Hospital, Atlanta, GA (O.O.Z., A.C.C., M.A.I.); Wellstar Neurosurgery Kennestone Hospital, Atlanta, GA (R.G.); Department of Neurology, Emory University School of Medicine, Atlanta, GA (C.-H.J.S. R.G.N.); Saint Luke’s Kansas City, Kansas City, MO (C.O.M., W.E.H.); Department of Neurology, Delray Medical Center, Delray Beach, FL (N.M.-K.)
| | - Peng R. Chen
- From the Texas Stroke Institute, Plano, TX (A.A.-C., V.J.); Departments of Neurology, Neurosurgery, and Radiology, Medical College of Wisconsin/Froedtert Hospital, Atlanta, GA (O.O.Z., A.C.C., M.A.I.); Wellstar Neurosurgery Kennestone Hospital, Atlanta, GA (R.G.); Department of Neurology, Emory University School of Medicine, Atlanta, GA (C.-H.J.S. R.G.N.); Saint Luke’s Kansas City, Kansas City, MO (C.O.M., W.E.H.); Department of Neurology, Delray Medical Center, Delray Beach, FL (N.M.-K.)
| | - Gavin W. Britz
- From the Texas Stroke Institute, Plano, TX (A.A.-C., V.J.); Departments of Neurology, Neurosurgery, and Radiology, Medical College of Wisconsin/Froedtert Hospital, Atlanta, GA (O.O.Z., A.C.C., M.A.I.); Wellstar Neurosurgery Kennestone Hospital, Atlanta, GA (R.G.); Department of Neurology, Emory University School of Medicine, Atlanta, GA (C.-H.J.S. R.G.N.); Saint Luke’s Kansas City, Kansas City, MO (C.O.M., W.E.H.); Department of Neurology, Delray Medical Center, Delray Beach, FL (N.M.-K.)
| | - Ritesh Kaushal
- From the Texas Stroke Institute, Plano, TX (A.A.-C., V.J.); Departments of Neurology, Neurosurgery, and Radiology, Medical College of Wisconsin/Froedtert Hospital, Atlanta, GA (O.O.Z., A.C.C., M.A.I.); Wellstar Neurosurgery Kennestone Hospital, Atlanta, GA (R.G.); Department of Neurology, Emory University School of Medicine, Atlanta, GA (C.-H.J.S. R.G.N.); Saint Luke’s Kansas City, Kansas City, MO (C.O.M., W.E.H.); Department of Neurology, Delray Medical Center, Delray Beach, FL (N.M.-K.)
| | - Ashish Nanda
- From the Texas Stroke Institute, Plano, TX (A.A.-C., V.J.); Departments of Neurology, Neurosurgery, and Radiology, Medical College of Wisconsin/Froedtert Hospital, Atlanta, GA (O.O.Z., A.C.C., M.A.I.); Wellstar Neurosurgery Kennestone Hospital, Atlanta, GA (R.G.); Department of Neurology, Emory University School of Medicine, Atlanta, GA (C.-H.J.S. R.G.N.); Saint Luke’s Kansas City, Kansas City, MO (C.O.M., W.E.H.); Department of Neurology, Delray Medical Center, Delray Beach, FL (N.M.-K.)
| | - Mohammad A. Issa
- From the Texas Stroke Institute, Plano, TX (A.A.-C., V.J.); Departments of Neurology, Neurosurgery, and Radiology, Medical College of Wisconsin/Froedtert Hospital, Atlanta, GA (O.O.Z., A.C.C., M.A.I.); Wellstar Neurosurgery Kennestone Hospital, Atlanta, GA (R.G.); Department of Neurology, Emory University School of Medicine, Atlanta, GA (C.-H.J.S. R.G.N.); Saint Luke’s Kansas City, Kansas City, MO (C.O.M., W.E.H.); Department of Neurology, Delray Medical Center, Delray Beach, FL (N.M.-K.)
| | - Raul G. Nogueira
- From the Texas Stroke Institute, Plano, TX (A.A.-C., V.J.); Departments of Neurology, Neurosurgery, and Radiology, Medical College of Wisconsin/Froedtert Hospital, Atlanta, GA (O.O.Z., A.C.C., M.A.I.); Wellstar Neurosurgery Kennestone Hospital, Atlanta, GA (R.G.); Department of Neurology, Emory University School of Medicine, Atlanta, GA (C.-H.J.S. R.G.N.); Saint Luke’s Kansas City, Kansas City, MO (C.O.M., W.E.H.); Department of Neurology, Delray Medical Center, Delray Beach, FL (N.M.-K.)
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Simonsen CZ, Sørensen LH, Andersen G. Letter by Simonsen et al regarding article, "Balloon guide catheter improves revascularization and clinical outcomes with the solitaire device: analysis of the North American Solitaire Acute Stroke Registry". Stroke 2014; 45:e85. [PMID: 24627115 DOI: 10.1161/strokeaha.114.004789] [Citation(s) in RCA: 2] [Impact Index Per Article: 0.2] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 11/16/2022]
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Turk AS, Frei D, Fiorella D, Mocco J, Baxter B, Siddiqui A, Spiotta A, Mokin M, Dewan M, Quarfordt S, Battenhouse H, Turner R, Chaudry I. ADAPT FAST study: a direct aspiration first pass technique for acute stroke thrombectomy. J Neurointerv Surg 2014; 6:260-4. [PMID: 24569575 DOI: 10.1136/neurintsurg-2014-011125] [Citation(s) in RCA: 333] [Impact Index Per Article: 30.3] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 12/11/2022]
Abstract
BACKGROUND The development of new revascularization devices has improved recanalization rates and time, but not clinical outcomes. We report a prospectively collected clinical experience with a new technique utilizing a direct aspiration first pass technique with large bore aspiration catheter as the primary method for vessel recanalization. METHODS 98 prospectively identified acute ischemic stroke patients with 100 occluded large cerebral vessels at six institutions were included in the study. The ADAPT technique was utilized in all patients. Procedural and clinical data were captured for analysis. RESULTS The aspiration component of the ADAPT technique alone was successful in achieving Thrombolysis in Cerebral Infarction (TICI) 2b or 3 revascularization in 78% of cases. The additional use of stent retrievers improved the TICI 2b/3 revascularization rate to 95%. The average time from groin puncture to at least TICI 2b recanalization was 37 min. A 5MAX demonstrated similar success to a 5MAX ACE in achieving TICI 2b/3 revascularization alone (75% vs 82%, p=0.43). Patients presented with an admitting median National Institutes of Health Stroke Scale (NIHSS) score of 17.0 (12.0-21.0) and improved to a median NIHSS score at discharge of 7.3 (1.0-11.0). Ninety day functional outcomes were 40% (modified Rankin Scale (mRS) 0-2) and 20% (mRS 6). There were two procedural complications and no symptomatic intracerebral hemorrhages. DISCUSSION The ADAPT technique is a fast, safe, simple, and effective method that has facilitated our approach to acute ischemic stroke thrombectomy by utilizing the latest generation of large bore aspiration catheters to achieve previously unparalleled angiographic outcomes.
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Affiliation(s)
- Aquilla S Turk
- Department of Radiology, Medical University of South Carolina, Charleston, South Carolina, USA
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Affiliation(s)
- Ajay K Wakhloo
- Received December 17, 2013; final revision received December 23, 2013; accepted December 24, 2013
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