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Zhang YS, Zhang YH, Jen YM, Wang Y, Li XJ. Total Tumor Irradiation for Multiple Lung Metastases Using Carbon Ion Radiotherapy and High-Frequency Oscillatory Ventilation: A Case Report of Two Patients. Cureus 2025; 17:e79069. [PMID: 39958400 PMCID: PMC11830115 DOI: 10.7759/cureus.79069] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Figures] [Journal Information] [Subscribe] [Scholar Register] [Accepted: 02/15/2025] [Indexed: 02/18/2025] Open
Abstract
Curative-intent radiotherapy for multiple lung metastases with more than 10 lesions is limited by lung dose constraints and respiratory motion. Carbon ion radiotherapy (CIRT) leverages the Bragg peak for precision and hypofractionation, while high-frequency oscillatory ventilation (HFOV) minimizes motion under anesthesia. This study evaluates the feasibility of combining CIRT and HFOV in treating ≥15 lung metastases. Two patients received single-fraction CIRT (50 Gy(RBE)) targeting all lesions. Case 1 (16 metastases of bilateral lung, hepatocellular carcinoma) and Case 2 (15 metastases of the left lung, colorectal adenocarcinoma) underwent four-dimensional (4D)-CT simulation with HFOV and CIRT in one single dose. Diaphragm motion reduced from 1.15 and 3.09 cm for Cases 1 and 2 (free-breathing) to 0.1 and 0.2 cm, respectively. Lung dose constraint parameters (V30: 3.57% to 12.35%; V20: 6.06% to 15.3%) met safety thresholds. Both patients achieved 22-month survival with continued local control (complete response in Case 1; partial response in Case 2). Case 1 developed grade II pneumonitis (resolved with steroids) and asymptomatic fibrosis; Case 2 had no toxicity. Some new lesions were managed with additional CIRT. Outcomes compare favorably to published photon trials in which up to 10 lung lesions were irradiated, underscoring CIRT's precision and HFOV's motion control. Success relied on three factors: CIRT's dosimetric advantages, HFOV-driven motion reduction, and anesthesia-enabled tolerability of the longer irradiation time span. Despite cost barriers, CIRT seems to extend survival in patients with multiple lung metastases that were refractory to conventional local therapy. This approach demonstrates the feasibility of irradiating more than 15 lesions in patients with polymetastatic lung disease, offering durable control with manageable toxicity. Larger studies are needed to validate its role in multimodal therapy.
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Affiliation(s)
- Yan-Shan Zhang
- Department of Radiation Oncology, Heavy Ion Center, Wuwei Cancer Hospital, Wuwei, CHN
| | - Yi-He Zhang
- Department of Radiation Oncology, Heavy Ion Center, Wuwei Cancer Hospital, Wuwei, CHN
| | - Yee-Min Jen
- Department of Radiation Oncology, Yee Zen General Hospital, Taoyuan, TWN
| | - Yi Wang
- Department of Intensive Care Unit and Anesthesiology, Heavy Ion Center, Wuwei Cancer Hospital, Wuwei, CHN
| | - Xiao-Jun Li
- Department of Radiation Oncology, Heavy Ion Center, Wuwei Cancer Hospital, Wuwei, CHN
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Trochu T, Desfriches-Doria N, Grillot N, Feuillet F, Lair D, Liberge R, Douane F, Dumont R, David A. Safety of High-Frequency Jet Ventilation During Image-Guided Thermal Ablation Procedures. Cardiovasc Intervent Radiol 2023; 46:360-368. [PMID: 36658374 DOI: 10.1007/s00270-023-03358-5] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Journal Information] [Submit a Manuscript] [Subscribe] [Scholar Register] [Received: 08/17/2022] [Accepted: 01/02/2023] [Indexed: 01/20/2023]
Abstract
RATIONALE AND OBJECTIVE Percutaneous thermal ablative technique is a common radiological procedure for malignant lesions treatment. Controlled assisted ventilation during general anesthesia is the usual mode of ventilation, but high-frequency jet ventilation (HFJV) can be a helpful alternative for the operator. The objective was to evaluate the safety of HFJV during thermal ablation procedures. MATERIALS AND METHODS This monocentric prospective analysis included adult patients undergoing percutaneous thermal ablation procedures for abdominal tumor performed under HFJV. Procedures with a transpulmonary path were excluded. The primary outcome was the incidence of respiratory complications. Secondary outcomes included gas exchange modifications (hypercapnia, hypoxemia, pulmonary atelectasis) and the incidence of barotrauma. RESULTS Sixty patients were included during the study period. The mean duration time was 88 min. All procedures went according to the protocol and there was no respiratory complication. There was no barotrauma event. Three patients had an exhaled capnia above 45 mmHg at the end of the procedure which normalized within 10 min of conventional ventilation. CONCLUSION HFJV during thermal ablation procedures is safe regarding gas exchange and barotrauma. This technique could be an interesting alternative to conventional ventilation during image-guided thermal ablation procedures. Clinical Trials database This study was registered in Clinical Trials database (NCT04209608).
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Affiliation(s)
- Théophane Trochu
- Department of Radiology, Nantes University Hospital, 1, place Alexis Ricordeau, 44093, Nantes, France.
| | - Nathalie Desfriches-Doria
- Pôle d'Anesthésie Réanimation Chirurgicale, CHU Nantes, Université de Nantes, Hôtel-Dieu, 1, place Alexis Ricordeau, 44093, Nantes, France
| | - Nicolas Grillot
- Pôle d'Anesthésie Réanimation Chirurgicale, CHU Nantes, Université de Nantes, Hôtel-Dieu, 1, place Alexis Ricordeau, 44093, Nantes, France
| | - Fanny Feuillet
- SPHERE U1246, DRCI, Plateforme de Méthodologie et de Biostatistique, INSERM, CHU Nantes & Nantes Université, Université de Tours, 1, place Alexis Ricordeau, 44093, Nantes, France
| | - David Lair
- Research and Innovation Department, CHU Nantes, Nantes Université, 53, Chaussée de la Madeleine, 44000, Nantes, France
| | - Renan Liberge
- Department of Radiology, Nantes University Hospital, 1, place Alexis Ricordeau, 44093, Nantes, France
| | - Frédéric Douane
- Department of Radiology, Nantes University Hospital, 1, place Alexis Ricordeau, 44093, Nantes, France
| | - Romain Dumont
- Pôle d'Anesthésie Réanimation Chirurgicale, CHU Nantes, Université de Nantes, Hôtel-Dieu, 1, place Alexis Ricordeau, 44093, Nantes, France
| | - Arthur David
- Department of Radiology, Nantes University Hospital, 1, place Alexis Ricordeau, 44093, Nantes, France
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Zhang Y, Li X, Zhang Y, Ye Y, Jen YM, Pan X, Li X, Qin T, Li P, Lv C, Qi Y, Wang X, Yang Y, Ma T. Non-invasive high frequency oscillatory ventilation inhibiting respiratory motion in healthy volunteers. Sci Rep 2022; 12:22604. [PMID: 36585458 PMCID: PMC9803652 DOI: 10.1038/s41598-022-27288-3] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Figures] [Journal Information] [Subscribe] [Scholar Register] [Received: 04/07/2022] [Accepted: 12/29/2022] [Indexed: 12/31/2022] Open
Abstract
Precision radiotherapy needs to manage organ movements to prevent critical organ injury. The purpose of this study is to examine the feasibility of motion control of the lung by suppressing respiratory motion. The non-invasive high frequency oscillatory ventilation (NIHFOV) is a technique commonly used in the protection of lung for patients with acute lung disease. By using a very high respiratory frequency and a low tidal volume, NIHFOV allows gas exchange, maintains a constant mean airway pressure and minimizes the respiratory movements. We tested healthy volunteers NIHFOV to explore the optimal operational parameter setting and the best possible motion suppression achievable. This study was conducted with the approval of Institutional Review Boards of the Wuwei Cancer hospital (approval number: 2021-39) and carried out in accordance with Declaration of Helsinki. The study comprises two parts. Twenty three healthy volunteers participated in the first part of the study. They had 7 sessions of training with the NIHFOV. The duration of uninterrupted, continuous breathing under the NIHFOV and the optimal operational machine settings were defined. Eight healthy volunteers took part in the second part of the study and underwent 4-dimensional CT (4DCT) scanning with and without NIHFOV. Their respiratory waveform under free breathing (FB) and NIHFOV were recorded. The maximum range of motion of the diaphragm from the two scannings was compared, and the variation of bilateral lung volume was obtained to evaluate the impact of NIHFOV technique on lung volume. The following data were collected: comfort score, transcutaneous partial pressure of oxygen (PtcO2), transcutaneous partial pressure of carbon dioxide (PtcCO2), and pulse rate. Data with and without NIHFOV were compared to evaluate its safety, physiological impacts and effect of lung movement suppression. All the volunteers completed the training sessions eventlessly, demonstrating a good tolerability of the procedure. The median NIHFOV-on time was 32 min (22-45 min), and the maximum range of motion in the cephalic-caudal direction was significantly reduced on NIHFOV compared with FB (1.8 ± 0.8 cm vs 0.3 ± 0.1 cm, t = - 3.650, P = 0.003); the median range of motion was only 0.3 ± 0.1 cm on NIHFOV with a good reproducibility. The variation coefficient under NIHFOV of the right lung volume was 2.4% and the left lung volume was 9.2%. The PtcO2 and PtcCO2 were constantly monitored during NIHFOV. The medium PtcCO2 under NIHFOV increased lightly by 4.1 mmHg (interquartile range [IQR], 4-6 mmHg) compared with FB (t = 17.676, P < 0.001). No hypercapnia was found, PtcO2 increased significantly in all volunteers during NIHFOV (t = 25.453, P < 0.001). There was no significant difference in pulse rate between the two data sets (t = 1.257, P = 0.233). NIHFOV is easy to master in healthy volunteers to minimize respiratory movement with good tolerability and reproducibility. It is a feasible approach for lung motion control and could potentially be applied in accurate radiotherapy including carbon-ion radiotherapy through suppression of respiratory movement.
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Affiliation(s)
- Yanshan Zhang
- Heavy Ion Center, Wuwei Cancer Hospital, No. 31 Sanitary Lane, Haizang Road, Wuwei, 733000 Gansu Province China
| | - Xiaojun Li
- Heavy Ion Center, Wuwei Cancer Hospital, No. 31 Sanitary Lane, Haizang Road, Wuwei, 733000 Gansu Province China
| | - Yihe Zhang
- Heavy Ion Center, Wuwei Cancer Hospital, No. 31 Sanitary Lane, Haizang Road, Wuwei, 733000 Gansu Province China
| | - Yancheng Ye
- Heavy Ion Center, Wuwei Cancer Hospital, No. 31 Sanitary Lane, Haizang Road, Wuwei, 733000 Gansu Province China
| | - Yee-Min Jen
- Heavy Ion Center, Wuwei Cancer Hospital, No. 31 Sanitary Lane, Haizang Road, Wuwei, 733000 Gansu Province China ,Department of Radiation Oncology, Yee Zen General Hospital, 30, Yangxing North Rd, Yang Mei District, Tao Yuan City, Taiwan
| | - Xin Pan
- Heavy Ion Center, Wuwei Cancer Hospital, No. 31 Sanitary Lane, Haizang Road, Wuwei, 733000 Gansu Province China
| | - Xiaowei Li
- Heavy Ion Center, Wuwei Cancer Hospital, No. 31 Sanitary Lane, Haizang Road, Wuwei, 733000 Gansu Province China
| | - Tianyan Qin
- Heavy Ion Center, Wuwei Cancer Hospital, No. 31 Sanitary Lane, Haizang Road, Wuwei, 733000 Gansu Province China
| | - Pengqing Li
- Heavy Ion Center, Wuwei Cancer Hospital, No. 31 Sanitary Lane, Haizang Road, Wuwei, 733000 Gansu Province China
| | - Caixia Lv
- Heavy Ion Center, Wuwei Cancer Hospital, No. 31 Sanitary Lane, Haizang Road, Wuwei, 733000 Gansu Province China
| | - Ying Qi
- Heavy Ion Center, Wuwei Cancer Hospital, No. 31 Sanitary Lane, Haizang Road, Wuwei, 733000 Gansu Province China
| | - Xin Wang
- Heavy Ion Center, Wuwei Cancer Hospital, No. 31 Sanitary Lane, Haizang Road, Wuwei, 733000 Gansu Province China
| | - Yuling Yang
- Heavy Ion Center, Wuwei Cancer Hospital, No. 31 Sanitary Lane, Haizang Road, Wuwei, 733000 Gansu Province China
| | - Tong Ma
- Heavy Ion Center, Wuwei Cancer Hospital, No. 31 Sanitary Lane, Haizang Road, Wuwei, 733000 Gansu Province China
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van Kesteren Z, Veldman JK, Parkes MJ, Stevens MF, Balasupramaniam P, van den Aardweg JG, van Tienhoven G, Bel A, van Dijk IWEM. Quantifying the reduction of respiratory motion by mechanical ventilation with MRI for radiotherapy. Radiat Oncol 2022; 17:99. [PMID: 35597956 PMCID: PMC9123684 DOI: 10.1186/s13014-022-02068-5] [Citation(s) in RCA: 6] [Impact Index Per Article: 2.0] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Download PDF] [Figures] [Journal Information] [Subscribe] [Scholar Register] [Received: 02/16/2022] [Accepted: 05/12/2022] [Indexed: 12/13/2022] Open
Abstract
Background Due to respiratory motion, accurate radiotherapy delivery to thoracic and abdominal tumors is challenging. We aimed to quantify the ability of mechanical ventilation to reduce respiratory motion, by measuring diaphragm motion magnitudes in the same volunteers during free breathing (FB), mechanically regularized breathing (RB) at 22 breaths per minute (brpm), variation in mean diaphragm position across multiple deep inspiration breath-holds (DIBH) and diaphragm drift during single prolonged breath-holds (PBH) in two MRI sessions. Methods In two sessions, MRIs were acquired from fifteen healthy volunteers who were trained to be mechanically ventilated non-invasively We measured diaphragm motion amplitudes during FB and RB, the inter-quartile range (IQR) of the variation in average diaphragm position from one measurement over five consecutive DIBHs, and diaphragm cranial drift velocities during single PBHs from inhalation (PIBH) and exhalation (PEBH) breath-holds. Results RB significantly reduced the respiratory motion amplitude by 39%, from median (range) 20.9 (10.6–41.9) mm during FB to 12.8 (6.2–23.8) mm. The median IQR for variation in average diaphragm position over multiple DIBHs was 4.2 (1.0–23.6) mm. During single PIBHs with a median duration of 7.1 (2.0–11.1) minutes, the median diaphragm cranial drift velocity was 3.0 (0.4–6.5) mm/minute. For PEBH, the median duration was 5.8 (1.8–10.2) minutes with 4.4 (1.8–15.1) mm/minute diaphragm drift velocity. Conclusions Regularized breathing at a frequency of 22 brpm resulted in significantly smaller diaphragm motion amplitudes compared to free breathing. This would enable smaller treatment volumes in radiotherapy. Furthermore, prolonged breath-holding from inhalation and exhalation with median durations of six to seven minutes are feasible. Trial registration Medical Ethics Committee protocol NL.64693.018.18.
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Affiliation(s)
- Z van Kesteren
- Department of Radiation Oncology, Amsterdam UMC Location University of Amsterdam, Meibergdreef 9, Amsterdam, The Netherlands.
| | - J K Veldman
- Department of Radiation Oncology, Amsterdam UMC Location University of Amsterdam, Meibergdreef 9, Amsterdam, The Netherlands
| | - M J Parkes
- Department of Radiation Oncology, Amsterdam UMC Location University of Amsterdam, Meibergdreef 9, Amsterdam, The Netherlands
| | - M F Stevens
- Department of Anesthesiology, Amsterdam UMC Location University of Amsterdam, Meibergdreef 9, Amsterdam, The Netherlands.,Department of Anesthesiology, Amsterdam UMC Location Vrije Universiteit Amsterdam, De Boelelaan 1117, Amsterdam, The Netherlands
| | - P Balasupramaniam
- Department of Radiation Oncology, Amsterdam UMC Location University of Amsterdam, Meibergdreef 9, Amsterdam, The Netherlands
| | - J G van den Aardweg
- Department of Pulmonology, Amsterdam UMC Location University of Amsterdam, Meibergdreef 9, Amsterdam, The Netherlands
| | - G van Tienhoven
- Department of Radiation Oncology, Amsterdam UMC Location University of Amsterdam, Meibergdreef 9, Amsterdam, The Netherlands
| | - A Bel
- Department of Radiation Oncology, Amsterdam UMC Location University of Amsterdam, Meibergdreef 9, Amsterdam, The Netherlands
| | - I W E M van Dijk
- Department of Radiation Oncology, Amsterdam UMC Location University of Amsterdam, Meibergdreef 9, Amsterdam, The Netherlands
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Liang E, Dolan JL, Morris ED, Vono J, Bazan LF, Lu M, Glide-Hurst CK. Application of Continuous Positive Airway Pressure for Thoracic Respiratory Motion Management: An Assessment in a Magnetic Resonance Imaging–Guided Radiation Therapy Environment. Adv Radiat Oncol 2022; 7:100889. [PMID: 35198838 PMCID: PMC8844850 DOI: 10.1016/j.adro.2021.100889] [Citation(s) in RCA: 2] [Impact Index Per Article: 0.7] [Reference Citation Analysis] [Abstract] [Grants] [Track Full Text] [Download PDF] [Figures] [Journal Information] [Subscribe] [Scholar Register] [Received: 04/23/2021] [Accepted: 12/06/2021] [Indexed: 12/22/2022] Open
Abstract
Purpose Patient tolerability of magnetic resonance (MR)–guided radiation treatment delivery is limited by the need for repeated deep inspiratory breath holds (DIBHs). This volunteer study assessed the feasibility of continuous positive airway pressure (CPAP) with and without DIBH for respiratory motion management during radiation treatment with an MR-linear accelerator (MR-linac). Methods and Materials MR imaging safety was first addressed by placing the CPAP device in an MR-safe closet and configuring a tube circuit via waveguide to the magnet bore. Reproducibility and linearity of the final configuration were assessed. Six healthy volunteers underwent thoracic imaging in a 0.35T MR-linac, with one free breathing (FB) and 2 DIBH acquisitions being obtained at 5 pressures from 0 to 15 cm-H2O. Lung and heart volumes and positions were recorded; repeatability was assessed by comparing 2 consecutive DIBH scans. Blinded reviewers graded images for motion artifact using a 3-point grading scale. Participants completed comfort and perception surveys before and after imaging sessions. Results Compared with FB alone, FB-10, FB-12, and FB-15 cm H2O significantly increased lung volumes (+23%, +34%, +44%; all P <.05) and inferiorly displaced the heart (0.86 cm, 0.96 cm, 1.18 cm; all P < . 05). Lung volumes were significantly greater with DIBH-0 cm H2O compared with FB-15 cm H2O (+105% vs +44%, P = .01), and DIBH-15 cm H2O yielded additional volume increase (+131% vs +105%, P = .01). Adding CPAP to DIBH decreased lung volume differences between consecutive breath holds (correlation coefficient 0.97 at 15 cm H2O vs 0.00 at 0 cm H2O). The addition of 15 cm H2O CPAP reduced artifact scores (P = .03) compared with FB; all DIBH images (0-15 cm H2O) had less artifact (P < .01). Conclusions This work demonstrates the feasibility of integrating CPAP in an MR-linac environment in healthy volunteers. Extending this work to a larger patient cohort is warranted to further establish the role of CPAP as an alternative and concurrent approach to DIBH in MR-guided radiation therapy.
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Affiliation(s)
- Evan Liang
- Department of Radiation Oncology, Henry Ford Health System, Detroit, Michigan
- Corresponding author: Evan Liang, MD
| | - Jennifer L. Dolan
- Department of Radiation Oncology, Henry Ford Health System, Detroit, Michigan
| | - Eric D. Morris
- Department of Radiation Oncology, Henry Ford Health System, Detroit, Michigan
- Department of Radiation Oncology, University of California, Los Angeles, California
| | - Jonathan Vono
- Department of Pulmonary and Sleep Medicine, Henry Ford Health System, Detroit, Michigan
| | - Luisa F. Bazan
- Department of Pulmonary and Sleep Medicine, Henry Ford Health System, Detroit, Michigan
| | - Mei Lu
- Department of Radiation Oncology, Henry Ford Health System, Detroit, Michigan
| | - Carri K. Glide-Hurst
- Department of Radiation Oncology, Henry Ford Health System, Detroit, Michigan
- Department of Human Oncology, University of Wisconsin, Madison, Wisconsin
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Hansen KS, Théon AP, Willcox JL, Stern JA, Kent MS. Long-term outcomes with conventional fractionated and stereotactic radiotherapy for suspected heart-base tumours in dogs. Vet Comp Oncol 2020; 19:191-200. [PMID: 33135852 DOI: 10.1111/vco.12662] [Citation(s) in RCA: 2] [Impact Index Per Article: 0.4] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 08/09/2020] [Revised: 09/17/2020] [Accepted: 10/29/2020] [Indexed: 12/12/2022]
Abstract
Published radiotherapy results for suspected heart-based tumours in dogs are limited. In this retrospective longitudinal study (3/2014-2019), eight dogs with either clinical signs attributable to a heart-base mass (6), or asymptomatic with a progressively larger mass on echocardiogram (2), received conventional fractionated radiotherapy (CFRT) or stereotactic body radiotherapy (SBRT). Clinical findings in symptomatic cases included one or more of the following: retching/coughing (4), exercise intolerance (2), collapse (1), pericardial effusion (2), rare ventricular premature contractions (2), abdominal effusion (1), or respiratory distress due to chylothorax (1). CFRT cases received 50 Gray (Gy) in 20 fractions and SBRT cases received 30 Gy in 5 or 24 Gy in three fractions. Two dogs received chemotherapy post-radiation. At analysis, 7/8 dogs were deceased and one was alive 684 days post-treatment. The estimated median overall survival (MOS) from first treatment was 785 days (95% CI 114-868 days, [range 114-1492 days]). Five dogs received CFRT (MOS 817 days; (95% CI 155 days-not reached [range 155-1492 days])). Three dogs received SBRT with one alive at analysis (MOS 414 days, (95% CI, 114 days-not reached [range 114-414 days])). No statistically significant difference was found between survival for CFRT and SBRT. Of the symptomatic patients, 5/6 showed improvement. Mass size reduced in 4/5 cases receiving follow-up ultrasounds. Possible complications included asymptomatic radiation pneumonitis (4), atrial tachycardia/premature beats (4) and pericardial effusion with heart failure coincident with tumour progression (1). This study provides preliminary evidence that radiotherapy may impact clinically relevant or progressively enlarging heart-base masses.
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Affiliation(s)
- Katherine S Hansen
- Department of Surgical and Radiological Sciences, University of California Davis, School of Veterinary Medicine, Davis, California, USA
| | - Alain P Théon
- Department of Surgical and Radiological Sciences, University of California Davis, School of Veterinary Medicine, Davis, California, USA
| | - Jennifer L Willcox
- Department of Surgical and Radiological Sciences, University of California Davis, School of Veterinary Medicine, Davis, California, USA
| | - Joshua A Stern
- Department of Medicine and Epidemiology, University of California Davis, School of Veterinary Medicine, Davis, California, USA
| | - Michael S Kent
- Department of Surgical and Radiological Sciences, University of California Davis, School of Veterinary Medicine, Davis, California, USA
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Comparison of different methods for lung immobilization in an animal model. Radiother Oncol 2020; 150:151-158. [PMID: 32580000 DOI: 10.1016/j.radonc.2020.06.024] [Citation(s) in RCA: 1] [Impact Index Per Article: 0.2] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 04/01/2020] [Revised: 05/28/2020] [Accepted: 06/17/2020] [Indexed: 12/25/2022]
Abstract
BACKGROUND AND PURPOSE Respiratory-induced motion introduces uncertainties in the delivery of dose in radiotherapy treatments. Various methods are used clinically, e.g. breath-holding, while there is limited experience with other methods such as apneic oxygenation and high frequency jet ventilation (HFJV). This study aims to compare the latter approaches for lung immobilization and their clinical impact on gas exchange in an animal model. MATERIALS AND METHODS Two radiopaque tumor surrogate markers (TSM) were placed in the central (cTSM) and peripheral (dTSM) regions of the lungs in 9 anesthetized and muscle relaxed pigs undergoing 3 ventilatory interventions (1) HFJV at rates of 200 (JV200), 300 (JV300) and 400 (JV400) min-1; (2) apnea at continuous positive airway pressure (CPAP) levels of 0, 8 and 16 cmH2O; (3) conventional mechanical ventilation (CMV) as reference mode. cTSM and dTSM were visualized using fluoroscopy and their coordinates were computed. The ventilatory pattern was registered, and oxygen and carbon dioxide (pCO2) partial pressures were measured. RESULTS The highest range of TSM motion, and ventilation was found during CMV, the lowest during apnea. During HFJV the amount of motion varied inversely with increasing frequency. The reduction of TSM motion at JV300, JV400 and all CPAP levels came at the cost of increased pCO2, however the relatively low frequency of 200 min-1 for HFJV was the only ventilatory setting that enabled adequate CO2 removal. CONCLUSION In this model, HFJV at 200 min-1 was the best compromise between immobilization and gas exchange for sessions of 10-min duration.
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Percussion assisted radiation therapy in Hodgkin lymphoma allows a marked reduction in heart dose. Radiother Oncol 2020; 152:163-168. [PMID: 32448409 DOI: 10.1016/j.radonc.2019.11.009] [Citation(s) in RCA: 6] [Impact Index Per Article: 1.2] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 05/10/2019] [Revised: 11/07/2019] [Accepted: 11/11/2019] [Indexed: 11/23/2022]
Abstract
BACKGROUND AND PURPOSE Early-stage Hodgkin lymphoma (HL) is a highly curable disease but the treatment can induce late complications many years later. Irradiation of the healthy heart is inevitable during radiation treatment of mediastinal sites. We developed a novel method to induce a prolonged apnea-like state that can help decrease the dose to organs at risk during radiation therapy. We present the results of the first 8 HL patients treated routinely with percussion assisted radiation therapy (PART) in our clinic. MATERIAL AND METHODS We used a newly developed high-frequency non-invasive ventilation system to suppress respiratory motion for prolonged periods and push the heart away from the treated volume. RESULTS All 8 patients were able to rapidly learn the technique and had an advantage to be treated by PART. We lowered the mean heart dose by an average of 3 Gy with similar target coverage compared to a classical free breathing treatment plan. They were all treated for 15 radiotherapy sessions by PART without any notable side effects. CONCLUSIONS Percussion assisted radiation therapy can be used routinely to reduce the dose to the heart in Hodgkin lymphoma.
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Boatta E, Cazzato RL, De Marini P, Canuet M, Garnon J, Heger B, Bernmann TM, Ramamurthy N, Jahn C, Lopez M, Gangi A. Embolisation of pulmonary arteriovenous malformations using high-frequency jet ventilation: benefits of minimising respiratory motion. Eur Radiol Exp 2019; 3:26. [PMID: 31286281 PMCID: PMC6614221 DOI: 10.1186/s41747-019-0103-8] [Citation(s) in RCA: 3] [Impact Index Per Article: 0.5] [Reference Citation Analysis] [Abstract] [Track Full Text] [Download PDF] [Figures] [Journal Information] [Subscribe] [Scholar Register] [Received: 03/03/2019] [Accepted: 05/28/2019] [Indexed: 01/20/2023] Open
Abstract
Background To evaluate patient radiation dose and procedural duration recorded during pulmonary arteriovenous malformation (PAVM) embolisation performed using high-frequency jet ventilation (HFJV) as compared with conventional intermittent positive pressure ventilation (IPPV) Methods Patients undergoing PAVM embolisation with HFJV assistance after April 2017 were retrospectively identified as group A, and those treated with IPPV before April 2017 as group B. Primary outcomes were patient radiation dose and procedural duration between groups A and B. Secondary outcomes were difference in diaphragmatic excursion between groups A and B, in group A with/without HFJ assistance, technical/clinical success, and complications. Results Twelve PAVMs were embolised in 5 patients from group A, and 15 PAVMs in 10 patients from group B. Mean patient radiation was significantly lower in group A than in group B (54,307 ± 33,823 mGy cm2 [mean ± standard deviation] versus 100,704 ± 43,930 mGy cm2; p = 0.022). Procedural duration was 33.4 ± 16.1 min in group A versus 57.4 ± 14.9 min in group B (p = 0.062). Diaphragmatic excursion was significantly lower in group A (1.3 ± 0.4 mm) than in group B (19.7 ± 5.2 mm; p < 0.001) and lower with near statistical significance in group A with HFJV than without HFJV (1.3 ± 0.4 mm versus 10.9 ± 3.1 mm; p = 0.062). Technical and clinical success was 100% in both groups, without relevant complications. Conclusion HFJV-assisted PAVM embolisation is a safe, feasible technique resulting in reduced patient radiation doses and procedural time.
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Audag N, Van Ooteghem G, Liistro G, Salini A, Geets X, Reychler G. Intrapulmonary percussive ventilation leading to 20-minutes breath-hold potentially useful for radiation treatments. Radiother Oncol 2019; 141:292-295. [DOI: 10.1016/j.radonc.2019.09.024] [Citation(s) in RCA: 5] [Impact Index Per Article: 0.8] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 04/04/2019] [Revised: 08/02/2019] [Accepted: 09/26/2019] [Indexed: 11/15/2022]
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Van Ooteghem G, Dasnoy-Sumell D, Lambrecht M, Reychler G, Liistro G, Sterpin E, Geets X. Mechanically-assisted non-invasive ventilation: A step forward to modulate and to improve the reproducibility of breathing-related motion in radiation therapy. Radiother Oncol 2019; 133:132-139. [PMID: 30935569 DOI: 10.1016/j.radonc.2018.12.026] [Citation(s) in RCA: 11] [Impact Index Per Article: 1.8] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 06/29/2018] [Revised: 12/27/2018] [Accepted: 12/27/2018] [Indexed: 11/28/2022]
Abstract
BACKGROUND AND PURPOSE When using highly conformal radiotherapy techniques, a stabilized breathing pattern could greatly benefit the treatment of mobile tumours. Therefore, we assessed the feasibility of Mechanically-assisted non-invasive ventilation (MANIV) on unsedated volunteers, and its ability to stabilize and modulate the breathing pattern over time. MATERIALS AND METHODS Twelve healthy volunteers underwent 2 sessions of dynamic MRI under 4 ventilation modes: spontaneous breathing (SP), volume-controlled mode (VC) that imposes regular breathing in physiologic conditions, shallow-controlled mode (SH) that intends to lower amplitudes while increasing the breathing rate, and slow-controlled mode (SL) that mimics end-inspiratory breath-holds. The last 3 modes were achieved under respirator without sedation. The motion of the diaphragm was tracked along the breathing cycles on MRI images and expressed in position, breathing amplitude, and breathing period for intra- and inter-session analyses. In addition, end-inspiratory breath-hold duration and position stability were analysed during the SL mode. RESULTS MANIV was well-tolerated by all volunteers, without adverse event. The MRI environment led to more discomfort than MANIV itself. Compared to SP, VC and SH modes improved the inter-session reproducibility of the amplitude (by 43% and 47% respectively) and significantly stabilized the intra- and inter-session breathing rate (p < 0.001). Compared to VC, SH mode significantly reduced the intra-session mean amplitude (36%) (p < 0.002), its variability (42%) (p < 0.001), and the intra-session baseline shift (26%) (p < 0.001). The SL mode achieved end-inspiratory plateaus lasting more than 10 s. CONCLUSION MANIV offers exciting perspectives for motion management. It improves its intra- and inter-session reproducibility and should facilitate respiratory tracking, gating or margin techniques for both photon and proton treatments.
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Affiliation(s)
- Geneviève Van Ooteghem
- Université Catholique de Louvain, Institut de Recherche Expérimentale et Clinique (IREC), Molecular Imaging, Radiotherapy and Oncology (MIRO), Brussels, Belgium; Cliniques Universitaires Saint Luc, Department of Radiation Oncology, Brussels, Belgium.
| | - Damien Dasnoy-Sumell
- Université Catholique de Louvain, ImagX-R, Institute of Information and Communication Technologies, Electronics and Applied Mathematics, Louvain-La-Neuve, Belgium.
| | - Maarten Lambrecht
- University Hospitals Leuven Gasthuisberg, Department of Radiation Oncology, Leuven, Belgium; Katholieke Universiteit Leuven, Department of Oncology, Laboratory of Experimental Radiotherapy, Leuven, Belgium.
| | - Grégory Reychler
- Université Catholique de Louvain, Institut de Recherche Expérimentale et Clinique (IREC), Pôle de Pneumologie, ENT & Dermatologie, Brussels, Belgium.
| | - Giuseppe Liistro
- Université Catholique de Louvain, Institut de Recherche Expérimentale et Clinique (IREC), Pôle de Pneumologie, ENT & Dermatologie, Brussels, Belgium.
| | - Edmond Sterpin
- Université Catholique de Louvain, Institut de Recherche Expérimentale et Clinique (IREC), Molecular Imaging, Radiotherapy and Oncology (MIRO), Brussels, Belgium; Katholieke Universiteit Leuven, Department of Oncology, Laboratory of Experimental Radiotherapy, Leuven, Belgium.
| | - Xavier Geets
- Université Catholique de Louvain, Institut de Recherche Expérimentale et Clinique (IREC), Molecular Imaging, Radiotherapy and Oncology (MIRO), Brussels, Belgium; Cliniques Universitaires Saint Luc, Department of Radiation Oncology, Brussels, Belgium.
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Ringbæk TP, Weber U, Santiago A, Iancu G, Wittig A, Grzanka L, Bassler N, Engenhart-Cabillic R, Zink K. Validation of new 2D ripple filters in proton treatments of spherical geometries and non-small cell lung carcinoma cases. Phys Med Biol 2018; 63:245020. [PMID: 30523868 DOI: 10.1088/1361-6560/aaede9] [Citation(s) in RCA: 4] [Impact Index Per Article: 0.6] [Reference Citation Analysis] [Abstract] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 11/11/2022]
Abstract
A ripple filter (RiFi) is a passive energy modulator used in scanned particle therapy to broaden the Bragg peak, thus lowering the number of accelerator energies required for homogeneous target coverage, which significantly reduces the irradiation time. As we have previously shown, a new 6 mm thick RiFi with 2D groove shapes produced with 3D printing can be used in carbon ion treatments with a similar target coverage and only a marginally worse planning conformity compared to treatments with in-use 3 mm thick RiFis of an older 1D design. Where RiFis are normally not used with protons due to larger scattering and straggling effects, this new design would be beneficial in proton therapy too. Measurements of proton Bragg curves and lateral beam profiles were carried out for different RiFi designs and thicknesses as well as for no RiFi at the Heidelberg Ionenstrahl-Therapiezentrum. Base data for proton treatment planning were generated with the Monte Carlo code SHIELD-HIT12A with and without the 2D 6 mm RiFi. Plans on spherical targets in water were calculated with TRiP98 for a systematic RiFi performance analysis and for comparisons with carbon ion plans for the same respective energy depth step sizes. Plans for 9 stage I static non small cell lung cancer patients were calculated with Eclipse 13.7.15. Dose-volume-histograms, spatial dose distributions and dosimetric indexes were used for plan evaluation. Measurements confirm the functionality of the new 2D RiFi design, which reduces the beam spot size compared to 1D RiFis of the same thickness. Planning studies show that a 6 mm thick 2D RiFi could be used in proton therapy to lower the irradiation time. Although slightly worse planning conformity and dose homogeneity were found for plans with the RiFi compared to plans without, satisfactory results within the planning objective were obtained for all cases.
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Affiliation(s)
- Toke Printz Ringbæk
- University of Applied Science, Gießen-Friedberg, Germany. Department of Radiotherapy and Radiation Oncology, Philipps University, Marburg, Germany. Author to whom any correspondence should be addressed
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13
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Graeff C, Bert C. Noninvasive cardiac arrhythmia ablation with particle beams. Med Phys 2018; 45:e1024-e1035. [DOI: 10.1002/mp.12595] [Citation(s) in RCA: 15] [Impact Index Per Article: 2.1] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 08/15/2017] [Revised: 09/05/2017] [Accepted: 09/17/2017] [Indexed: 12/31/2022] Open
Affiliation(s)
- Christian Graeff
- GSI Helmholzzentrum für Schwerionenforschung GmbH 64291 Darmstadt Germany
| | - Christoph Bert
- Department of Radiation Oncology Universitätsklinikum Erlangen Friedrich‐Alexander‐Universität 91054 Erlangen‐Nürnberg Germany
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Buchan T, Walkden M, Jenkins K, Sultan P, Bandula S. High-Frequency Jet Ventilation During Cryoablation of Small Renal Tumours. Cardiovasc Intervent Radiol 2018; 41:1067-1073. [PMID: 29516243 PMCID: PMC5976690 DOI: 10.1007/s00270-018-1921-4] [Citation(s) in RCA: 11] [Impact Index Per Article: 1.6] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Track Full Text] [Download PDF] [Figures] [Journal Information] [Submit a Manuscript] [Subscribe] [Scholar Register] [Received: 10/25/2017] [Accepted: 02/24/2018] [Indexed: 01/20/2023]
Abstract
AIM To evaluate the effect of high-frequency jet ventilation (HFJV) in place of standard intermittent positive-pressure ventilation (IPPV) on procedure duration, patient radiation dose, complication rates, and outcomes during CT-guided cryoablation of small renal tumours. MATERIALS AND METHODS One hundred consecutive CT-guided cryoablation procedures to treat small renal tumours under general anaesthesia were evaluated-50 with standard IPPV and 50 after the introduction of HFJV as standard practice. Anaesthesia and procedural times, ionising radiation dose, complications, and 1-month post-treatment outcomes were collected. RESULTS HFJV was feasible and safe in all cases. Mean procedure time and total anaesthetic time were shorter with HFJV (p = <0.0001). The number of required CT acquisitions (p = 0.0002) and total procedure patient radiation dose (p = 0.0027) were also lower in the HFJV group compared with the IPPV group. There were a total of four complications of Clavien-Dindo classification 3 or above-three in the IPPV group and one in the HFJV group. At 1-month follow-up, two cases (both in the IPPV group) demonstrated subtotal treatment. Both cases were subsequently successfully retreated with cryoablation. CONCLUSION By reducing target tumour motion during CT-guided renal cryoablation, HFJV can reduce procedure times and exposure to ionising radiation. HFJV provides an important adjunct to complex image-guided interventions, with potential to improve safety and treatment outcomes.
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Affiliation(s)
- Thea Buchan
- Imaging Department, University College London Hospital, 235 Euston Road, London, NW1 2BU, UK
| | - Miles Walkden
- Imaging Department, University College London Hospital, 235 Euston Road, London, NW1 2BU, UK
| | - Kathryn Jenkins
- Department of Anaesthesia, University College London Hospital, 235 Euston Road, London, NW1 2BU, UK
| | - Pervez Sultan
- Department of Anaesthesia, University College London Hospital, 235 Euston Road, London, NW1 2BU, UK
| | - Steve Bandula
- Centre for Medical Imaging, University College London, 250 Euston Road, London, NW1 2PG, UK.
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Galmén K, Freedman J, Toporek G, Goździk W, Harbut P. Clinical application of high frequency jet ventilation in stereotactic liver ablations - a methodological study. F1000Res 2018; 7:773. [PMID: 30271582 PMCID: PMC6113879 DOI: 10.12688/f1000research.14873.2] [Citation(s) in RCA: 7] [Impact Index Per Article: 1.0] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Track Full Text] [Download PDF] [Figures] [Journal Information] [Submit a Manuscript] [Subscribe] [Scholar Register] [Accepted: 09/05/2018] [Indexed: 01/08/2023] Open
Abstract
Background: Computer-assisted navigation during thermal ablation of liver tumours, may help to correct needle placement and improve ablation efficacy in percutaneous, laparoscopic and open interventions. The potential advantage of using high frequency jet-ventilation technique (HFJV) during the procedure is by minimising the amplitude of respiration-related upper-abdominal organs movements. The aim of this clinical methodological trial was to establish whether HFJV would give less ventilatory induced liver movements than conventional ventilation, during stereotactic navigated ablation of liver metastases under open surgery. Methods: Five consecutive patients scheduled for elective, open liver ablation under general propofol and remifentanil anaesthesia were included in the study protocol. During the stereotactic targeting of the tumours, HFJV was chosen for intraoperative lung ventilation. For tracking of liver movement, a rigid marker shield was placed on the liver surface and tracked with an optical position measurement system. A 4D position of the marker shield was measured for HFJV and conventional tidal volume lung ventilation (TV). At each time point the magnitude of liver displacement was calculated as an Euclidean distance between translational component of the marker shield's 3D position and previously estimated centroid of the translational motion. Results: The mean Euclidean liver displacement was 0.80 (0.10) mm for HFJV and 2,90 (1.03) mm for TV with maximum displacement going as far as 12 mm on standard ventilation (p=0.0001). Conclusion: HFJV is a valuable lung ventilation method for patients undergoing stereotactic surgical procedures in general anaesthesia when reduction of organ displacement is crucial.
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Affiliation(s)
- Karolina Galmén
- Department of Anaesthesiology and Intensive Therapy, Danderyd University Hospital, Stockholm, Sweden
| | - Jacob Freedman
- Department of Surgery and Urology, Danderyd University Hospital, Stockholm, Sweden
| | - Grzegorz Toporek
- ARTORG Center for Biomedical Engineering, University of Bern, Bern, Switzerland
| | - Waldemar Goździk
- Department of Anaesthesiology and Intensive Therapy, Wrocław Medical University, Wrocław, Poland
| | - Piotr Harbut
- Department of Anaesthesiology and Intensive Therapy, Danderyd University Hospital, Stockholm, Sweden
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16
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Galmén K, Freedman J, Toporek G, Goździk W, Harbut P. Clinical application of high frequency jet ventilation in stereotactic liver ablations - a methodological study. F1000Res 2018; 7:773. [PMID: 30271582 PMCID: PMC6113879 DOI: 10.12688/f1000research.14873.1] [Citation(s) in RCA: 10] [Impact Index Per Article: 1.4] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Track Full Text] [Figures] [Journal Information] [Submit a Manuscript] [Subscribe] [Scholar Register] [Accepted: 06/14/2018] [Indexed: 09/29/2023] Open
Abstract
Background: Computer-assisted navigation during thermal ablation of liver tumours, may help to correct needle placement and improve ablation efficacy in percutaneous, laparoscopic and open interventions. The potential advantage of using high frequency jet-ventilation technique (HFJV) during the procedure is by minimising the amplitude of respiration-related upper-abdominal organs movements. The aim of this clinical methodological trial was to establish whether HFJV would give less ventilatory induced liver movements than conventional ventilation, during stereotactic navigated ablation of liver metastases under open surgery. Methods: Five consecutive patients scheduled for elective, open liver ablation under general propofol and remifentanil anaesthesia were included in the study protocol. During the stereotactic targeting of the tumours, HFJV was chosen for intraoperative lung ventilation. For tracking of liver movement, a rigid marker shield was placed on the liver surface and tracked with an optical position measurement system. A 4D position of the marker shield was measured for HFJV and conventional tidal volume lung ventilation (TV). At each time point the magnitude of liver displacement was calculated as an Euclidean distance between translational component of the marker shield's 3D position and previously estimated centroid of the translational motion. Results: The mean Euclidean liver displacement was 0.80 (0.10) mm for HFJV and 2,90 (1.03) mm for TV with maximum displacement going as far as 12 mm on standard ventilation (p=0.0001). Conclusion: HFJV is a valuable lung ventilation method for patients undergoing stereotactic surgical procedures in general anaesthesia when reduction of organ displacement is crucial.
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Affiliation(s)
- Karolina Galmén
- Department of Anaesthesiology and Intensive Therapy, Danderyd University Hospital, Stockholm, Sweden
| | - Jacob Freedman
- Department of Surgery and Urology, Danderyd University Hospital, Stockholm, Sweden
| | - Grzegorz Toporek
- ARTORG Center for Biomedical Engineering, University of Bern, Bern, Switzerland
| | - Waldemar Goździk
- Department of Anaesthesiology and Intensive Therapy, Wrocław Medical University, Wrocław, Poland
| | - Piotr Harbut
- Department of Anaesthesiology and Intensive Therapy, Danderyd University Hospital, Stockholm, Sweden
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17
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Effect of continuous positive airway pressure administration during lung stereotactic ablative radiotherapy: a comparative planning study. Strahlenther Onkol 2018; 194:591-599. [DOI: 10.1007/s00066-018-1278-2] [Citation(s) in RCA: 13] [Impact Index Per Article: 1.9] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 06/30/2017] [Accepted: 01/29/2018] [Indexed: 12/25/2022]
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18
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Ogna A, Bernasconi M, Belmondo B, Long O, Simons J, Peguret N, Heinzer R, Nicod LP, Bourhis J, Lovis A. Prolonged Apnea Supported by High-Frequency Noninvasive Ventilation: A Pilot Study. Am J Respir Crit Care Med 2017; 195:958-960. [PMID: 28362201 DOI: 10.1164/rccm.201608-1572le] [Citation(s) in RCA: 12] [Impact Index Per Article: 1.5] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 11/16/2022] Open
Affiliation(s)
- Adam Ogna
- 1 University Hospital of Lausanne (CHUV - Centre Hospitalier Universitaire Vaudois) Lausanne, Switzerland
| | - Maurizio Bernasconi
- 1 University Hospital of Lausanne (CHUV - Centre Hospitalier Universitaire Vaudois) Lausanne, Switzerland
| | - Bastien Belmondo
- 1 University Hospital of Lausanne (CHUV - Centre Hospitalier Universitaire Vaudois) Lausanne, Switzerland
| | - Olivier Long
- 1 University Hospital of Lausanne (CHUV - Centre Hospitalier Universitaire Vaudois) Lausanne, Switzerland
| | - Julien Simons
- 1 University Hospital of Lausanne (CHUV - Centre Hospitalier Universitaire Vaudois) Lausanne, Switzerland
| | - Nicolas Peguret
- 1 University Hospital of Lausanne (CHUV - Centre Hospitalier Universitaire Vaudois) Lausanne, Switzerland
| | - Raphaël Heinzer
- 1 University Hospital of Lausanne (CHUV - Centre Hospitalier Universitaire Vaudois) Lausanne, Switzerland
| | - Laurent P Nicod
- 1 University Hospital of Lausanne (CHUV - Centre Hospitalier Universitaire Vaudois) Lausanne, Switzerland
| | - Jean Bourhis
- 1 University Hospital of Lausanne (CHUV - Centre Hospitalier Universitaire Vaudois) Lausanne, Switzerland
| | - Alban Lovis
- 1 University Hospital of Lausanne (CHUV - Centre Hospitalier Universitaire Vaudois) Lausanne, Switzerland
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Henry T, Bassler N, Ureba A, Tsubouchi T, Valdman A, Siegbahn A. Development of an interlaced-crossfiring geometry for proton grid therapy. Acta Oncol 2017; 56:1437-1443. [PMID: 28826311 DOI: 10.1080/0284186x.2017.1350287] [Citation(s) in RCA: 11] [Impact Index Per Article: 1.4] [Reference Citation Analysis] [Abstract] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 10/19/2022]
Abstract
BACKGROUND Grid therapy has in the past normally been performed with single field photon-beam grids. In this work, we evaluated a method to deliver grid therapy based on interlacing and crossfiring grids of mm-wide proton beamlets over a target volume, by Monte Carlo simulations. MATERIAL AND METHODS Dose profiles for single mm-wide proton beamlets (1, 2 and 3 mm FWHM) in water were simulated with the Monte Carlo code TOPAS. Thereafter, grids of proton beamlets were directed toward a cubic target volume, located at the center of a water tank. The aim was to deliver a nearly homogeneous dose to the target, while creating high dose heterogeneity in the normal tissue, i.e., high gradients between valley and peak doses in the grids, down to the close vicinity of the target. RESULTS The relative increase of the beam width with depth was largest for the smallest beams (+6.9 mm for 1 mm wide and 150 MeV proton beamlets). Satisfying dose coverage of the cubic target volume (σ < ±5%) was obtained with the interlaced-crossfiring setup, while keeping the grid pattern of the dose distribution down to the target (valley-to-peak dose ratio <0.5 less than 1 cm before the target). Center-to-center distances around 7-8 mm between the beams were found to give the best compromise between target dose homogeneity and low peak doses outside of the target. CONCLUSIONS A nearly homogeneous dose distribution can be obtained in a target volume by crossfiring grids of mm-wide proton-beamlets, while maintaining the grid pattern of the dose distribution at large depths in the normal tissue, close to the target volume. We expect that the use of this method will increase the tumor control probability and improve the normal tissue sparing in grid therapy.
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Affiliation(s)
- Thomas Henry
- Medical Radiation Physics, Department of Physics, Stockholm University, Stockholm, Sweden
| | - Niels Bassler
- Medical Radiation Physics, Department of Physics, Stockholm University, Stockholm, Sweden
| | - Ana Ureba
- Medical Radiation Physics, Department of Physics, Stockholm University, Stockholm, Sweden
| | - Toshiro Tsubouchi
- Department of Radiation Oncology, Graduate School of Medicine, Osaka University, Osaka, Japan
| | - Alexander Valdman
- Department of Oncology and Pathology, Karolinska University Hospital, Stockholm, Sweden
| | - Albert Siegbahn
- Medical Radiation Physics, Department of Physics, Stockholm University, Stockholm, Sweden
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Apnea-like suppression of respiratory motion: First evaluation in radiotherapy. Radiother Oncol 2016; 118:220-6. [PMID: 26979264 DOI: 10.1016/j.radonc.2015.10.011] [Citation(s) in RCA: 38] [Impact Index Per Article: 4.2] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 09/14/2015] [Revised: 10/11/2015] [Accepted: 10/11/2015] [Indexed: 12/25/2022]
Abstract
BACKGROUND AND PURPOSE Compensation for respiratory motion is needed while administering radiotherapy (RT) to tumors that are moving with respiration to reduce the amount of irradiated normal tissues and potentially decrease radiation-induced collateral damages. The purpose of this study was to test a new ventilation system designed to induce apnea-like suppression of respiratory motion and allow long enough breath hold durations to deliver complex RT. MATERIAL AND METHODS The High Frequency Percussive Ventilation system was initially tested in a series of 10 volunteers and found to be well tolerated, allowing a median breath hold duration of 11.6 min (range 3.9-16.5 min). An evaluation of this system was subsequently performed in 4 patients eligible for adjuvant breast 3D conformal RT, for lung stereotactic body RT (SBRT), lung volumetric modulated arc therapy (VMAT), and VMAT for palliative pleural metastases. RESULTS When compared to free breathing (FB) and maximal inspiration (MI) gating, this Percussion Assisted RT (PART) offered favorable dose distribution profiles in 3 out of the 4 patients tested. PART was applied in these 3 patients with good tolerance, without breaks during the "beam on time period" throughout the overall courses of RT. The mean duration of the apnea-like breath hold that was necessary for delivering all the RT fractions was 7.61 min (SD=2.3). CONCLUSIONS This first clinical implementation of PART was found to be feasible, tolerable and offers new opportunities in the field of RT for suppressing respiratory motion.
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21
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Baumann M, Overgaard J. Bridging the valley of death: The new Radiotherapy & Oncology section “First in man – Translational innovations in radiation oncology”. Radiother Oncol 2016; 118:217-9. [DOI: 10.1016/j.radonc.2016.02.005] [Citation(s) in RCA: 3] [Impact Index Per Article: 0.3] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 02/01/2016] [Accepted: 02/03/2016] [Indexed: 12/31/2022]
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Santiago A, Fritz P, Mühlnickel W, Engenhart-Cabillic R, Wittig A. Changes in the radiological depth correlate with dosimetric deterioration in particle therapy for stage I NSCLC patients under high frequency jet ventilation. Acta Oncol 2015; 54:1631-7. [PMID: 26228661 DOI: 10.3109/0284186x.2015.1067716] [Citation(s) in RCA: 6] [Impact Index Per Article: 0.6] [Reference Citation Analysis] [Abstract] [MESH Headings] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 11/13/2022]
Abstract
BACKGROUND Particle dose distributions are highly sensitive to anatomy changes in the beam path, which may lead to substantial dosimetric deviations. Robust planning and dedicated image guidance together with strategies for online decision making to counteract dosimetric deterioration are thus mandatory. We aimed to develop methods to quantify anatomical discrepancies as depicted by repeated computed tomography (CT) imaging and to test whether they can predict deviations in target coverage. MATERIAL AND METHODS Dedicated software tools allowed for voxel-based calculations of changes in the water equivalent path length (WEPL) in beam directions. We prepared proton and carbon ion plans with different coplanar beam angle settings on a series of lung cancer patients, for which planning and localization CT scans under high frequency jet ventilation (HFJV) for tumor fixation were performed. We investigated the reproducibility of target coverage between the optimized and recalculated treatment plans. We then studied how different raster scan and planning settings influence the robustness. Finally, we carried out a systematic analysis of the variations in the WEPL along different coplanar beam angles to find beam directions, which could minimize such variations. RESULTS The Spearman's correlations for the GTV ΔV95 and ΔV98 with the ΔWEPL for the proton plans with a 0° and -45° two-field configuration were 0.701 (p = 0.02) and 0.719 (p = 0.08), respectively. For beam configurations 0° and -90°, or 0° and + 45°, with lower ΔWEPL, the correlations were no significant. The same trends were observed for the carbon ion plans. Increased beam spot overlap reduced dosimetric deterioration in case of large ΔWEPL. CONCLUSION Software tools for fast online analysis of WEPL changes might help supporting clinical decision making of image guidance. Raster scan and treatment planning settings can help to compensate for anatomical deviations.
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Affiliation(s)
- Alina Santiago
- a Philipps-University Marburg and University Hospital Giessen and Marburg , Department of Radiotherapy and Radiation Oncology , Marburg , Germany
| | - Peter Fritz
- b St Marien-Krankenhaus , Department of Radiotherapy , Siegen , Germany
| | - Werner Mühlnickel
- b St Marien-Krankenhaus , Department of Radiotherapy , Siegen , Germany
| | - Rita Engenhart-Cabillic
- a Philipps-University Marburg and University Hospital Giessen and Marburg , Department of Radiotherapy and Radiation Oncology , Marburg , Germany
| | - Andrea Wittig
- a Philipps-University Marburg and University Hospital Giessen and Marburg , Department of Radiotherapy and Radiation Oncology , Marburg , Germany
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Imaging dose assessment for IGRT in particle beam therapy. Radiother Oncol 2013; 109:409-13. [DOI: 10.1016/j.radonc.2013.09.007] [Citation(s) in RCA: 17] [Impact Index Per Article: 1.4] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 06/01/2013] [Revised: 09/01/2013] [Accepted: 09/08/2013] [Indexed: 12/25/2022]
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Santiago A, Jelen U, Ammazzalorso F, Engenhart-Cabillic R, Fritz P, Mühlnickel W, Enghardt W, Baumann M, Wittig A. Reproducibility of target coverage in stereotactic spot scanning proton lung irradiation under high frequency jet ventilation. Radiother Oncol 2013; 109:45-50. [PMID: 24128803 DOI: 10.1016/j.radonc.2013.09.013] [Citation(s) in RCA: 14] [Impact Index Per Article: 1.2] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 06/01/2013] [Revised: 09/13/2013] [Accepted: 09/20/2013] [Indexed: 12/21/2022]
Abstract
PURPOSE To investigate scanned-beam proton dose distribution reproducibility in the lung under high frequency jet ventilation (HFJV). MATERIALS AND METHODS For 11 patients (12 lesions), treated with single-fraction photon stereotactic radiosurgery under HFJV, scanned-beam proton plans were prepared with the TRiP98 treatment planning system using 2, 3-4 and 5-7 beams. The planning objective was to deliver at least 95% of the prescription of 33 Gy (RBE) to 98% of the PTV. Plans were subsequently recomputed on localization CT scans. Additionally, for selected cases, the effects of range uncertainties were investigated. RESULTS Median GTV V(98%) was 98.7% in the original 2-field plans and 93.7% in their recomputation (p=0.039). The respective values were 99.0% and 98.0% (p=0.039) for the 3-4-field plans and 100.0% and 99.6% (p=0.125) for the 5-7-field plans. CT calibration uncertainties of ±3.5% led to a GTV V(98%) reduction below 1.5 percentual points in most cases and reaching 3 percentual points for 2-field plans with beam undershoot. CONCLUSIONS Through jet ventilation, reproducible tumor fixation for proton radiotherapy of lung lesions is achievable, ensuring excellent target coverage in most cases. In few cases, non-optimal patient setup reproducibility induced density changes across beam entrance channels, leading to dosimetric deterioration between planning and delivery.
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Affiliation(s)
- Alina Santiago
- University of Marburg, Department of Radiotherapy and Radiation Oncology, Germany.
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Boda-Heggemann J, Mai S, Fleckenstein J, Siebenlist K, Simeonova A, Ehmann M, Steil V, Wenz F, Lohr F, Stieler F. Flattening-filter-free intensity modulated breath-hold image-guided SABR (Stereotactic ABlative Radiotherapy) can be applied in a 15-min treatment slot. Radiother Oncol 2013; 109:505-9. [PMID: 24128805 DOI: 10.1016/j.radonc.2013.09.014] [Citation(s) in RCA: 38] [Impact Index Per Article: 3.2] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 05/07/2013] [Revised: 09/13/2013] [Accepted: 09/15/2013] [Indexed: 11/18/2022]
Abstract
Hypofractionated image-guided stereotactic ablative radiotherapy (igSABR) is effective in small lung/liver lesions. Computer-assisted breath-hold reduces intrafraction motion but, as every gating/triggering strategy, reduces the duty cycle, resulting in long fraction times if combined with intensity-modulated radiotherapy (IMRT). 10 MV flattening-filter-free IMRT reduces daily fraction duration to <10 min for single doses of 5-20 Gy.
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Affiliation(s)
- Judit Boda-Heggemann
- Department of Radiation Oncology, University Medical Center Mannheim, University of Heidelberg, Germany.
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Use of High-Frequency Jet Ventilation for Percutaneous Tumor Ablation. Cardiovasc Intervent Radiol 2013; 37:140-6. [DOI: 10.1007/s00270-013-0620-4] [Citation(s) in RCA: 41] [Impact Index Per Article: 3.4] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Submit a Manuscript] [Subscribe] [Scholar Register] [Received: 11/12/2012] [Accepted: 12/07/2012] [Indexed: 10/26/2022]
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The use of high-frequency jet ventilation for out of operating room anesthesia. Curr Opin Anaesthesiol 2012; 25:482-5. [DOI: 10.1097/aco.0b013e3283554375] [Citation(s) in RCA: 20] [Impact Index Per Article: 1.5] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 11/26/2022]
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Leiter R, Aliverti A, Priori R, Staun P, Lo Mauro A, Larsson A, Frykholm P. Comparison of superimposed high-frequency jet ventilation with conventional jet ventilation for laryngeal surgery. Br J Anaesth 2012; 108:690-7. [PMID: 22258205 DOI: 10.1093/bja/aer460] [Citation(s) in RCA: 10] [Impact Index Per Article: 0.8] [Reference Citation Analysis] [Abstract] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 12/19/2022] Open
Abstract
BACKGROUND New ventilators have simplified the use of supraglottic superimposed high-frequency jet ventilation (SHFJV(SG)), but it has not been systematically compared with other modes of jet ventilation (JV) in humans. We sought to investigate whether SHFJV(SG) would provide more effective ventilation compared with single-frequency JV techniques. METHODS A total of 16 patients undergoing minor laryngeal surgery under general anaesthesia were included. In each patient, four different JV techniques were applied in random order for 10-min periods: SHFJV(SG), supraglottic normal frequency (NFJV(SG)), supraglottic high frequency (HFJV(SG)), and infraglottic high-frequency jet ventilation (HFJV(IG)). Chest wall volume variations were continuously measured with opto-electronic plethysmography (OEP), intratracheal pressure was recorded and blood gases were measured. RESULTS Chest wall volumes were normalized to NFJV(SG) end-expiratory level. The increase in end-expiratory chest wall volume (EEV(CW)) was 239 (196) ml during SHFJV(SG) (P<0.05 compared with NFJV(SG)). EEV(CW) was 148 (145) and 44 (106) ml during HFJV(SG) and HFJV(IG), respectively (P<0.05 compared with SHFJV(SG)). Tidal volume (V(T)) during SHFJV(SG) was 269 (149) ml. V(T) was 229 (169) ml (P=1.00 compared with SHFJV(SG)), 145 (50) ml (P<0.05), and 110 (33) ml (P<0.01) during NFJV(SG), HFJV(SG), and HFJV(IG), respectively. Intratracheal pressures corresponded well to changes in both EEV(CW) and V(T). All JV modes resulted in adequate oxygenation. However, was lowest during HFJV(SG) [4.3 (1.3) kPa; P<0.01 compared with SHFJV(SG)]. CONCLUSION SHFJV(SG) was associated with increased EEV(CW) and V(T) compared with the three other investigated JV modes. All four modes provided adequate ventilation and oxygenation, and thus can be used for uncomplicated laryngeal surgery in healthy patients with limited airway obstruction.
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Affiliation(s)
- R Leiter
- Anaesthesiology and Intensive Care, Department of Surgical Sciences, Uppsala University, Sjukhusvägen 1, Entrance 70, S-75185 Uppsala, Sweden.
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CT-guided Navigation of Percutaneous Hepatic and Renal Radiofrequency Ablation under High-frequency Jet Ventilation: Feasibility Study. J Vasc Interv Radiol 2011; 22:1275-8. [DOI: 10.1016/j.jvir.2011.04.013] [Citation(s) in RCA: 31] [Impact Index Per Article: 2.2] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 08/18/2010] [Revised: 04/22/2011] [Accepted: 04/29/2011] [Indexed: 12/31/2022] Open
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Raiten J, Elkassabany N, Gao W, Mandel JE. Medical intelligence article: novel uses of high frequency ventilation outside the operating room. Anesth Analg 2011; 112:1110-3. [PMID: 21372275 DOI: 10.1213/ane.0b013e318212b851] [Citation(s) in RCA: 19] [Impact Index Per Article: 1.4] [Reference Citation Analysis] [Abstract] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 11/05/2022]
Abstract
High frequency jet ventilation (HFJV) is a technique that is most frequently used in the intensive care unit and during tracheal and otorhinolaryngologic surgery. The utility of HFJV for procedures performed outside of the intensive care unit and operating room is currently being explored. The ability of HFJV to provide mechanical ventilation, yet achieve near static conditions of the chest and abdomen, makes it a very appealing technique for procedures such as pulmonary vein isolation and ablation for atrial fibrillation, targeted radiation therapy for lung and liver tumors, and certain diagnostic imaging techniques.
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Affiliation(s)
- Jesse Raiten
- Department of Anesthesiology and Critical Care, University of Pennsylvania School of Medicine, 3400 Spruce St., Dulles 6, Philadelphia, PA 19104, USA.
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