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Improving the EHMRG Prognostic Evaluation of Acute Heart Failure with TAPSE/PASp: A Sequential Approach. Diagnostics (Basel) 2022; 12:diagnostics12020478. [PMID: 35204569 PMCID: PMC8871471 DOI: 10.3390/diagnostics12020478] [Citation(s) in RCA: 2] [Impact Index Per Article: 0.7] [Reference Citation Analysis] [Abstract] [Track Full Text] [Download PDF] [Figures] [Journal Information] [Subscribe] [Scholar Register] [Received: 01/19/2022] [Revised: 02/08/2022] [Accepted: 02/11/2022] [Indexed: 01/15/2023] Open
Abstract
The Emergency Heart Failure Mortality Risk Grade (EHMRG) can predict short-term mortality in patients admitted for acute heart failure (AHF) in the emergency department (ED). This paper aimed to evaluate if TAPSE/PASp, an echocardiographic marker of ventricular desynchronization, can improve in-hospital death prediction in patients at moderate-to-high risk, according to EHMRG score classification. From 1 January 2018 to 30 December 2019, we retrospectively enrolled all the consecutive subjects admitted to our Internal Medicine Department for AHF from the ED. We performed bedside echocardiography within the first 24 h of admission. We evaluated EHMRG and NYHA in the ED, days of admission in Internal Medicine, and in-hospital mortality. We assessed cutoffs with ROC curve analysis and survival with Kaplan–Meier and Cox regression. We obtained a cohort of 439 subjects; 10.3% underwent in-hospital death. Patients with normal TAPSE/PASp in EHMRG Classes 4, 5a, and 5b had higher survival rates (100%, 100%, and 94.3%, respectively), while subjects with pathologic TAPSE/PASp had lower survival rates (81.8%, 78.3%, and 43.4%, respectively) (p < 0.0001, log-rank test). TAPSE/PASp, an echocardiographic marker of ventricular desynchronization, can further stratify the risk of in-hospital death evaluated by EHMRG.
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Mareev YV, Dzhioeva ON, Zorya OT, Pisaryuk AS, Verbilo SL, Skaletsky KV, Ionin VA, Drapkina OM, Alekhin MN, Saidova MA, Safarova AF, Garganeeva AA, Boshchenko AA, Ovchinnikov AG, Chernov MY, Ageev FT, Vasyuk YA, Kobalava ZD, Nosikov AV, Safonov DV, Khudorozhkova ED, Belenkov YN, Mitkov VV, Mitkova MD, Matskeplishvili ST, Mareev VY. [Focus ultrasound for cardiology practice. Russian consensus document]. KARDIOLOGIIA 2021; 61:4-23. [PMID: 34882074 DOI: 10.18087/cardio.2021.11.n1812] [Citation(s) in RCA: 2] [Impact Index Per Article: 0.5] [Reference Citation Analysis] [Abstract] [MESH Headings] [Track Full Text] [Subscribe] [Scholar Register] [Received: 09/02/2021] [Accepted: 09/13/2021] [Indexed: 06/13/2023]
Abstract
This document is a consensus document of Russian Specialists in Heart Failure, Russian Society of Cardiology, Russian Association of Specialists in Ultrasound Diagnostics in Medicine and Russian Society for the Prevention of Noncommunicable Diseases. In the document a definition of focus ultrasound is stated and discussed when it can be used in cardiology practice in Russian Federation.
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Affiliation(s)
- Yu V Mareev
- National Medical Research Centre for Therapy and Preventive Medicine, Moscow, Russia Robertson Centre for Biostatistics, Glasgow, Great Britain
| | - O N Dzhioeva
- National Medical Research Centre for Therapy and Preventive Medicine, Moscow, Russia Moscow State Medical and Dental University named after Evdokimov, Moscow, Russia
| | - O T Zorya
- Russian State University of Peoples' Friendship, Moscow, Russia
| | - A S Pisaryuk
- Russian State University of Peoples' Friendship, Moscow, Russia
| | - S L Verbilo
- LLC «Centre for Family Medicine MEDIKA», St. Petersburg, Russia
| | - K V Skaletsky
- Scientific Research Institute «Ochapovsky Regional Clinical Hospital №1», Krasnodar, Russia
| | - V A Ionin
- Pavlov University, St. Petersburg, Russia
| | - O M Drapkina
- National Medical Research Centre for Therapy and Preventive Medicine, Moscow, Russia Moscow State Medical and Dental University named after Evdokimov, Moscow, Russia
| | - M N Alekhin
- Central Clinical Hospital of the Presidential Administration of Russian Federation, Moscow, Russia Central State Medical Academy of the Presidential Administration of Russian Federation, Moscow, Russia
| | - M A Saidova
- Scientific Medical Research Center of Cardiology, Moscow, Russia
| | - A F Safarova
- Russian State University of Peoples' Friendship, Moscow, Russia
| | - A A Garganeeva
- "Research Institute for Cardiology", Tomsk National Research Medical Center, Russian Academy of Sciences, Tomsk, Russia
| | - A A Boshchenko
- "Research Institute for Cardiology", Tomsk National Research Medical Center, Russian Academy of Sciences, Tomsk, Russia Siberian State Medical University, Tomsk, Russia
| | - A G Ovchinnikov
- Moscow State Medical and Dental University named after Evdokimov, Moscow, Russia Scientific Medical Research Center of Cardiology, Moscow, Russia
| | - M Yu Chernov
- Center for Diagnostic Research, N.N. Burdenko Main Military Clinical Hospital, Moscow, Russia
| | - F T Ageev
- Scientific Medical Research Center of Cardiology, Moscow, Russia
| | - Yu A Vasyuk
- Moscow State Medical and Dental University named after Evdokimov, Moscow, Russia
| | - Zh D Kobalava
- Russian State University of Peoples' Friendship, Moscow, Russia
| | - A V Nosikov
- Acibadem City Clinic Mladost, Sofia, Bulgaria
| | - D V Safonov
- Privolzhsky Research Medical University, Nizhniy Novgorod, Russia
| | - E D Khudorozhkova
- Russian Medical Academy of Continuous Professional Education, Moscow, Russia
| | - Yu N Belenkov
- Sechenov Moscow State Medical University, Moscow, Russia
| | - V V Mitkov
- Russian Medical Academy of Continuous Professional Education, Moscow, Russia
| | - M D Mitkova
- Russian Medical Academy of Continuous Professional Education, Moscow, Russia
| | - S T Matskeplishvili
- Medical Research and Educational Center of the M. V. Lomonosov Moscow State University, Moscow, Russia
| | - V Yu Mareev
- Medical Research and Educational Center of the M. V. Lomonosov Moscow State University, Moscow, Russia Faculty of Fundamental Medicine, Lomonosov Moscow State University, Moscow, Russia
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Khishfe B, El Majzoub I, Hamade H, Cheaito R. The use of evaluation tool for ultrasound skills development and education to assess the extent of point-of-care ultrasound adoption in lebanese emergency departments. J Emerg Trauma Shock 2020; 13:219-223. [PMID: 33304073 PMCID: PMC7717455 DOI: 10.4103/jets.jets_111_19] [Citation(s) in RCA: 1] [Impact Index Per Article: 0.2] [Reference Citation Analysis] [Abstract] [Track Full Text] [Figures] [Journal Information] [Subscribe] [Scholar Register] [Received: 08/21/2019] [Revised: 10/09/2019] [Accepted: 11/21/2019] [Indexed: 01/14/2023] Open
Abstract
Background: Previously acknowledged as “bedside ultrasound”, point-of-care ultrasound (PoCUS) is gaining great recognition nowadays and more physicians are using it to effectively diagnose and adequately manage patients. To measure previous, present and potential adoption of PoCUS and barriers to its use in Canada, Woo et al established the questionnaire “Evaluation Tool for Ultrasound skills Development and Education” (ETUDE) in 2007. This questionnaire sorted respondents into innovators, early adopters, majority, and nonadopters. Objectives: In this article, we attempt to evaluate the prevalence of PoCUS and the barriers to its adoption in Lebanese EDs, using the ETUDE. Materials and Methods: The same questionnaire was again utilized in Lebanon to assess the extent of PoCUS adoption. Our target population is emergency physicians (EPs). To achieve a high response rate, hospitals all over Lebanon were contacted to obtain contact details of their EPs. Questionnaires with daily reminders were sent on daily basis. Results: The response rate was higher in our population (78.8%) compared to Woo et al's (36.4%), as the questionnaire was sent by email to each physician with subsequent daily reminders to fill it. In fact, out of the total number of the surveyed (85 physicians), respondents were 67, of which 76.1% were males and of a median age of 43. Using ETUDE, results came as nonadopters (47.8%), majority (28.3%), early adopters (16.4%), and innovators (7.5%). Respondents advocated using PoCUS currently and in the future in five main circumstances: focused assessment with sonography in trauma (FAST) (current 22.9%/future 62.9%), first-trimester pregnancy (current 17.1%/future 68.6%), suspected abdominal aortic aneurysm (current 5.7%/future 51.4%), basic cardiac indications (current 8.6%/future 57.1%), and central venous catheterization (current 22.9%/future 85.7%). Conclusion: This study is the first to tackle the extent of use and the hurdles to PoCUS adoption in Lebanese emergency medicine practice, using ETUDE. The findings from this study can be used in Lebanon to strengthen PoCUS use in the future.
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