Purpose: Impella 5.0 is a short-term left ventricle assist device (LVAD), inserted retrograde into the left ventricle across the aortic valve through a surgical peripheral access. Impella has been utilized for various indications but in the setting of bridge-to-bridge application there are limited reports.
Methods: We performed a retrospective observational analysis of Impella utilization at our institution as bridge to long-term LVADs. The primary end-point was survival during Impella support.
Results: Between December 2010 and February 2012, we implanted 20 Impella in patients with cardiogenic shock and, among these, 5 were implanted as bridge to long-term LVADs. In this latter group, mean age at the time of implantation was 44 ± 15.6 (range 27-68) years and there was a prevalence of males (80%). Etiology of cardiogenic shock was: decompensated anthracycline-induced cardiomyopathy (n = 1), myocardial infarction (n = 4). There was no major bleeding requiring surgical revision or infectious complications at the right axillary access. One patient required Impella replacement due to a pump stop. After a mean period of 14.2 ± 9.0 (range 6-27) days of Impella support, patients were switched to a long-term LVAD (Jarvik 2000, n = 2; HeartMate II, n = 3). One patient died 70 days after implantation of the long-term LVAD due to multi-organ failure, while the remaining patients are still alive after a mean period of follow-up of 108.6 ± 66.2 (range 19-191) days.
Conclusions: Our experience shows that an Impella 5.0 implanted through the right axillary artery approach is a valid option as bridge to long-term LVADs.
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http://dx.doi.org/10.5301/ijao.5000237 | DOI Listing |
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Department of Anesthesiology, Hind Institute of Medical Sciences, Safedabad, Lucknow, U.P., 225001, India.
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School of Computer Science and Engineering, Vellore Institute of Technology, Vandalur - Kelambakkam Road, Chennai, 600 127 Tamil Nadu, India.
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Department of Cardiovascular, YangPu Hospital, School of Medicine, Tongji University, Shanghai, China.
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EMBO Rep
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Department of Human Molecular Genetics and Biochemistry, Faculty of Medicine, Tel Aviv University, Tel Aviv, Israel.
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Diabetes presents a significant challenge to healthcare due to the short- and long-term complications associated with poor blood sugar control. Computer simulation platforms have emerged as promising tools for advancing diabetes therapy by simulating patient responses to treatments in a virtual environment. The University of Virginia Virtual Lab (UVLab) is a new simulation platform engineered to mimic the metabolic behavior of individuals with type 2 diabetes (T2D) using a mathematical model of glucose homeostasis in T2D and a large population of 6062 virtual subjects.
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