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Direct Cardiac Compression Devices to Augment Heart Biomechanics and Function
Author(s) -
Jean Bonnemain,
Pedro J. del Nido,
Ellen T. Roche
Publication year - 2022
Publication title -
annual review of biomedical engineering
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 4.142
H-Index - 133
eISSN - 1545-4274
pISSN - 1523-9829
DOI - 10.1146/annurev-bioeng-110220-025309
Subject(s) - medicine , heart failure , artificial heart , heart transplantation , cardiology , transplantation , destination therapy , biomedical engineering
The treatment of end-stage heart failure has evolved substantially with advances in medical treatment, cardiac transplantation, and mechanical circulatory support (MCS) devices such as left ventricular assist devices and total artificial hearts. However, current MCS devices are inherently blood contacting and can lead to potential complications including pump thrombosis, hemorrhage, stroke, and hemolysis. Attempts to address these issues and avoid blood contact led to the concept of compressing the failing heart from the epicardial surface and the design of direct cardiac compression (DCC) devices. We review the fundamental concepts related to DCC, present the foundational devices and recent devices in the research and commercialization stages, and discuss the milestones required for clinical translation and adoption of this technology.

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