Infection and Thrombosis in Total Artificial Heart Technology: Past and Future Challenges–A Historical Review
- 1 November 2000
- journal article
- review article
- Published by Wolters Kluwer Health in Asaio Journal
- Vol. 46 (6) , S22-S27
- https://doi.org/10.1097/00002480-200011000-00033
Abstract
On the basis of animal testing and a single clinical implant during the 1960s, development of the total artificial heart (TAH) began in earnest in the 1970s. The goal was to produce a pump that could treat biventricular heart failure or any other condition that necessitated removal of the patient’s native heart. The early TAHs were pneumatically powered, with externalized drivelines. After undergoing in vivo evaluation in hundreds of sheep and calves at several centers (mainly the Utah Heart Institute), these pumps were implanted in humans, initially for permanent cardiac replacement and later for bridging to transplantation. In both the in vivo experimental setting and the clinical setting, infection and thrombosis were problematic, infection being encountered much more frequently than thrombosis in clinical cases. To minimize these problems, four research groups, funded by NIH, began in 1988 to develop permanent, transcutaneously powered, totally implantable, electromechanical TAHs. For the first time, TAH technology was able to minimize infection and thrombosis, as confirmed by current in vivo studies. These new TAHs will undergo preclinical, pre-IDE studies this year and clinical trials in the near future. This article briefly reviews the evolution of TAH technology, with an emphasis on the prevention and management of infection and thrombosis.Keywords
This publication has 21 references indexed in Scilit:
- Thrombus with Infection in Total Artificial Heart AnimalsArtificial Organs, 2008
- Early Years of Artificial Organs at the Cleveland Clinic Part IIAsaio Journal, 1998
- Progress in the Development of the ABIOMED Total Artificial HeartAsaio Journal, 1995
- A Comprehensive Hematologic Study in Calves With Total Artificial HeartsAsaio Journal, 1995
- Chronic In Vivo Evaluation of an Electrohydraulic Total Artificial HeartAsaio Journal, 1994
- The Artificial Heart: History and Current StatusJournal of Biomechanical Engineering, 1993
- Continuing Development of the Cleveland Clinic-Nimbus Total Artificial HeartAsaio Journal, 1993
- Noninvasive Control of Cardiac Output for Alternately Ejecting Dual‐Pusherplate PumpsArtificial Organs, 1992
- ABSTRACTSArtificial Organs, 1987
- The Political History of the Artificial HeartNew England Journal of Medicine, 1984