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Optimal Pressure Regulation of the Pneumatic Ventricular Assist Device With Bellows-Type Driver

Authors
Lee, Jung JooKim, Bum SooChoi, JaesoonChoi, HyukAhn, Chi BumNam, Kyoung WonJeong, Gi SeokLim, Choon HakSon, Ho SungSun, Kyung
Issue Date
8월-2009
Publisher
WILEY
Keywords
Pneumatic VAD; Bellows-type actuator; Pressure regulation
Citation
ARTIFICIAL ORGANS, v.33, no.8, pp.627 - 633
Indexed
SCIE
SCOPUS
Journal Title
ARTIFICIAL ORGANS
Volume
33
Number
8
Start Page
627
End Page
633
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/119575
DOI
10.1111/j.1525-1594.2009.00780.x
ISSN
0160-564X
Abstract
The bellows-type pneumatic ventricular assist device (VAD) generates pneumatic pressure with compression of bellows instead of using an air compressor. This VAD driver has a small volume that is suitable for portable devices. However, improper pneumatic pressure setup can not only cause a lack of adequate flow generation, but also cause durability problems. In this study, a pneumatic pressure regulation system for optimal operation of the bellows-type VAD has been developed. The optimal pneumatic pressure conditions according to various afterload conditions aiming for optimal flow rates were investigated, and an afterload estimation algorithm was developed. The developed regulation system, which consists of a pressure sensor and a two-way solenoid valve, estimates the current afterload and regulates the pneumatic pressure to the optimal point for the current afterload condition. Experiments were performed in a mock circulation system. The afterload estimation algorithm showed sufficient performance with the standard deviation of error, 8.8 mm Hg. The flow rate could be stably regulated with a developed system under various afterload conditions. The shortcoming of a bellows-type VAD could be handled with this simple pressure regulation system.
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