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Development of an Algorithm to Regulate Pump Output for a Closed Air-Loop Type Pneumatic Biventricular Assist Device

Authors
Nam, KyoungWonLee, Jung JooHwang, Chang MoChoi, JaesoonChoi, HyukChoi, SeongWookSun, Kyung
Issue Date
Dec-2009
Publisher
WILEY
Keywords
Pneumatic ventricular assist device; Afterload pressure estimation; Pump output estimation; Pump output regulation
Citation
ARTIFICIAL ORGANS, v.33, no.12, pp.1063 - 1068
Indexed
SCIE
SCOPUS
Journal Title
ARTIFICIAL ORGANS
Volume
33
Number
12
Start Page
1063
End Page
1068
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/118764
DOI
10.1111/j.1525-1594.2009.00809.x
ISSN
0160-564X
Abstract
The closed air space-type of extracorporeal pneumatic ventricular assist device (VAD) developed by the Korea Artificial Organ Center utilizes a bellows-transforming mechanism to generate the air pressure required to pump blood. This operating mechanism can reduce the size and weight of the driving unit; however, the output of the blood pump can be affected by the pressure loading conditions of the blood sac. Therefore, to guarantee a proper pump output level, regardless of the pressure loading conditions that vary over time, automatic pump output regulation of the blood pump is required. We describe herein a pump output regulation algorithm that was developed to maintain pump output around a reference level against various afterload pressures, and verified the pump performance in vitro. Based on actual operating conditions in animal experiments, the pumping rate was limited to 40-84 beats per minute, and the afterload pressure was limited to 80-150 mm Hg. The tested reference pump output was 4.0 L/min. During experiments, the pump output was successfully and automatically regulated within the preset area regardless of the varying afterload conditions. The results of this preliminary experiment can be used as the basis for an automatic control algorithm that can enhance the stability and reliability of the applied VAD.
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