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首页> 外文期刊>IEEE Transactions on Biomedical Engineering >Development of a microcontroller-based automatic control system for the electrohydraulic total artificial heart
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Development of a microcontroller-based automatic control system for the electrohydraulic total artificial heart

机译:基于微控制器的电动液压全人工心脏自动控制系统的开发

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摘要

An automatic physiological control system for the actively filled, alternately pumped ventricles of the volumetrically coupled, electrohydraulic total artificial heart (EHTAH) was developed for long-term use. The automatic control system must ensure that the device: (1) maintains a physiological response of cardiac output, (2) compensates for any nonphysiological condition, and (3) is stable, reliable, and operates at a high power efficiency. The developed automatic control system met these requirements both in vitro, in week-long continuous mock circulation tests, and in vivo, in acute open-chested animals (calves). Satisfactory results were also obtained in a series of chronic animal experiments, including 21 days of continuous operation of the fully automatic control mode, and 138 days of operation in a manual mode, in a 159-day calf implant.
机译:为长期使用,开发了一种自动生理控制系统,用于容积耦合的电液全人工心脏(EHTAH)的主动填充,交替泵送的心室。自动控制系统必须确保该设备:(1)维持心输出量的生理反应;(2)补偿任何非生理状况;(3)稳定,可靠并以高功率效率工作。所开发的自动控制系统在体外,为期一周的连续模拟循环测试中以及在体内,对于急性open胸动物(犊牛)均满足这些要求。在一系列慢性动物实验中也获得了令人满意的结果,包括在159天的小腿植入物中,连续21天的全自动控制模式连续操作和138天的手动模式操作。

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