模块化设计
计算机科学
压力反射
循环系统
模拟
电阻器
控制工程
控制理论(社会学)
工程类
心率
医学
血压
人工智能
控制(管理)
操作系统
心脏病学
电压
电气工程
放射科
作者
Elena Cuenca‐Navalon,Thomas Finocchiaro,Marco Laumen,Andreas Fritschi,Thomas Schmitz‐Rode,Ulrich Steinseifer
摘要
A hybrid mock circulatory loop (MCL) was developed for total artificial heart (TAH) performance evaluation. The hybrid MCL consists of hydraulic hardware components and a software computer model.The hydraulic components are divided into the systemic and pulmonary circulation, each of which includes electrically controlled compliances, resistors, and a venous volume which can be adjusted for a wide range of physiological and pathological conditions. The software model simulates the baroreflex autoregulatory response by automatically adjusting the hydraulic parameters according to changes of condition in the MCL.The experimental results demonstrated a good representation of the human cardiovascular system and the capability of real-time variation of physiological and pathological conditions. The functionality of the baroreflex autoregulatory mechanism was evaluated by simulation of a postural change.The hybrid MCL that we developed allows variable and continuous in vitro evaluation of mechanical circulatory support devices in TAH configuration and particularly their control algorithms in response to various cardiovascular conditions. The system has been built in a modular configuration to allow testing of different types of devices and thus provides a valuable test platform prior to animal experiments.
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