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心血管模拟器改进:压力-容积环评估。

Cardiovascular simulator improvement: pressure versus volume loop assessment.

机构信息

Department of Bioengineering, Institute Dante Pazzanese of Cardiology, São Paulo, Brazil.

出版信息

Artif Organs. 2011 May;35(5):454-8. doi: 10.1111/j.1525-1594.2011.01266.x.

Abstract

This article presents improvement on a physical cardiovascular simulator (PCS) system. Intraventricular pressure versus intraventricular volume (PxV) loop was obtained to evaluate performance of a pulsatile chamber mimicking the human left ventricle. PxV loop shows heart contractility and is normally used to evaluate heart performance. In many heart diseases, the stroke volume decreases because of low heart contractility. This pathological situation must be simulated by the PCS in order to evaluate the assistance provided by a ventricular assist device (VAD). The PCS system is automatically controlled by a computer and is an auxiliary tool for VAD control strategies development. This PCS system is according to a Windkessel model where lumped parameters are used for cardiovascular system analysis. Peripheral resistance, arteries compliance, and fluid inertance are simulated. The simulator has an actuator with a roller screw and brushless direct current motor, and the stroke volume is regulated by the actuator displacement. Internal pressure and volume measurements are monitored to obtain the PxV loop. Left chamber internal pressure is directly obtained by pressure transducer; however, internal volume has been obtained indirectly by using a linear variable differential transformer, which senses the diaphragm displacement. Correlations between the internal volume and diaphragm position are made. LabVIEW integrates these signals and shows the pressure versus internal volume loop. The results that have been obtained from the PCS system show PxV loops at different ventricle elastances, making possible the simulation of pathological situations. A preliminary test with a pulsatile VAD attached to PCS system was made.

摘要

本文提出了一种改进的物理心血管模拟器(PCS)系统。通过获得心室腔内压力与心室腔内容积(PxV)的关系曲线,评估了一个脉动腔的性能,该脉动腔模拟了人类左心室。PxV 关系曲线反映了心脏的收缩性,通常用于评估心脏功能。在许多心脏病中,由于心脏收缩性降低,心搏量减少。为了评估心室辅助装置(VAD)提供的辅助作用,必须通过 PCS 模拟这种病理情况。PCS 系统由计算机自动控制,是开发 VAD 控制策略的辅助工具。该 PCS 系统基于风箱模型,其中使用集中参数对心血管系统进行分析。模拟了外周阻力、动脉顺应性和流体惯性。模拟器的执行器采用滚珠丝杠和无刷直流电机,通过执行器的位移来调节心搏量。通过监测内部压力和体积测量来获得 PxV 关系曲线。左心室内部压力通过压力传感器直接获得;然而,内部容积是通过使用线性可变差动变压器(LVDT)间接获得的,LVDT 可以感应隔膜的位移。建立了内部容积与隔膜位置之间的关系。LabVIEW 集成了这些信号,并显示了压力与内部容积的关系曲线。从 PCS 系统获得的结果显示了不同心室弹性的 PxV 关系曲线,从而可以模拟病理情况。对与 PCS 系统连接的脉动 VAD 进行了初步测试。

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