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心室与负荷之间的阻抗匹配。

Impedance matching between ventricle and load.

作者信息

Piene H

出版信息

Ann Biomed Eng. 1984;12(2):191-207. doi: 10.1007/BF02584230.

Abstract

Impedance matching in the cardiovascular system is discussed in light of two models of ventricle and load: a Thevenin equivalent consisting of a hydromotive pressure source and an internal, source resistance and compliance in parallel; and a time-varying compliance filled from a constant pressure source and ejecting into a load of three components, a central resistor, a compliance, and a peripheral resistance. According to the Thevenin analog, the energy source and the load are matched when the load resistance is T/t times the internal source resistance (T is total cycle length, t is systolic time interval). Both from this model and from the variable compliance model it appears that optimum matching between source and load depends on the compliance of the Windkessel, as low compliance shifts the matching load resistance to a low value. Animal experiments (isolated cat hearts) indicated that both left and right ventricles at normal loads work close to their maxima of output hydraulic power, and, according to experiments in the right ventricle, maximum power output is related to load resistance and compliance as predicted by the above models. From an experimentally determined relationship among instantaneous ventricular pressure and volume (right ventricle of isolated cat hearts), an optimum load impedance was calculated on the basis of the assumption that the ratio between stroke work and static, potential energy developed in the ventricular cavity is maximum. The optimum load impedance found by this procedure closely resembles the normal input impedance of the cat lung vessel bed.

摘要

本文根据心室和负荷的两种模型讨论了心血管系统中的阻抗匹配

一种是戴维南等效模型,由一个液压动力源、一个内部源电阻和与之并联的顺应性组成;另一种是时变顺应性模型,由一个恒压源充能,并向一个由三个元件组成的负荷射血,这三个元件分别是一个中心电阻、一个顺应性和一个外周电阻。根据戴维南模拟,当负荷电阻为内部源电阻的T/t倍时(T为心动周期总时长,t为收缩期时间间隔),能量源与负荷匹配。从该模型和可变顺应性模型都可以看出,源与负荷之间的最佳匹配取决于风箱的顺应性,因为低顺应性会使匹配的负荷电阻值降低。动物实验(离体猫心)表明,在正常负荷下,左心室和右心室的工作状态都接近其输出液压功率的最大值,并且根据右心室的实验,最大功率输出与负荷电阻和顺应性的关系正如上述模型所预测的那样。根据实验确定的瞬时心室压力与容积之间的关系(离体猫心的右心室),在假定每搏功与心室腔中产生的静态势能之比最大的基础上,计算出了最佳负荷阻抗。通过该方法得出的最佳负荷阻抗与猫肺血管床的正常输入阻抗非常相似。

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