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与心肌生理特性相关的左心室源参数。

Source parameters of the left ventricle related to the physiological characteristics of the cardiac muscle.

作者信息

Beyar R, Sideman S

出版信息

Biophys J. 1986 Jun;49(6):1185-94. doi: 10.1016/S0006-3495(86)83746-8.

Abstract

An attempt is made here to correlate the physiological muscle parameters with the dynamic source parameters of the left ventricle (LV), i.e. the source (isovolumic) pressure Po and the source (internal) resistance, Rs. The internal resistance is described here as a time-dependent parameter, corresponding to the pressure drop (from the theoretical instantaneous isovolumic pressure) associated with the instantaneous ejection flow rate. The source pressure, which relates to the muscle stress and the ventricular volume, is represented by the time-varying elastance concept and a spheroidal model relating the average wall stress to LV pressure. Linear and exponential force-velocity relationships (FVR), expressed in stress-strain rate terms, are compared. Two possible characteristics of the dynamic FVR in the partially active state, based on either a parallel or a fanlike shift of the stress-strain rate curve, are studied by utilizing simple analytical models as well as a computer simulation model. Comparing the calculated results with experimental data indicates that the dynamic FVR shift occurs in a fanlike pattern in which the maximum strain rate remains constant throughout the cycle. This pattern of the FVR shift is consistent with experimental data that show that the internal resistance is linearly related to the instantaneous isovolumic pressure. The analysis also indicates that the difference between the hyperbolic and linear FVR is rather minor, and in spite of some effects on the ejection pattern and the value of Rs, the functional shape has no effect on the global LV characteristics, such as the ejection fraction and stroke volume.

摘要

本文旨在将生理肌肉参数与左心室(LV)的动态源参数相关联,即源(等容)压力Po和源(内部)阻力Rs。此处将内部阻力描述为一个随时间变化的参数,它对应于与瞬时射血流量相关的压力降(相对于理论瞬时等容压力)。与肌肉应力和心室容积相关的源压力,由时变弹性概念以及将平均壁应力与左心室压力相关联的球体模型来表示。比较了以应力 - 应变率表示的线性和指数力 - 速度关系(FVR)。利用简单的分析模型以及计算机模拟模型,研究了基于应力 - 应变率曲线的平行或扇形移动的部分激活状态下动态FVR的两种可能特征。将计算结果与实验数据进行比较表明,动态FVR移动呈扇形模式,其中最大应变率在整个周期内保持恒定。这种FVR移动模式与实验数据一致,实验数据表明内部阻力与瞬时等容压力呈线性相关。分析还表明,双曲线和线性FVR之间的差异相当小,并且尽管对射血模式和Rs值有一些影响,但功能形状对左心室整体特征(如射血分数和每搏输出量)没有影响。

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本文引用的文献

2
INSTANTANEOUS FORCE-VELOCITY-LENGTH DETERMINANTS IN THE CONTRACTION OF HEART MUSCLE.
Circ Res. 1965 May;16:441-51. doi: 10.1161/01.res.16.5.441.
4
Indices of cardiac status.心脏状态指标。
IEEE Trans Biomed Eng. 1981 Aug;28(8):553-67. doi: 10.1109/tbme.1981.324828.
9
A quantitative analysis of left ventricular myocardial function in the intact, sedated dog.
Circ Res. 1967 Jul;21(1):99-115. doi: 10.1161/01.res.21.1.99.

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