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左心室的机械效率作为前负荷、后负荷和收缩力的函数。

Mechanical efficiency of the left ventricle as a function of preload, afterload, and contractility.

作者信息

Suga H, Igarashi Y, Yamada O, Goto Y

出版信息

Heart Vessels. 1985 Feb;1(1):3-8. doi: 10.1007/BF02066480.

Abstract

We have recently shown that the mechanical efficiency of the contractile machinery of the canine left ventricle is constant at 30%-50%, independent of its loading, heart rate, and inotropic conditions. In contrast, the conventional mechanical efficiency of the ventricle is known to vary between 0 and 30%, depending on these conditions. In this study, we derived an equation for the conventional mechanical efficiency as a function of ventricular preload, afterload, and contractility, based on the constant mechanical efficiency of the contractile machinery. In deriving this equation, we fully utilized our new concept of the total mechanical energy of the left ventricle, i.e., systolic pressure-volume area, and our recent findings of the linear relationship between left ventricular oxygen consumption and the systolic pressure-volume area as well as the dependence of this relation on the ventricular inotropic state. As a result, the conventional mechanical efficiency of the left ventricle was found to change between 0 and 25% as an explicit function of these cardiodynamic and inotropic conditions. Using this function, we obtained combinations of loading and inotropic conditions to maximize the conventional mechanical efficiency of the left ventricle.

摘要

我们最近发现,犬左心室收缩机制的机械效率恒定在30%-50%,与其负荷、心率和变力状态无关。相比之下,已知心室的传统机械效率在0%至30%之间变化,这取决于这些条件。在本研究中,基于收缩机制的恒定机械效率,我们推导了一个将传统机械效率表示为心室前负荷、后负荷和收缩性函数的方程。在推导该方程时,我们充分利用了左心室总机械能的新概念,即收缩压-容积面积,以及我们最近发现的左心室氧耗与收缩压-容积面积之间的线性关系,以及这种关系对心室变力状态的依赖性。结果发现,左心室的传统机械效率在0%至25%之间变化,是这些心脏动力学和变力状态的显式函数。利用这个函数,我们获得了负荷和变力状态的组合,以使左心室的传统机械效率最大化。

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