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首页> 外文期刊>American Journal of Physiology >Apparent arterial compliance.
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Apparent arterial compliance.

机译:明显的动脉顺应性。

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Recently, there has been renewed interest in estimating total arterial compliance. Because it cannot be measured directly, a lumped model is usually applied to derive compliance from aortic pressure and flow. The archetypical model, the classical two-element windkessel, assumes 1) system linearity and 2) infinite pulse wave velocity. To generalize this model, investigators have added more elements and have incorporated nonlinearities. A different approach is taken here. It is assumed that the arterial system 1) is linear and 2) has finite pulse wave velocity. In doing so, the windkessel is generalized by describing compliance as a complex function of frequency that relates input pressure to volume stored. By applying transmission theory, this relationship is shown to be a function of heart rate, peripheral resistance, and pulse wave reflection. Because this pressure-volume relationship is generally not equal to total arterial compliance, it is termed "apparent compliance." This new concept forms the natural counterpart to the established concept of apparent pulse wave velocity.
机译:最近,人们对估计总动脉顺应性有了新的兴趣。由于无法直接测量,因此通常使用集总模型从主动脉压力和流量中得出顺应性。原型模型,经典的两元素风船,假设1)系统线性和2)无限脉搏波速度。为了推广此模型,研究人员添加了更多元素,并纳入了非线性。这里采用了不同的方法。假设动脉系统1)是线性的,而2)具有有限的脉搏波速度。在此过程中,通过将顺应性描述为频率的复杂函数来概括风向标,该顺应性将输入压力与存储的体积相关联。通过应用传输理论,该关系显示为心率,外周阻力和脉搏波反射的函数。由于这种压力-体积关系通常不等于总动脉顺应性,因此被称为“表观顺应性”。这个新概念与已建立的视在脉搏波速度概念自然地相对。

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