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粘度对心肌机械活动的影响:一个数学模型

Influence of viscosity on myocardium mechanical activity: a mathematical model.

作者信息

Katsnelson Leonid B, Nikitina Larissa V, Chemla Denis, Solovyova Olga, Coirault Catherine, Lecarpentier Yves, Markhasin Vladimir S

机构信息

Institute of Immunology and Physiology, Ural Division of the Russian Academy of Sciences, Bldg. 91, Pervomayskaya str., 620219, Ekaterinburg.

出版信息

J Theor Biol. 2004 Oct 7;230(3):385-405. doi: 10.1016/j.jtbi.2004.05.007.

Abstract

We have previously proposed and validated a mathematical model of myocardium contraction-relaxation cycle based on current knowledge of regulatory role of Ca2+ and cross-bridge kinetics in cardiac cell. That model did not include viscous elements. Here we propose a modification of the model, in which two viscous elements are added, one in parallel to the contractile element, and one more in parallel to the series elastic element. The modified model allowed us to simulate and explain some subtle experimental data on relaxation velocity in isotonic twitches and on a mismatch between the time course of sarcomere shortening/lengthening and the time course of active force generation in isometric twitches. Model results were compared with experimental data obtained from 28 rat LV papillary muscles contracting and relaxing against various loads. Additional model analysis suggested contribution of viscosity to main inotropic and lusitropic characteristics of myocardium performance.

摘要

我们之前基于对钙离子调节作用和心肌细胞中横桥动力学的当前认识,提出并验证了一个心肌收缩 - 舒张周期的数学模型。该模型未包含粘性元件。在此,我们提出对该模型进行修正,其中添加了两个粘性元件,一个与收缩元件并联,另一个与串联弹性元件并联。修正后的模型使我们能够模拟并解释等张收缩中舒张速度以及等长收缩中肌节缩短/延长的时间进程与主动力产生的时间进程之间不匹配的一些细微实验数据。将模型结果与从28只大鼠左心室乳头肌在不同负荷下收缩和舒张所获得的实验数据进行了比较。额外的模型分析表明粘性对心肌性能的主要变力性和变时性特征有贡献。

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