Department of Biomechanics, Institute of Mechanics, M.V. Lomonosov Moscow State University, 1 Mitchurinsky Prosp., Moscow, 119192, Russian Federation.
Peoples' Friendship University of Russia (RUDN University), 6 Miklukho-Maklaya St, Moscow, 117198, Russian Federation.
Int J Numer Method Biomed Eng. 2019 Jul;35(7):e3216. doi: 10.1002/cnm.3216. Epub 2019 Jun 6.
A new mathematical model of the cardiovascular system is proposed. The left ventricle is described by an axisymmetric multiscale model where myocardium is treated as an incompressible transversely isotropic medium with a realistic distribution of fibre orientation. Active tension and its regulation by Ca ions are described by our recent kinetic model. A lumped parameter model is used for the simulation of blood circulation, in which the left and right atria and the right ventricle are described by a system of ordinary differential equations for active pressure-volume relationships. The stress and strain of the left ventricle myocardium were calculated by the finite element method implemented by the authors. The changes in the haemodynamics upon changes in preload of a healthy heart, upon physical exercise, and in case of atrioventricular block with different types of arrhythmias were simulated. To simulate the effect of stenosis or regurgitation of the aortic or mitral valves, the hydraulic and inertial flow resistances of the heart valves were set as functions of their orifice areas. The model reproduced a number of phenomena observed in clinical practice, including the classification of the severity of valve disease.
提出了一种新的心血管系统数学模型。左心室采用轴对称多尺度模型描述,其中心肌被视为具有纤维方向实际分布的不可压缩横观各向同性介质。通过我们最近的动力学模型来描述主动张力及其对钙离子的调节。使用集中参数模型来模拟血液循环,其中左心房、右心房和右心室通过主动压力-容积关系的系统来描述。左心室心肌的应力和应变通过作者实现的有限元方法进行计算。模拟了健康心脏的前负荷变化、体育锻炼以及房室传导阻滞伴不同类型心律失常时血液动力学的变化。为了模拟主动脉瓣或二尖瓣狭窄或反流的影响,将心脏瓣膜的水力和惯性流动阻力设置为其瓣口面积的函数。该模型再现了一些在临床实践中观察到的现象,包括瓣膜疾病严重程度的分类。