Veress A I, Raymond G M, Gullberg G T, Bassingthwaighte J B
J Biomech Eng. 2013 May;135(5):54502. doi: 10.1115/1.4023697.
A series of models were developed in which a circulatory system model was coupled to an existing series of finite element (FE) models of the left ventricle (LV). The circulatory models were used to provide realistic boundary conditions for the LV models. This was developed for the JSim analysis package and was composed of a systemic arterial, capillary, and venous system in a closed loop with a varying elastance LV and left atria to provide the driving pressures and flows matching those of the FE model. Three coupled models were developed, a normal LV under normotensive aortic loading (116/80 mm Hg), a mild hypertension (137/89 mm Hg) model, and a moderate hypertension model (165/100 mm Hg). The initial step in the modeling analysis was that the circulation was optimized to the end-diastolic pressure and volume values of the LV model. The cardiac FE models were then optimized to the systolic pressure/volume characteristics of the steady-state JSim circulatory model solution. Comparison of the stress predictions for the three models indicated that the mild hypertensive case produced a 21% increase in the average fiber stress levels, and the moderate hypertension case had a 36% increase in average stress. The circulatory work increased by 18% and 43% over that of the control for the mild and moderate hypertensive cases, respectively.
开发了一系列模型,其中将循环系统模型与现有的一系列左心室(LV)有限元(FE)模型相耦合。循环模型用于为左心室模型提供实际的边界条件。这是为JSim分析软件包开发的,由一个体循环动脉、毛细血管和静脉系统组成一个闭环,具有可变弹性的左心室和左心房,以提供与有限元模型相匹配的驱动压力和流量。开发了三个耦合模型,一个是正常血压主动脉负荷(116/80毫米汞柱)下的正常左心室模型,一个轻度高血压(137/89毫米汞柱)模型,以及一个中度高血压模型(165/100毫米汞柱)。建模分析的第一步是将循环优化到左心室模型的舒张末期压力和容积值。然后将心脏有限元模型优化到稳态JSim循环模型解的收缩压/容积特性。对这三个模型的应力预测比较表明,轻度高血压病例的平均纤维应力水平增加了21%,中度高血压病例的平均应力增加了36%。轻度和中度高血压病例的循环功分别比对照增加了18%和43%。