Stergiopulos N, Young D F, Rogge T R
Department of Aerospace Engineering, Iowa State University, Ames 50011.
J Biomech. 1992 Dec;25(12):1477-88. doi: 10.1016/0021-9290(92)90060-e.
A computer model for simulating pressure and flow propagation in the human arterial system is developed. The model is based on the one-dimensional flow equations and includes nonlinearities arising from geometry and material properties. Fifty-five arterial segments, representing the various major arteries, are combined to form the model of the arterial system. Particular attention is paid to the development of peripheral pressure and flow pulses under normal flow conditions and under conditions of arterial and aortic stenoses. Results show that the presence of severe arterial stenoses significantly affects the nature of the distal pressure and flow pulses. Aortic stenoses also have a profound effect on central and peripheral pressure pulse formation. Comparison with the published experimental data suggests that the model is capable of simulating arterial flow under normal flow conditions as well as conditions of stenotic obstructions in a satisfactory manner.
开发了一种用于模拟人体动脉系统中压力和血流传播的计算机模型。该模型基于一维流动方程,并包含由几何形状和材料特性引起的非线性。代表各种主要动脉的55个动脉段被组合起来形成动脉系统模型。特别关注正常血流条件下以及动脉和主动脉狭窄条件下外周压力和血流脉冲的形成。结果表明,严重的动脉狭窄的存在会显著影响远端压力和血流脉冲的特性。主动脉狭窄对中心和外周压力脉冲的形成也有深远影响。与已发表的实验数据比较表明,该模型能够以令人满意的方式模拟正常血流条件下以及狭窄阻塞条件下的动脉血流。