Vignon-Clementel I E, Figueroa C A, Jansen K E, Taylor C A
INRIA Paris-Rocquencourt, Le Chesnay, France.
Comput Methods Biomech Biomed Engin. 2010 Oct;13(5):625-40. doi: 10.1080/10255840903413565.
The simulation of blood flow and pressure in arteries requires outflow boundary conditions that incorporate models of downstream domains. We previously described a coupled multidomain method to couple analytical models of the downstream domains with 3D numerical models of the upstream vasculature. This prior work either included pure resistance boundary conditions or impedance boundary conditions based on assumed periodicity of the solution. However, flow and pressure in arteries are not necessarily periodic in time due to heart rate variability, respiration, complex transitional flow or acute physiological changes. We present herein an approach for prescribing lumped parameter outflow boundary conditions that accommodate transient phenomena. We have applied this method to compute haemodynamic quantities in different physiologically relevant cardiovascular models, including patient-specific examples, to study non-periodic flow phenomena often observed in normal subjects and in patients with acquired or congenital cardiovascular disease. The relevance of using boundary conditions that accommodate transient phenomena compared with boundary conditions that assume periodicity of the solution is discussed.
动脉中血流和压力的模拟需要包含下游区域模型的流出边界条件。我们之前描述了一种耦合多域方法,将下游区域的分析模型与上游脉管系统的三维数值模型相耦合。这项前期工作要么包含纯阻力边界条件,要么基于解的假定周期性包含阻抗边界条件。然而,由于心率变异性、呼吸、复杂的过渡流或急性生理变化,动脉中的血流和压力在时间上不一定是周期性的。我们在此提出一种规定集总参数流出边界条件的方法,该方法能够适应瞬态现象。我们已将此方法应用于计算不同生理相关心血管模型中的血流动力学量,包括特定患者的实例,以研究在正常受试者以及患有后天性或先天性心血管疾病的患者中经常观察到的非周期性流动现象。讨论了使用适应瞬态现象的边界条件与假定解具有周期性的边界条件相比的相关性。