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A Numerical Method of Reduced Complexity for Simulating Vascular Hemodynamics Using Coupled 0D Lumped and 1D Wave Propagation Models

机译:使用耦合0D集成和1D波传播模拟模拟血管血流动力学的复杂性降低的数值方法

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A computational method of reduced complexity is developed for simulating vascular hemodynamics by combination of one-dimensional (1D) wave propagation models for the blood vessels with zero-dimensional (0D) lumped models for the microcirculation. Despite the reduced dimension, current algorithms used to solve the model equations and simulate pressure and flow are rather complex, thereby limiting acceptance in the medical field. This complexity mainly arises from the methods used to combine the 1D and the 0D model equations. In this paper a numerical method is presented that no longer requires additional coupling methods and enables random combinations of 1D and 0D models using pressure as only state variable. The method is applied to a vascular tree consisting of 60 major arteries in the body and the head. Simulated results are realistic. The numerical method is stable and shows good convergence.
机译:开发了一种减少复杂性的计算方法,用于通过为微循环的零维(0d)集成模型的血管组合模拟血管血流动力学来模拟血管血流动力学。尽管尺寸减小,但用于解决模型方程的当前算法和模拟压力和流动相当复杂,从而限制了医学领域的接受。这种复杂性主要由用于组合1D和0D模型方程的方法。在本文中,提出了一种数值方法,其中不再需要额外的耦合方法,并使1D和0D模型的随机组合使用压力仅作为态变量。该方法应用于血管树,其体内和头部中的60个主要动脉组成。模拟结果是现实的。数值方法是稳定的并且显示出良好的收敛性。

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