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Pressure wave propagation in full-body arterial models: A gateway to exploring aging and hypertension

机译:全身动脉模型中的压力波传播:探索老化和高血压的门户

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It is now widely recognized that changes in arterial wall properties have a significant impact on hemodynamic indices such as pressure pulse amplification and pulse wave velocity. It is also becoming increasingly evident that changes in wall mechanics may progress both spatially and temporally (e.g., in age-related arterial stiffening and hypertension). Modeling studies can help delineate how local changes in stiffness affect global hemodynamics. Previously, several modeling studies have investigated blood and pressure in full-body scale arterial trees using one-dimensional formulations. In this paper, we work towards the goal of deepening our understanding of arterial pulse propagation phenomena while incorporating detailed information on localized hemodynamics. To this end, we present the first multi-scale simulation of unsteady blood flow and pressure within a three-dimensional deformable full-body arterial network. This simulation framework builds upon previous advances in fluid-structure interaction, multi-scale outflow boundary conditions, and perivascular tissue support modeling. We consider application examples featuring realistic distributions of spatially and temporally varying mechanical properties. Simulations successfully demonstrate realistic pressure and flow waveforms, regional blood flow distribution, pressure pulse amplification and pulse wave velocity.
机译:现在普遍认识到,动脉壁特性的变化对诸如压力脉冲放大和脉搏波速度的血流动力学指数具有显着影响。越来越明显,墙壁力学的变化可能在空间和时间(例如,在与年龄相关的动脉加固和高血压中)进行。建模研究可以帮助描绘刚度的局部变化如何影响全球血流动力学。此前,若干建模研究使用一维制剂研究了全身尺度动脉树中的血压和压力。在本文中,我们努力深化我们对动脉脉冲传播现象的理解,同时纳入局部血流动力学的详细信息。为此,我们在三维可变形全身动脉网络中提出了不稳定血流和压力的第一种多尺度模拟。该仿真框架在先前的流体结构相互作用,多尺度流出边界条件和血管内组织支持建模中建立了先前的进步。我们考虑具有在空间和时间变化的机械性能的现实分布的应用示例。仿真成功展示了现实的压力和流波形,区域血流分布,压力脉冲放大和脉搏波速度。

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