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Uncertainty quantification of inflow boundary condition and proximal arterial stiffness-coupled effect on pulse wave propagation in a vascular network

机译:流入边界条件的不确定性量化和近端动脉刚度耦合对脉搏波在血管网络中传播的影响

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摘要

This work aims at quantifying the effect of inherent uncertainties from cardiac output on the sensitivity of a human compliant arterial network response based on stochastic simulations of a reduced-order pulse wave propagation model. A simple pulsatile output form is used to reproduce the most relevant cardiac features with a minimum number of parameters associated with left ventricle dynamics. Another source of significant uncertainty is the spatial heterogeneity of the aortic compliance, which plays a key role in the propagation and damping of pulse waves generated at each cardiac cycle. A continuous representation of the aortic stiffness in the form of a generic random field of prescribed spatial correlation is then considered. Making use of a stochastic sparse pseudospectral method, we investigate the sensitivity of the pulse pressure and waves reflection magnitude over the arterial tree with respect to the different model uncertainties. Results indicate that uncertainties related to the shape and magnitude of the prescribed inlet flow in the proximal aorta can lead to potent variation of both the mean value and standard deviation of blood flow velocity and pressure dynamics due to the interaction of different wave propagation and reflection features. Lack of accurate knowledge in the stiffness properties of the aorta, resulting in uncertainty in the pulse wave velocity in that region, strongly modifies the statistical response, with a global increase in the variability of the quantities of interest and a spatial redistribution of the regions of higher sensitivity. These results will provide some guidance in clinical data acquisition and future coupling of arterial pulse wave propagation reduced-order model with more complex beating heart models.
机译:这项工作旨在量化基于心输出量的固有不确定性对基于顺应性脉搏波传播模型的随机模拟的人类顺应性动脉网络响应的敏感性的影响。一个简单的搏动输出形式被用于以最少数量的与左心室动力学相关的参数来再现最相关的心脏特征。另一个明显不确定性的来源是主动脉顺应性的空间异质性,这在每个心动周期产生的脉搏波的传播和衰减中起着关键作用。然后考虑以规定的空间相关性的通用随机场的形式连续表示主动脉僵硬。利用随机稀疏伪谱方法,针对不同的模型不确定性,研究了动脉树上脉压和波反射幅度的敏感性。结果表明,由于不同的波传播和反射特征之间的相互作用,与近端主动脉中规定的入口流量的形状和大小有关的不确定性可能导致血流速度和压力动力学的平均值和标准偏差的有效变化。 。缺乏对主动脉僵硬特性的准确了解,导致该区域脉搏波速度的不确定性,极大地改变了统计响应,同时引起了相关量变化的总体增加以及受检区域区域的空间重新分布。更高的灵敏度。这些结果将为临床数据采集以及动脉脉搏波传播减少阶模型与更复杂的跳动心脏模型的未来耦合提供一些指导。

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