论文标题

一种矢量拟合方法,用于自动估计1D循环模型的总边界条件

A Vector Fitting approach for the automated estimation of lumped boundary conditions of 1D circulation models

论文作者

Fevola, Elisa, Bradde, Tommaso, Triverio, Piero, Grivet-Talocia, Stefano

论文摘要

适当的边界条件的选择是开发用于血流模拟的心血管模型的关键步骤。三元素Windkessel模型通常被用作集结边界条件,从而减少了外围循环的订单表示。但是,Windkessel参数的系统估计仍然是一个开放的问题。此外,Windkessel模型并不总是足以模型的血流动力学,这通常需要更精细的边界条件。在这项研究中,我们提出了一种估计高阶边界条件(包括Windkessel模型)的方法,并研究了它们的使用。提出的技术基于时间域矢量拟合,该算法的建模算法,给定系统的输入和输出的样本(例如压力和流动波形)可以得出一个近似值的微分方程,以近似其关系。在由55个最大动脉组成的1D循环模型上测试了所提出的方法的能力,以证明其准确性和估计边界条件的有用性高于传统的Windkessel模型。根据其他常见的估计技术进行了验证,并且在存在嘈杂的数据以及由精神压力引起的主动脉流量的生理变化的情况下,验证了其在参数估计中的鲁棒性。结果表明,所提出的方法能够准确估计任意顺序的边界条件。高阶边界条件可以提高心血管模拟的准确性,并且时间域矢量拟合可以自动估计它们。

The choice of appropriate boundary conditions is a crucial step in the development of cardiovascular models for blood flow simulations. The three-element Windkessel model is usually employed as a lumped boundary condition, providing a reduced order representation of the peripheral circulation. However, the systematic estimation of the Windkessel parameters remains an open problem. Moreover, the Windkessel model is not always adequate to model blood flow dynamics, which often require more elaborate boundary conditions. In this study, we propose a method for the estimation of high order boundary conditions, including the Windkessel model, and we investigate their use. The proposed technique is based on Time-Domain Vector Fitting, a modeling algorithm that, given samples of the input and output of a system, such as pressure and flow waveforms, can derive a differential equation approximating their relation. The capability of the proposed method is tested on a 1D circulation model consisting of the 55 largest arteries, to demonstrate its accuracy and the usefulness of estimating boundary conditions with order higher than the traditional Windkessel models. The proposed method is verified against other common estimation techniques, and its robustness in parameter estimation is verified in presence of noisy data and of physiological changes of aortic flow rate induced by mental stress. Results suggest that the proposed method is able to accurately estimate boundary conditions of arbitrary order. Higher order boundary conditions can improve the accuracy of cardiovascular simulations, and Time-Domain Vector Fitting can automatically estimate them.

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