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首页> 外文期刊>American Journal of Physiology >Validation of a patient-specific one-dimensional model of the systemic arterial tree.
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Validation of a patient-specific one-dimensional model of the systemic arterial tree.

机译:验证全身动脉树的特定患者特定一维模型。

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The aim of this study is to develop and validate a patient-specific distributed model of the systemic arterial tree. This model is built using geometric and hemodynamic data measured on a specific person and validated with noninvasive measurements of flow and pressure on the same person, providing thus a patient-specific model and validation. The systemic arterial tree geometry was obtained from MR angiographic measurements. A nonlinear viscoelastic constitutive law for the arterial wall is considered. Arterial wall distensibility is based on literature data and adapted to match the wave propagation velocity of the main arteries of the specific subject, which were estimated by pressure waves traveling time. The intimal shear stress is modeled using the Witzig-Womersley theory. Blood pressure is measured using applanation tonometry and flow rate using transcranial ultrasound and phase-contrast-MRI. The model predicts pressure and flow waveforms in good qualitative and quantitative agreement with the in vivo measurements, in terms of wave shape and specific wave features. Comparison with a generic one-dimensional model shows that the patient-specific model better predicts pressure and flow at specific arterial sites. These results obtained let us conclude that a patient-specific one-dimensional model of the arterial tree is able to predict well pressure and flow waveforms in the main systemic circulation, whereas this is not always the case for a generic one-dimensional model.
机译:本研究的目的是开发和验证系统动脉树的患者特定的分布模型。该模型是使用在特定人物上测量的几何和血流动力学数据构建,并在同一个人上使用非侵入性测量的流量和压力进行验证,从而提供特定于患者的模型和验证。从MR血管造影测量获得了全身性动脉树几何体。考虑了动脉壁的非线性粘弹性本构型法。动脉壁的可扩展性基于文献数据,并适于匹配特定对象的主动脉的波传播速度,这通过压力波行驶时间估计。使用Witzig-Womersley理论建模了内部剪切应力。使用血管超声和相位对比-MRI使用施置旋孔和流速测量血压。在波形和特定波特征方面,该模型预测了与体内测量良好的质量和定量协议的压力和流量波形。与通用一维模型的比较表明,患者特异性模型更好地预测特定动脉位点的压力和流动。这些结果让我们得出结论,动脉树的特定于患者的一维模型能够预测主要的系统循环中的良好压力和流量波形,而这并不总是对通用一维模型的情况。

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