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心肌纤维方向和僵硬度的不确定性主导了左心室变形反应的可变性。

Uncertainty in cardiac myofiber orientation and stiffnesses dominate the variability of left ventricle deformation response.

机构信息

Department of Numerical Analysis and Scientific Computing, Simula Research Laboratory AS, Baerum, Norway.

Center for Cardiological Innovation, Simula Research Laboratory, Baerum, Norway.

出版信息

Int J Numer Method Biomed Eng. 2019 May;35(5):e3178. doi: 10.1002/cnm.3178. Epub 2019 Jan 21.

Abstract

Computational cardiac modelling is a mature area of biomedical computing and is currently evolving from a pure research tool to aiding in clinical decision making. Assessing the reliability of computational model predictions is a key factor for clinical use, and uncertainty quantification (UQ) and sensitivity analysis are important parts of such an assessment. In this study, we apply UQ in computational heart mechanics to study uncertainty both in material parameters characterizing global myocardial stiffness and in the local muscle fiber orientation that governs tissue anisotropy. The uncertainty analysis is performed using the polynomial chaos expansion (PCE) method, which is a nonintrusive meta-modeling technique that surrogates the original computational model with a series of orthonormal polynomials over the random input parameter space. In addition, in order to study variability in the muscle fiber architecture, we model the uncertainty in orientation of the fiber field as an approximated random field using a truncated Karhunen-Loéve expansion. The results from the UQ and sensitivity analysis identify clear differences in the impact of various material parameters on global output quantities. Furthermore, our analysis of random field variations in the fiber architecture demonstrate a substantial impact of fiber angle variations on the selected outputs, highlighting the need for accurate assignment of fiber orientation in computational heart mechanics models.

摘要

计算心脏建模是生物医学计算中一个成熟的领域,目前正从纯粹的研究工具发展为辅助临床决策。评估计算模型预测的可靠性是临床应用的关键因素,不确定性量化 (UQ) 和敏感性分析是这种评估的重要组成部分。在这项研究中,我们将 UQ 应用于计算心脏力学中,研究全局心肌硬度特征的材料参数以及控制组织各向异性的局部肌纤维方向的不确定性。不确定性分析使用多项式混沌展开 (PCE) 方法进行,这是一种非侵入式的元模型技术,通过在随机输入参数空间上的一系列正交多项式来替代原始计算模型。此外,为了研究纤维结构的可变性,我们使用截断的 Karhunen-Loève 展开将纤维场方向的不确定性建模为近似随机场。UQ 和敏感性分析的结果表明,各种材料参数对全局输出量的影响有明显差异。此外,我们对纤维结构中随机场变化的分析表明,纤维角度变化对选定输出有很大影响,突出了在计算心脏力学模型中准确分配纤维方向的必要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e6e7/6618163/910c6004f24b/CNM-35-na-g001.jpg

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