Behdadfar Sareh, Navarro Laurent, Sundnes Joakim, Maleckar Molly M, Avril Stéphane
a Ecole Nationale Supérieure des Mines, CIS-EMSE , Institut national de la santé et de la recherche médicale, INSERM:UMR1059, SAINBIOSE , Saint-Etienne , France.
b Computational Cardiac Modeling Department , Simula Research Laboratory , Fornebu , Norway.
Comput Methods Biomech Biomed Engin. 2017 Aug;20(11):1223-1232. doi: 10.1080/10255842.2017.1347160. Epub 2017 Jul 4.
Patient-specific estimates of the stress distribution in the left ventricles (LV) may have important applications for therapy planning, but computing the stress generally requires knowledge of the material behaviour. The passive stress-strain relation of myocardial tissue has been characterized by a number of models, but material parameters (MPs) remain difficult to estimate. The aim of this study is to implement a zero-pressure algorithm to reconstruct numerically the stress distribution in the LV without precise knowledge of MPs. We investigate the sensitivity of the stress distribution to variations in the different sets of constitutive parameters. We show that the sensitivity of the LV stresses to MPs can be marginal for an isotropic constitutive model. However, when using a transversely isotropic exponential strain energy function, the LV stresses become sensitive to MPs, especially to the linear elastic coefficient before the exponential function. This indicates that in-vivo identification efforts should focus mostly on this MP for the development of patient-specific finite-element analysis.
针对左心室(LV)应力分布的患者特异性估计对于治疗规划可能具有重要应用,但计算应力通常需要了解材料特性。心肌组织的被动应力-应变关系已由多种模型进行了表征,但材料参数(MPs)仍难以估计。本研究的目的是实现一种零压力算法,在无需精确了解MPs的情况下,通过数值方法重建LV中的应力分布。我们研究了应力分布对不同本构参数集变化的敏感性。我们表明,对于各向同性本构模型,LV应力对MPs的敏感性可能很小。然而,当使用横向各向同性指数应变能函数时,LV应力对MPs变得敏感,尤其是对指数函数之前的线性弹性系数。这表明,在进行体内识别时,为了开展针对患者的有限元分析,应主要关注该材料参数。