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GLOBAL STRESS-STRAIN RELATIONSHIP OF A BEATING HEART

机译:心脏跳动的全球应力-应变关系

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摘要

An integrated computational-experimental method was developed to characterize the global nonlinear elastic stress-strain behavior of a beating rat heart. This method combines finite element (FE) simulation with the experimental end-diastolic cavity pressure - balloon volume relationship of left ventricle (LV) to characterize the deformation resistance of a beating heart. In the FE simulations, the hyperelastic Ogden strain energy potential was used and geometric nonlinearity was also considered. The elastic moduli for the ex-vivo rat heart obtained through the study vary from 0.003 to 0.577 MPa.
机译:开发了一种集成的计算实验方法来表征跳动大鼠心脏的整体非线性弹性应力-应变行为。该方法将有限元(FE)模拟与实验性舒张末期腔室压力-左心室(LV)球囊体积关系相结合,以表征跳动心脏的变形阻力。在有限元模拟中,使用了超弹性Ogden应变能势,并且还考虑了几何非线性。通过这项研究获得的离体大鼠心脏的弹性模量从0.003到0.577 MPa不等。

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