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Verification of cardiac mechanics software: benchmark problems and solutions for testing active and passive material behaviour

机译:验证心脏力学软件:基准问题和测试主动和被动材料行为的解决方案

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摘要

Models of cardiac mechanics are increasingly used to investigate cardiac physiology. These models are characterized by a high level of complexity, including the particular anisotropic material properties of biological tissue and the actively contracting material. A large number of independent simulation codes have been developed, but a consistent way of verifying the accuracy and replicability of simulations is lacking. To aid in the verification of current and future cardiac mechanics solvers, this study provides three benchmark problems for cardiac mechanics. These benchmark problems test the ability to accurately simulate pressure-type forces that depend on the deformed objects geometry, anisotropic and spatially varying material properties similar to those seen in the left ventricle and active contractile forces. The benchmark was solved by 11 different groups to generate consensus solutions, with typical differences in higher-resolution solutions at approximately 0.5%, and consistent results between linear, quadratic and cubic finite elements as well as different approaches to simulating incompressible materials. Online tools and solutions are made available to allow these tests to be effectively used in verification of future cardiac mechanics software.
机译:心脏力学模型越来越多地用于研究心脏生理。这些模型的特点是高度复杂,包括生物组织和主动收缩材料的特殊各向异性材料特性。已经开发了许多独立的仿真代码,但是缺少一种一致的方法来验证仿真的准确性和可复制性。为了帮助验证当前和将来的心脏力学求解器,本研究为心脏力学提供了三个基准问题。这些基准问题测试了精确模拟压力型力的能力,压力型力取决于变形物体的几何形状,各向异性和空间变化的材料特性,类似于左心室和主动收缩力。该基准由11个不同的组解决,以生成共识解决方案,其中高分辨率解决方案的典型差异约为0.5%,线性,二次和三次有限元之间的结果一致,并且模拟不可压缩材料的方法也不同。提供了在线工具和解决方案,以使这些测试可以有效地用于验证未来的心脏力学软件。

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