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Modeling the Chemoelectromechanical Behavior of Skeletal Muscle Using the Parallel Open-Source SoftwareLibrary OpenCMISS

机译:使用并行开源软件对骨骼肌的化学机电行为进行建模图书馆OpenCMISS

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摘要

An extensible, flexible, multiscale, and multiphysics model for nonisometric skeletal muscle behavior is presented. The skeletal muscle chemoelectromechanical model is based on a bottom-up approach modeling the entire excitation-contraction pathway by strongly coupling a detailed biophysical model of a half-sarcomere to the propagation of action potentials along skeletal muscle fibers and linking cellular parameters to a transversely isotropic continuum-mechanical constitutive equation describing the overall mechanical behavior of skeletal muscle tissue. Since the multiscale model exhibits separable time scales, a special emphasis is placed on employing computationally efficient staggered solution schemes. Further, the implementation builds on the open-source software library OpenCMISS and uses state-of-the-art parallelization techniques taking advantage of the unique anatomical fiber architecture of skeletal muscles. OpenCMISS utilizes standardized data structures for geometrical aspects (FieldML) and cellular models (CellML). Both standards are designed to allow for a maximum flexibility, reproducibility, and extensibility. The results demonstrate the model's capability of simulating different aspects of nonisometric muscle contraction and efficiently simulating the chemoelectromechanical behavior in complex skeletal muscles such as the tibialis anterior muscle.
机译:提出了一种可扩展,灵活,多尺度和多物理场的非等距骨骼肌行为模型。骨骼肌化学机电模型基于自下而上的方法,通过将详细的半肌节生物物理模型与动作电位沿骨骼肌纤维的传播紧密耦合,并将细胞参数与横观各向同性联系起来,从而对整个兴奋收缩路径进行建模描述骨骼肌组织整体力学行为的连续力学本构方程。由于多尺度模型展示了可分离的时间尺度,因此特别强调了采用计算效率高的交错求解方案。此外,该实现基于开源软件库OpenCMISS并使用最先进的并行化技术,充分利用了骨骼肌独特的解剖纤维结构。 OpenCMISS将标准化的数据结构用于几何方面(FieldML)和细胞模型(CellML)。两种标准都旨在最大程度地提高灵活性,可重复性和可扩展性。结果证明了该模型能够模拟非等距肌肉收缩的不同方面,并能够有效地模拟复杂骨骼肌(如胫骨前肌)中的化学机电行为。

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