Taneja Karan, He Xiaolong, Hodgson John, Sinha Usha, Sinha Shantanu, Chen J S
Department of Structural Engineering, University of California San Diego, San Diego, CA, USA.
ANSYS Inc, Livermore, CA, USA.
ArXiv. 2023 Oct 9:arXiv:2310.06191v1.
Experimental observations suggest that the force output of the skeletal muscle tissue can be correlated to the intra-muscular pressure generated by the muscle belly. However, pressure often proves difficult to measure through tests. Simulations on the other hand, offer a tool to model muscle contractions and analyze the relationship between muscle force generation and deformations as well as pressure outputs, enabling us to gain insight into correlations among experimentally measurable quantities such as principal and volumetric strains, and the force output. In this work, a correlation study is performed using Pearson's and Spearman's correlation coefficients on the force output of the skeletal muscle, the principal and volumetric strains experienced by the muscle and the pressure developed within the muscle belly as the muscle tissue undergoes isometric contractions due to varying activation profiles. The study reveals strong correlations between force output and the strains at all locations of the belly, irrespective of the type of activation profile used. This observation enables estimation on the contribution of various muscle groups to the total force by the experimentally measurable principal and volumetric strains in the muscle belly. It is also observed that pressure does not correlate well with force output due to stress relaxation near the boundary of muscle belly.
实验观察表明,骨骼肌组织的力输出与肌腹产生的肌内压力相关。然而,通过测试测量压力往往很困难。另一方面,模拟提供了一种工具,可对肌肉收缩进行建模,并分析肌肉力产生与变形以及压力输出之间的关系,使我们能够深入了解诸如主应变和体积应变等实验可测量量与力输出之间的相关性。在这项工作中,使用皮尔逊(Pearson)相关系数和斯皮尔曼(Spearman)相关系数,对骨骼肌的力输出、肌肉经历的主应变和体积应变以及由于不同激活模式导致肌肉组织进行等长收缩时肌腹内产生的压力进行了相关性研究。该研究表明,无论使用何种激活模式,力输出与肌腹所有位置的应变之间都存在很强的相关性。这一观察结果使得能够通过实验可测量的肌腹中的主应变和体积应变来估计各个肌肉群对总力的贡献。还观察到,由于肌腹边界附近的应力松弛,压力与力输出的相关性不佳。