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通过三维有限元肌肉模型关联骨骼肌输出力与肌内压力

Correlating Skeletal Muscle Output Force and Intramuscular Pressure Via a Three-Dimensional Finite Element Muscle Model.

作者信息

El Bojairami Ibrahim, Driscoll Mark

机构信息

Department of Mechanical Engineering, Musculoskeletal Biomechanics Research Laboratory, McGill University, Macdonald Engineering Building Office #163, 817 Sherbrooke Street West, Montreal, QC H3A 0C3, Canada.

Department of Mechanical Engineering, Musculoskeletal Biomechanics Research Laboratory, McGill University, Macdonald Engineering Building Office #153, 817 Sherbrooke Street West, Montreal, QC H3A 0C3, Canada.

出版信息

J Biomech Eng. 2022 Apr 1;144(4). doi: 10.1115/1.4052885.

Abstract

The inclusion of muscle pressure in muscle models may have important implications in biomechanics. This notion builds from the known correlation between muscle contractile force and internal pressure. However, this relation is often omitted in numerical models leveraged to study biomechanics. Thus, the purpose of this study was to develop and validate a method of modeling muscles, via finite elements, inclusive of the correlation between muscle contractile force and intramuscular pressure. A magnetic resonance imaging (MRI)-scanned tibialis anterior muscle was modeled via a simple, yet easily scalable, mixed shell and pressure finite element model. Then a validation study was conducted on intramuscular pressure, resulting from applied muscle contractile force, through leveraging special fluid elements type. The fluid-structure-based model and adopted methods exhibited muscle forces and intramuscular pressure that were highly linearly correlated. Indirect validation was achieved with a maximum discrepancy of 7.25%. Furthermore, force-length curves followed a trend similar to documented conventional muscle data, which added to the model's validity. Mesh, material properties, and tendon stiffness sensitivity studies supported the model's robustness. This study has introduced a novel three-dimensional finite element modeling method that respects the physiological force and intramuscular pressure relationship. Although similar models have been previously explored, their complex physiological representation and time-consuming solvers make their scalability and real-time implementation questionable. Thus, the developed model may address such limitations while improving the realism of volumetric finite element models inclusive of muscle contribution.

摘要

在肌肉模型中纳入肌肉压力可能在生物力学方面具有重要意义。这一概念基于肌肉收缩力与内部压力之间已知的相关性。然而,在用于研究生物力学的数值模型中,这种关系常常被忽略。因此,本研究的目的是通过有限元开发并验证一种对肌肉进行建模的方法,该方法包含肌肉收缩力与肌内压力之间的相关性。通过一个简单但易于扩展的混合壳和压力有限元模型,对经磁共振成像(MRI)扫描的胫骨前肌进行建模。然后,通过利用特殊的流体单元类型,对由施加的肌肉收缩力产生的肌内压力进行了验证研究。基于流固耦合的模型和所采用的方法显示出肌肉力与肌内压力高度线性相关。间接验证的最大差异为7.25%。此外,力-长度曲线遵循与已记录的传统肌肉数据相似的趋势,这增加了模型的有效性。网格、材料属性和肌腱刚度敏感性研究支持了模型的稳健性。本研究引入了一种新颖的三维有限元建模方法,该方法考虑了生理力与肌内压力的关系。尽管之前已经探索过类似的模型,但其复杂的生理表示和耗时的求解器使其可扩展性和实时实现存在疑问。因此,所开发的模型可能解决此类限制,同时提高包含肌肉贡献的体积有限元模型的真实性。

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