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Biomechanical modeling of abdominal muscle system considering tendinous intersection and abdominal cavity's compressibility

机译:考虑腱交叉和腹腔可压缩性的腹肌系统生物力学建模

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In this paper, we demonstrate that a musculoskeletal model with an anatomically-inspired abdomen model can estimate human-like abdominal muscle tension, in contrast to previous musculoskeletal models or models based on joint elasticity. We first model the abdominal structure based on anatomical knowledge. The anatomically-inspired abdomen model consists of a Tendinous Intersection model that connects the muscle bellies of Rectus Abdominis and represents its pathway, a Rectus Abdominis model that represents the muscle contraction part, and a balloon-type abdominal cavity model that represents the volumetric abdominal cavity. These models compute the intra-abdominal pressure and its effect on the lumbar vertebrae joint torques. We use these models with our musculoskeletal model to estimate the abdominal muscle tension during sitting up motion with optical motion capture, inverse kinematics, and inverse dynamics computation. Our computational results show that our abdomen model estimates the muscle tension with a waveform similar to the muscle activity measured by electromyography, while the previous musculoskeletal model and the joint elasticity model estimate obviously different muscle tension patterns. These results imply that the intra-abdominal pressure is critical in estimating the abdominal muscle tension rather than the inertial properties and the joint elasticity.
机译:在本文中,我们证明了与以前的肌肉骨骼模型或基于关节弹性的模型相比,具有解剖学上启发的腹部模型的肌肉骨骼模型可以估计人般的腹肌张力。我们首先根据解剖学知识对腹部结构进行建模。解剖学上的腹部模型由一个连接腹直肌的腹部并表示其路径的Tentenous Intersection模型,一个代表肌肉收缩部分的Rectus Abdominis模型以及一个代表容积腹腔的气球型腹腔模型组成。这些模型计算腹腔内压力及其对腰椎关节扭矩的影响。我们将这些模型与肌肉骨骼模型一起使用,以通过光学运动捕捉,逆运动学和逆动力学计算来估计仰卧起坐过程中的腹肌张力。我们的计算结果表明,我们的腹部模型估计肌肉张力的波形类似于通过肌电图测量的肌肉活动,而先前的肌肉骨骼模型和关节弹性模型估计的肌肉张力模式则明显不同。这些结果表明,腹腔内压力对估计腹肌张力至关重要,而不是惯性和关节弹性。

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