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The effects of the muscular contraction on the abdominal biomechanics: a numerical investigation

机译:肌肉收缩对腹部生物力学的影响:数值调查

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Abdominal wall biomechanics is strongly affected by muscular contraction and intra-abdominal pressure (IAP) which characterize different physiological functions and daily tasks. However, the active muscular behavior is generally not considered in current computational models of the abdominal wall. The aim of this study is to develop a numerical model mimicking muscular activation and IAP. A three dimensional Finite Element model of a healthy abdominal wall is developed detailing the principal abdomen components reconstructed upon anatomical data and medical images. Fascial tissues, aponeuroses and linea alba are modelled as hyperelastic fiber-reinforced materials, while a three-element Hill's model is assumed for muscles. Numerical analyses are performed increasing the IAP up to 100 mmHg and simultaneously activating the muscular structures. The obtained abdominal behavior is compared to a similar model with same IAPs, but passive muscles conditions. Abdomen stiffness and strength are computed in regions in which hernias can potentially occur. A global stiffening of the abdominal wall is found corresponding to a low abdomen deformation and the membrane force on fascial structures is reduced by muscular contraction. Representing active muscular contraction leads to advanced findings, otherwise membrane force results overestimated considering a purely passive behavior for the abdominal wall.
机译:腹壁生物力学受到肌肉收缩和腹部内压(IAP)的影响,其特征不同的生理功能和日常任务。然而,在腹壁的当前计算模型中通常不考虑活跃的肌肉行为。本研究的目的是开发一种模拟肌肉激活和IAP的数值模型。开发了健康腹壁的三维有限元模型,详细介绍了在解剖数据和医学图像上重建的主要腹部组分。肌肉组织,腱膜和Linea菊茄被建模为超痉挛纤维增强材料,而假设三元山的模型用于肌肉。执行数值分析,将IAP增加至100mmHg并同时激活肌肉结构。将获得的腹部行为与具有相同IAP的类似模型进行比较,而是被动肌肉条件。腹部刚度和强度在可能发生疝气的地区计算。发现腹壁的全球加强对应于低腹部变形,并且通过肌肉收缩减少了筋膜结构上的膜力。代表主动肌肉收缩导致先进的结果,否则膜力导致考虑到腹壁的纯被动行为估计。

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