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Numerical modelling of abdominal wall mechanics: The role of muscular contraction and intra-abdominal pressure

机译:腹壁力学的数值建模:肌肉收缩和腹部压力的作用

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摘要

The biomechanics of the abdominal wall depends on muscular activation, tissue mechanical behavior and Intra-Abdominal Pressure (LAP). In this work, a numerical model of a human abdomen is presented, based on abdominal wall geometry from medical images. Specific constitutive formulations describe tissues mechanical behavior. Connective tissues are modelled as hyperelastic fiber-reinforced materials, while muscular tissues are described by means of a three-element Hill's model. The abdominal cavity is represented by a volume region interacting with the abdominal wall. Numerical analyses are developed by applying a muscular contraction, inducing a volume reduction of the abdominal cavity and a simultaneous LAP increase. Numerical results of abdomen displacement at LAP corresponding to an abdominal crunch are compared with experimental results acquired via 3D laser scanning on a healthy subject. Numerical and experimental results are mutually consistent and show that muscular activation induces a raising in the region adjacent to linea alba along the posterior-anterior direction and a lowering along lateral-medial direction of the abdominal wall sides. The numerical model developed in this work allows a coherent representation of the abdominal wall mechanics.
机译:腹壁的生物力学取决于肌肉激活,组织机械行为和腹部内压(膝盖)。在这项工作中,基于来自医学图像的腹壁几何形状,提出了人腹的数值模型。具体组成型制剂描述了组织力学行为。结缔组织被建模为超弹性纤维增强材料,而肌肉组织是通过三元山的模型描述的。腹腔由与腹壁相互作用的体积区域表示。通过施加肌肉收缩来开发数值分析,诱导腹腔的体积减少和同时圈增加。将腹部位移对应于腹部咬合的腹部位移的数值结果与通过3D激光扫描在健康受试者上获得的实验结果。数值和实验结果是相互一致的,并且表明肌肉激活沿着后前方向沿着线壁侧的后侧方向相邻的区域中的升高,并且沿着腹壁侧的侧向中间方向下降。在这项工作中开发的数值模型允许腹壁力学的相干表示。

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