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Finite element studies of the mechanical behaviour of the diaphragm in normal and pathological cases

机译:正常和病理情况下隔膜力学行为的有限元研究

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摘要

The diaphragm is a muscular membrane separating the abdominal and thoracic cavities, and its motion is directly linked to respiration. In this study, using data from a 59-year-old female cadaver obtained from the Visible Human Project, the diaphragm is reconstructed and, from the corresponding solid object, a shell finite element mesh is generated and used in several analyses performed with the ABAQUS 6.7 software. These analyses consider the direction of the muscle fibres and the incompressibility of the tissue. The constitutive model for the isotropic strain energy as well as the passive and active strain energy stored in the fibres is adapted from Humphrey's model for cardiac muscles. Furthermore, numerical results for the diaphragmatic floor under pressure and active contraction in normal and pathological cases are presented.
机译:隔膜是分隔腹腔和胸腔的肌肉膜,其运动直接与呼吸有关。在这项研究中,使用从“可见的人类项目”中获得的59岁女性尸体的数据,对隔膜进行了重建,并从相应的固体对象生成了壳有限元网格,并用ABAQUS进行了多次分析6.7软件。这些分析考虑了肌肉纤维的方向和组织的不可压缩性。各向同性应变能以及存储在纤维中的被动应变和主动应变能的本构模型是改编自汉弗莱(Hemphrey's)的心肌模型。此外,还提供了在正常和病理情况下在压力和主动收缩下the肌地板的数值结果。

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