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Inverse finite element characterization of the human thigh soft tissue in the seated position

机译:坐姿的人大腿软组织的逆有限元表征

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摘要

Pressure ulcers are localized damage to the skin and underlying tissues caused by sitting or lying in one position for a long time. Stresses within the soft tissue of the thigh and buttocks area play a crucial role in the initiating mechanism of these wounds. Therefore, it is crucial to develop reliable finite element models to evaluate the stresses caused by physiological loadings. In this study, we compared how the choice of material model and modeling area dimension affect prediction accuracy of a model of the thigh. We showed that the first-order Ogden and Fung orthotropic material models could approximate the mechanical behavior of soft tissue significantly better than neo-Hookean and Mooney-Rivlin. We also showed that, significant error results from using a semi-3D model versus a 3D model. We then developed full 3D models for 20 participants employing Ogden and Fung material models and compared the estimated material parameters between different sexes and locations along the thigh. We showed that males tissues are less deformable overall when compared to females and the material parameters are highly dependent on location, with tissues getting softer moving distally for both men and women.
机译:压力溃疡对皮肤和底层组织造成的局部损伤,并且长时间坐在一个位置引起的底层组织。大腿和臀部区域的软组织内的应力在这些伤口的启动机制中起着至关重要的作用。因此,开发可靠的有限元模型至关重要,以评估由生理载荷引起的应力。在这项研究中,我们将材料模型和建模区域维度的选择进行了比较了影响大腿模型的预测精度。我们表明,一阶OGDEN和FUNG正交材料模型可以近似软组织的力学行为明显优于Neo-HOOK和MOONEY-RIVLIN。我们还表明,使用半3D模型与3D模型的误差产生了重大错误。然后,我们为20名参与者开发了全面的3D模型,用于使用OGDEN和FUGG材料模型,并将沿大腿不同性别和位置之间的估计材料参数进行了比较。我们表明,与女性相比,男性组织整体不太可变形,并且材料参数高度依赖于位置,而组织将柔软地移动,对于男性和女性来说远向移动。

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