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Adaptive nonlinear elastic FEM for realistic prediction of soft tissue in craniofacial surgery simulations

机译:用于颅面外科仿真中软组织现实预测的自适应非线性弹性FEM

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In craniofacial surgery simulations, the realistic prediction of a patient's postoperative appearance is of utmost importance. Due to the complexity of biomechanical behavior of soft tissue simplified models such as widespread linear elastic models are usually applied. However, large deformations often occurring in craniofacial surgery can't be accurately modeled via linear elastic approach, since it is generally limited by the assumption of small deformations. In this paper, we present an adaptive nonlinear elastic approach based on the finite element discretization of 3D patient's model, which is free of linearization limitations and yields more realistic results in simulations of large facial tissue deformation.
机译:在颅面外科仿真中,患者术后外观的现实预测至关重要。由于通常施加诸如广泛的线性弹性模型的软组织简化模型的生物力学行为的复杂性。然而,通常通过线性弹性方法准确地建模颅面手术中经常发生的大变形,因为它通常受到小变形的假设。在本文中,我们提出了一种基于3D患者模型的有限元离散化的自适应非线性弹性方法,这是没有线性化限制的,并且在大面部组织变形的模拟中产生更现实的结果。

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