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A 3D finite element model of the face for simulation in plastic and maxillo-facial surgery

机译:塑料和颌面外科仿真脸部3D有限元模型

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This paper introduces a new Finite Element biomechanical model of the human face, which has been developed to be integrated into a simulator for plastic and maxillo-facial surgery. The idea is to be able to predict, from an aesthetic and functional point of view, the deformations of a patient face, resulting from repositioning of the maxillary and mandibular bone structures. This work will complete the simulator for bone-repositioning diagnosis that has been developed by the laboratory. After a description of our research project context, each step of the modeling is precisely described: the continuous and elastic structure of the skin tissues, the orthotropic muscular fibers and their insertions points, and the functional model of force generation. First results of face deformations due to muscles activations are presented. They are qualitatively compared to the functional studies provided by the literature on face muscles roles and actions.
机译:本文介绍了人脸的新有限元生物力学模型,已经开发出集成到塑料和颌面外科的模拟器中。从美学和功能的观点来看,该想法是能够预测患者面部的变形,从而导致上颌和下颌骨结构的重新定位。这项工作将完成由实验室开发的骨重新定位诊断模拟器。在我们的研究项目背景描述之后,建模的每个步骤都精确描述:皮肤组织,正交肌肉纤维及其插入点的连续和弹性结构以及力产生的功能模型。提出了由于肌肉激活引起的第一个脸部变形的结果。它们与文献提供的功能研究相比,他们对面部肌肉作用和行动提供的功能研究。

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