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FEM Simulation with Realistic Sliding Effect to Improve Facial-Soft-Tissue-Change Prediction Accuracy for Orthognathic Surgery

机译:有限元模拟具有现实滑动效果,提高正畸手术的面部软组织变化预测精度

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It is clinically important to accurately predict facial soft tissue changes following bone movements in orthognathic surgical planning. However, the current simulation methods are still problematic, especially in clinically critical regions, e.g., the nose, lips and chin. In this study, finite element method (FEM) simulation model with realistic tissue sliding effects was developed to increase the prediction accuracy in critical regions. First, the facial soft-tissue-change following bone movements was simulated using FEM with sliding effect with nodal force constraint. Subsequently, sliding effect with a nodal displacement constraint was implemented by reassigning the bone-soft tissue mapping and boundary condition for realistic sliding movement simulation. Our method has been quantitatively evaluated using 30 patient datasets. The FEM simulation method with the realistic sliding effects showed significant accuracy improvement in the whole face and the critical areas (i.e., lips, nose and chin) in comparison with the traditional FEM method.
机译:在临床上重要的是准确地预测面部软组织在正畸外科手术计划中骨骼运动后的变化。然而,目前的模拟方法仍然存在问题,特别是在临床关键区域,例如鼻子,嘴唇和下巴。在该研究中,开发了具有现实组织滑动效果的有限元方法(FEM)仿真模型,以提高关键区域的预测精度。首先,利用具有与节点力约束的USP模拟骨运动后的面部软组织变化。随后,通过重新分配骨软组织映射和边界条件来实现具有节点位移约束的滑动效果来实现现实滑动运动模拟。我们的方法已经使用30个患者数据集定量评估。与传统的FEM方法相比,具有现实滑动效应的有限元模拟方法显示了整个面部和关键区域(即唇,鼻子和下巴)的显着改进。

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