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首页> 外文期刊>Computer methods in biomechanics and biomedical engineering >A novel computational method to determine subject-specific bite force and occlusal loading during mastication
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A novel computational method to determine subject-specific bite force and occlusal loading during mastication

机译:确定咀嚼过程中受试者特定咬合力和咬合负荷的新型计算方法

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摘要

The evaluation of three-dimensional occlusal loading during biting and chewing may assist in development of new dental materials, in designing effective and long-lasting restorations such as crowns and bridges, and for evaluating functional performance of prosthodontic components such as dental and/or maxillofacial implants. At present, little is known about the dynamic force and pressure distributions at the occlusal surface during mastication, as these quantities cannot be measured directly. The aim of this study was to evaluate subject-specific occlusal loading forces during mastication using accurate jaw motion measurements. Motion data was obtained from experiments in which an individual performed maximal effort dynamic chewing cycles on a rubber sample with known mechanical properties. A finite element model simulation of one recorded chewing cycle was then performed to evaluate the deformation of the rubber. This was achieved by imposing the measured jaw motions on a three-dimensional geometric surface model of the subject's dental impressions. Based on the rubber's deformation and its material behaviour, the simulation was used to compute the resulting stresses within the rubber as well as the contact pressures and forces on the occlusal surfaces. An advantage of this novel modelling approach is that dynamic occlusal pressure maps and biting forces may be predicted with high accuracy and resolution at each time step throughout the chewing cycle. Depending on the motion capture technique and the speed of simulation, the methodology may be automated in such a way that it can be performed chair-side. The present study demonstrates a novel modelling methodology for evaluating dynamic occlusal loading during biting or chewing.
机译:评估咬和咀嚼过程中的三维咬合负荷可能有助于开发新的牙科材料,设计有效且持久的修复体,例如冠和桥,以及评估诸如牙齿和/或颌面修复体的牙齿修复组件的功能性能植入物。目前,关于咀嚼过程中咬合面上的动力和压力分布知之甚少,因为这些量不能直接测量。这项研究的目的是使用精确的下颌运动测量来评估咀嚼过程中受试者特定的咬合负荷力。运动数据是从实验中获得的,在该实验中,一个人对具有已知机械性能的橡胶样品进行了最大力度的动态咀嚼循环。然后执行一个记录的咀嚼周期的有限元模型仿真,以评估橡胶的变形。这是通过将所测量的颌骨运动施加到对象的牙齿印模的三维几何表面模型上来实现的。基于橡胶的变形及其材料性能,该模拟用于计算橡胶内产生的应力以及在咬合面上的接触压力和作用力。这种新颖的建模方法的优势在于,可以在整个咀嚼周期的每个时间步以高精度和高分辨力预测动态咬合压力图和咬合力。根据运动捕捉技术和仿真速度,可以以可以在椅子上执行的方式使该方法自动化。本研究演示了一种新颖的建模方法,用于评估咬合或咀嚼过程中的动态咬合负荷。

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