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Numerical simulation of canine bodily movement

机译:犬的身体运动的数值模拟

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摘要

The aim of this study was to develop finite element (FE) models to simulate bodily movement of an orthodontic treatment of mandibular canine with decayed loads during a therapy period (4 weeks). The normal strain of periodontal ligament was assumed as the key mechanical stimulus for the surface bone remodeling. During the simulation processes, changes in tooth position and in the geometry of the tooth supporting structures and the decayed loads were taken into account. In this numerical simulation, the tooth movement displacements were 1.00 mm in the end of the therapy. The results of the simulation were similar to the observed in clinical studies. It was acceptable to simulate clinical tooth movements by FE method based on these mechanical assumptions. Such a numerical simulation would allow the understanding of tooth movements and help in better planning of individual strategies.
机译:这项研究的目的是开发有限元(FE)模型,以模拟在治疗期间(4周)内负载下降的下颌正畸治疗牙齿的正向运动。牙周膜的正常应变被认为是表面骨重塑的关键机械刺激。在模拟过程中,考虑了牙齿位置和牙齿支撑结构的几何形状以及衰减的载荷的变化。在此数值模拟中,治疗结束时牙齿移动位移为1.00 mm。模拟结果与临床研究中观察到的相似。基于这些机械假设,通过有限元方法模拟临床牙齿运动是可以接受的。这样的数值模拟将有助于理解牙齿的运动并有助于更好地规划个体策略。

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