[Stress distribution in mandible induced by occlusal force in different horizontal mandibular positions].

T Ishida, K Soma, F Miura
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Abstract

The objective of this study was to investigate the stress distribution in the mandible induced by occlusal forces in a various different horizontal mandibular positions identified as neutroclusion, distoclusion, mesioclusion, and laterally shifted occlusion. A three dimensional Finite Element Method (3D-FEM) was applied to an artificial model of a simulated mandible constructed as a homogeneous, isotropic and elastic body. This model was divided into 480 elements with 785 nodes. The right and left heads of the mandibular condyles and the occlusal surfaces of the posterior teeth of the model were restrained. These restraints acted against the loading of the masticatory forces which consisted of a pair of masseter, temporal, and also the lateral and medial pterygoid muscles. The stress distributions analyzed by 3D-FEM were graphically demonstrated on a three dimensional display system. The data obtained were summarized as follows: I. Neutroclusion (1) Tensile stress appeared along the anterior border of the ramus, and compressive stress appeared along the angular portion of the ramus. (2) Compressive and tensile stress appeared on the external and the internal surfaces of the anterior portion of the mandibular body. II. Distoclusion and mesioclusion (1) As the position of the mandible was moved distally, the absolute values of the stress tended to increase on the same areas which is the external and the internal surfaces of the anterior portion of the mandibular body. (2) Compressive stress which appeared on the occlusal surfaces of the posterior teeth was very great in distoclusion. At the same time, the stress that appeared on the heads of the mandibular condyle was also great in mesioclusion. III. Right laterally shifted occlusion (1) Tensile stress appeared along the left sides of both of the left and right rami, and compressive stress appeared along the right side of both of the left and right rami. (2) A great amount of stress appeared on the left occlusal surfaces of the posterior teeth and on the left portion of the mandibular body. From these results, it was determined probably that the mandibular morphogenesis was influenced by a series of stress factors which were induced by the forces of the masticatory muscles.

[咬合力在下颌不同水平位置引起的应力分布]。
本研究的目的是研究在不同水平位置的下颌咬合力引起的应力分布,包括中咬合、散合、中咬合和侧移咬合。采用三维有限元法(3D-FEM)建立了模拟下颌骨均质、各向同性、弹性体的人工模型。该模型分为480个元素,785个节点。模型左、右髁头及后牙咬合面均受到抑制。这些约束作用于咀嚼力的负荷,包括一对咬肌,颞肌,以及翼状肌的外侧和内侧。三维有限元法分析的应力分布在三维显示系统上进行了图形化显示。得到的数据总结如下:1 .中性闭合(1)沿支前缘出现拉应力,沿支角部出现压应力。(2)下颌骨前段的外表面和内表面出现压应力和拉应力。2(1)随着下颌骨的位置向远端移动,在同一区域,即下颌骨前段的外表面和内表面,应力的绝对值有增加的趋势。(2)失合时后牙咬合面出现很大的压应力。同时,中牙合时髁突头部出现的应力也很大。3(1)左右支臂左侧均出现拉应力,左右支臂右侧均出现压应力。(2)后牙左侧咬合面和下颌体左侧出现大量应力。由此推测,下颌骨的形态发生可能受到咀嚼肌力等一系列应激因素的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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