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Effect of clenching on biomechanical response of human mandible and temporomandibular joint to traumatic force analyzed by finite element method

机译:咬合对人下颌骨和颞下颌关节对外力的生物力学响应的有限元分析

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摘要

Purpose: The purpose of the present study was to analyze the effect of clenching on the biomechanical response ofhuman mandible and temporomandibular joint (TMJ) to traumatic force by the finite element (FE) method.Material and Methods: FE models of the mandible and the TMJ in resting and clenching positions were prepared.Distribution and magnitude of von Mises stress were analyzed by applying force as a point load in the symphyseal,canine, body and angle regions of the mandible. In addition, strain energy density (SED) at the articular disc andin posterior connective tissue of TMJ was analyzed.Results: In the resting position, von Mises stress was mainly concentrated at the condylar neck and in the retromolar region of the mandible. In the clenching position, the stress at the condylar neck decreased in all loadings.The stress in the retromolar region similary decreased in the symphyseal, canine and body loading, respectively;however, higher stress was observed in the retromolar region on the loading side in the angle loading. High SEDwas generated at the articular disc and in posterior connective tissues of TMJ in the resting position. The SED inthese tissues decreased in all loadings in the clenching position.Conclusions: Clenching generally reduces stress at the condylar neck and in the retromolar region of the mandible, andstrain energy at the articular disc and in posterior connective tissue of TMJ by traumatic forces on the mandible; however,clenching induces greater stress in the retromolar region on the loading side by traumatic force to the angle region.
机译:目的:本研究的目的是通过有限元(FE)方法分析咬合对人下颌骨和颞下颌关节(TMJ)对外伤力的生物力学反应的影响。材料与方法:下颌骨和下颌骨的有限元模型通过在下颌骨的共骨,犬,体和角区域施加力作为点载荷,分析了冯·米塞斯应力的分布和大小。结果:在静息位置,von Mises应力主要集中在下颌骨的con突颈部和后磨牙区域。在紧握位置,all突颈部的应力在所有载荷下均降低;在后牙区的应力在in骨,犬和人体载荷下分别降低;然而,在负重区的后牙区的应力更高。角度加载。在静息状态下,TMJ的关节盘和后结缔组织中产生高SED。结论:握紧一般可减少dy突颈部和下颌后磨牙区域的应力,并通过外伤力对TMJ的关节盘和后结缔组织施加能量下颌骨然而,开裂在加载侧的后磨牙区域中通过对角区域的外力引起更大的应力。

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