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Modifying the biomechanical response of mouthguards with hard inserts: A finite element study

机译:修改带有硬质插入物的护齿器的生物力学响应:有限元研究

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Purpose: To investigate the influence of a high elastic modulus material insert on the stress, shock absorption and displacement of mouthguards. Methods: Finite element models of a human maxillary central incisor with and without mouthguard were created based on cross-sectional CT-tomography. The mouthguard models had four designs: without insert, and middle, external, or palatal hard insert. The hard inserts had a relatively high elastic modulus when compared to the elastic modulus of ethylene vinyl acetate (EVA): 15 GPa versus 18 MPa. A non-linear dynamic impact analysis was performed in which a heavy rigid object hit the model at 1 m/s. Strain and stress (von Mises and critical modified von Mises) distributions and shock absorption during impact were calculated as well as the mouthguard displacement. Results: The model without mouthguard had the highest stress values at the enamel and dentin structures in the tooth crown during the impact. It was concluded that the use of a mouthguard promoted lower stress and strain values in the teeth during impact. Hard insertion in the middle and palatal side of the mouthguard improved biomechanical response by lowering stress and strain on the teeth and lowering mouthguard displacement.
机译:目的:研究高弹性模量材料插入物对护齿套的应力,减震和位移的影响。方法:基于断层CT断层扫描,建立了带有或不带有护齿器的上颌中切牙的有限元模型。护齿器模型有四种设计:无插入物,以及中间,外部或,硬插入物。与乙烯乙酸乙烯酯(EVA)的弹性模量相比,硬质插入物具有相对较高的弹性模量:15 GPa对18 MPa。进行了非线性动态冲击分析,其中重的刚性物体以1 m / s的速度撞击模型。计算了冲击过程中的应变和应力(von Mises和临界改性的von Mises)分布和减震,以及护齿板位移。结果:没有护齿的模型在撞击过程中在牙冠的牙釉质和牙本质结构上具有最高的应力值。结论是,在冲击过程中使用护齿可降低牙齿的应力和应变值。通过降低牙齿上的应力和应变并降低护齿套的位移,在护齿套的中间和pa侧硬性插入可改善生物力学反应。

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