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Finite element analysis of stress distribution of obturator prostheses for acquired unilateral maxillary defects

机译:闭孔假体应力分布的有限元分析,以便单侧上颌缺损

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Objective To assess stresses produced by different obturator prostheses. Methods Three-dimensional finite element models of unilateral maxillary defects rehabilitated with different obturators were constructed. The different stresses were analyzed by three-dimensional finite element method under different load angle. Results The Von Mises stress values obtained for the remaining tissues adjacent to defect cavity were higher when rehabilitated by inferior hollow obturator in comparison with by superior hollow obturator. The maximum of Von Mises were higher when rehabilitated by resilient hollow obturator than by rigid hollow obturator. It was also observed that in the rigid type stress distribution contours formed in the remaining tissues adjacent to defect cavity, while in resilient hollow obturator prostheses the stress distributed mainly in the prosthesis itself. The oblique load shows the most maximum of Von Mises among all types of obturator prostheses. Conclusions A high lateral wall of an obturator may be more better in preserving the remaining structures than a shorter prosthesis lateral wall. A soft liner may be incorporated to reduce the pain of the residual maxillary structures and mucosa. When load on defect, higher stress would be generated to the residual maxillary structures. The adjustment of occlusual relationship is very important.
机译:目的评估不同闭合剂假体产生的应力。方法构建了用不同闭合剂恢复的单侧上颌缺陷的三维有限元模型。通过在不同载荷角下的三维有限元法分析不同的应力。结果与较差的空心闭孔器恢复相邻的缺陷腔附近的剩余组织所获得的von误判压力值较高。当由弹性空心闭孔器恢复而不是通过刚性空心闭孔器来恢复时,vonmmes的最大值更高。还观察到,在与缺陷腔相邻的剩余组织中形成的刚性型应力分布轮廓中,而在弹性空心闭塞器中,该应力主要在假体本身中分布。倾斜负荷显示所有类型的闭孔假体中最多的von误差。结论闭合剂的高侧壁可以更好地保留比较短的假期侧壁的剩余结构。可以掺入软衬里以减少残留上颌结构和粘膜的疼痛。当对缺陷的负载时,将产生更高的压力,以剩余的上颌结构产生。调整闭塞关系非常重要。

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