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Numerical model proposed for a temporomandibular joint prosthesis based on the recovery of the healthy movement

机译:基于健康运动恢复的颞下颌关节假体的数值模型

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摘要

The temporomandibular joint (TMJ) is an anatomical set of the buco-maxillary system that allows the movement of the mandible in most varied ways. Several factors can influence the malfunctioning of the joint and lead to the use of a total prosthesis. However, current prostheses do not supply the maximum amplitude of movement during protrusion and opening, due to mainly the anatomical differences between patients. For this reason, this article aims to study the patient's kinematic characteristics for a better comprehension of the problem and, consequently, to develop a numerical model for TMJ prostheses able to recover the healthy movement. The numerical model is based on the development of a mechanical joint whose profile is able to reproduce the movement of the health system. The results obtained through the developed model showed a good agreement with the experimental results, representing, therefore, a promising alternative to approach the problems related to TMJ.
机译:颞下颌关节(TMJ)是上颌颊系统的解剖结构,允许下颌骨以多种方式运动。几个因素会影响关节的功能失常并导致使用整个假体。然而,主要由于患者之间的解剖学差异,当前的假体不能在突出和张开期间提供最大的运动幅度。因此,本文旨在研究患者的运动学特征,以更好地理解问题,并因此为能够恢复健康运动的TMJ假体开发数值模型。数值模型基于机械接头的开发,该机械接头的轮廓能够再现卫生系统的运动。通过开发的模型获得的结果与实验结果显示出很好的一致性,因此,它是解决与TMJ有关的问题的有前途的替代方法。

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