Ingawalé Shirish, Goswami Tarun
Department of Biomedical, Industrial and Human Factors Engineering, Wright State University, 3640, Col. Glenn Hwy, Dayton, OH 45435, USA.
Ann Biomed Eng. 2009 May;37(5):976-96. doi: 10.1007/s10439-009-9659-4. Epub 2009 Feb 28.
Temporomandibular joint (TMJ) is a complex, sensitive, and highly mobile joint. Millions of people suffer from temporomandibular disorders (TMD) in USA alone. The TMD treatment options need to be looked at more fully to assess possible improvement of the available options and introduction of novel techniques. As reconstruction with either partial or total joint prosthesis is the potential treatment option in certain TMD conditions, it is essential to study outcomes of the FDA approved TMJ implants in a controlled comparative manner. Evaluating the kinetics and kinematics of the TMJ enables the understanding of structure and function of normal and diseased TMJ to predict changes due to alterations, and to propose more efficient methods of treatment. Although many researchers have conducted biomechanical analysis of the TMJ, many of the methods have certain limitations. Therefore, a more comprehensive analysis is necessary for better understanding of different movements and resulting forces and stresses in the joint components. This article provides the results of a state-of-the-art investigation of the TMJ anatomy, TMD, treatment options, a review of the FDA approved TMJ prosthetic devices, and the TMJ biomechanics.
颞下颌关节(TMJ)是一个复杂、敏感且活动度很高的关节。仅在美国,就有数百万人患有颞下颌关节紊乱病(TMD)。需要更全面地审视TMD的治疗方案,以评估现有方案可能的改进情况并引入新技术。由于在某些TMD病例中,使用部分或全关节假体进行重建是一种潜在的治疗选择,因此以对照比较的方式研究美国食品药品监督管理局(FDA)批准的TMJ植入物的效果至关重要。评估TMJ的动力学和运动学能够了解正常和患病TMJ的结构与功能,预测因改变而产生的变化,并提出更有效的治疗方法。尽管许多研究人员对TMJ进行了生物力学分析,但其中许多方法存在一定局限性。因此,有必要进行更全面的分析,以便更好地理解关节各组成部分的不同运动以及由此产生的力和应力。本文提供了对TMJ解剖结构、TMD、治疗方案、FDA批准的TMJ假体装置的综述以及TMJ生物力学的最新研究结果。