J. Crayton Pruitt Family Department of Biomedical Engineering, University of Florida, Gainesville, FL 32611-6131, USA.
J Dent Res. 2013 Feb;92(2):193-8. doi: 10.1177/0022034512468749. Epub 2012 Nov 19.
The temporomandibular joint (TMJ) is a complex hinge and gliding joint that induces significant shear loads onto the fibrocartilage TMJ disc during jaw motion. The purpose of this study was to assess regional variation in the disc's shear loading characteristics under physiologically relevant loads and to associate those mechanical findings with common clinical observations of disc fatigue and damage. Porcine TMJ discs were compressed between an axially translating bottom platen and a 2.5-cm-diameter indenter within a hydrated testing chamber. Discs were cyclically sheared at 0.5, 1, or 5 Hz to 1, 3, or 5% shear strain. Within the anterior and intermediate regions of the disc when sheared in the anteroposterior direction, both shear and compressive moduli experienced a significant decrease from instantaneous to steady state, while the posterior region's compressive modulus decreased approximately 5%, and no significant loss of shear modulus was noted. All regions retained their shear modulus within 0.5% of instantaneous values when shear was applied in the mediolateral direction. The results of the disc's regional shear mechanics suggest an observable and predictable link with the common clinical observation that the posterior region of the disc is most often the zone in which fatigue occurs, which may lead to disc damage and perforation.
颞下颌关节(TMJ)是一个复杂的铰链和滑动关节,在颌骨运动过程中会使纤维软骨 TMJ 盘承受显著的剪切载荷。本研究的目的是评估在生理相关载荷下盘的剪切加载特性的区域变化,并将这些力学发现与盘疲劳和损伤的常见临床观察联系起来。猪 TMJ 盘在水合测试室中的轴向平移下压板和 2.5 厘米直径的压头之间被压缩。盘以 0.5、1 或 5 Hz 的频率在 1、3 或 5%的剪切应变量下循环剪切。在前部和中部区域,当沿前后方向剪切时,剪切和压缩模量都从瞬时状态显著下降到稳定状态,而后部区域的压缩模量下降了约 5%,且剪切模量没有明显损失。当沿中外侧方向施加剪切时,所有区域的剪切模量都保持在瞬时值的 0.5%以内。盘的区域剪切力学的结果表明,与常见的临床观察存在明显的可观察和可预测的联系,即盘的后部区域通常是发生疲劳的区域,这可能导致盘损伤和穿孔。