Tanaka E, Hanaoka K, van Eijden T, Tanaka M, Watanabe M, Nishi M, Kawai N, Murata H, Hamada T, Tanne K
Department of Orthodontics and Craniofacial Developmental Biology, Hiroshima University Graduate School of Biomedical Sciences, 1-2-3 Kasumi, Minami-ku, Hiroshima 734-8553, Japan.
J Dent Res. 2003 Mar;82(3):228-31. doi: 10.1177/154405910308200315.
Shear stress might be an important factor associated with fatigue failure and damage of the temporomandibular joint disc. Little information, however, is available on the dynamic behavior of the disc in shear. Since the disc is an anisotropic and viscoelastic structure, in the present study the dependency of the dynamic shear behavior on the direction and frequency of loading was examined. Ten porcine discs were used for dynamic shear tests. Shear stress was applied in both anteroposterior (A-P test) and mediolateral (M-L test) directions. The dynamic moduli increased as the loading frequency increased. The dynamic elasticity was significantly larger in the A-P test than in the M-L test, although the dynamic viscosity was similar in both tests. The present results suggest that non-linearities, compression/shear coupling, and intrinsic viscoelasticity affect the shear material behavior of the disc, which might have important implications for the transmission of load in the temporomandibular joint.
剪切应力可能是与颞下颌关节盘疲劳失效和损伤相关的一个重要因素。然而,关于关节盘在剪切力作用下的动态行为的信息却很少。由于关节盘是一种各向异性的粘弹性结构,在本研究中,研究了动态剪切行为对加载方向和频率的依赖性。使用10个猪关节盘进行动态剪切试验。分别在前后方向(A-P试验)和内外侧方向(M-L试验)施加剪切应力。动态模量随加载频率的增加而增大。尽管在两个试验中动态粘度相似,但A-P试验中的动态弹性明显大于M-L试验。目前的结果表明,非线性、压缩/剪切耦合和固有粘弹性会影响关节盘的剪切材料行为,这可能对颞下颌关节中的载荷传递具有重要意义。