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牛颞下颌关节盘随年龄的生物力学行为

Biomechanical behaviour of bovine temporomandibular articular discs with age.

作者信息

Tanaka E, Tanaka M, Hattori Y, Aoyama J, Watanabe M, Sasaki A, Sugiyama M, Tanne K

机构信息

Department of Orthodontics, Hiroshima University Faculty of Dentistry, 1-2-3 Kasumi, Minami-ku, 734-8553, Hiroshima, Japan.

出版信息

Arch Oral Biol. 2001 Nov;46(11):997-1003. doi: 10.1016/s0003-9969(01)00072-3.

Abstract

The purpose was to evaluate age-associated changes in the creep and restoration properties of bovine temporomandibular joint (TMJ) discs under and after sustained tensile stress. Forty discs were obtained from 7- and 10-year-old cattle, referred to as the adult and mature adult groups, respectively. Tension of 1.0 MPa was applied and sustained for 20 min to specimens from ten right discs and of 1.5 MPa to specimens from ten left discs. After the period of tension for the study of creep, the specimens were removed from the tension devices and their restoration observed for 20 min. For comparative purposes the relevant results for a young adult group were recruited from data on 3-year-old bovine TMJ discs reported in a previous study on viscoelastic properties. In all the specimens the time-dependent creep curves showed a marked change in strain during the initial 5 s, but the elastic moduli at the onset of stress were significantly larger in the mature adult group than in the other groups. After 20-min creep, the strains were decreased in relation to the age of the specimen and were significantly smaller in the mature adult than in the young adult. With regard to regional differences, the medial specimens exhibited significantly smaller strains than the central ones in all three age groups. Furthermore, the residual strains after 20-min restoration also decreased slightly with age. It is concluded that the bovine TMJ disc becomes stiff and acquires the capacity to recover from continuous deformation during growth and maturation. These findings suggest that the TMJ disc can modify its viscoelasticity in order to withstand extrinsic functional stresses.

摘要

目的是评估持续拉伸应力作用下及之后牛颞下颌关节(TMJ)盘的蠕变和恢复特性随年龄的变化。从7岁和10岁的牛身上获取了40个关节盘,分别称为成年组和成熟成年组。对来自十个右侧关节盘的标本施加1.0 MPa的张力并持续20分钟,对来自十个左侧关节盘的标本施加1.5 MPa的张力。在进行蠕变研究的张力作用期后,将标本从张力装置上取下并观察其恢复情况20分钟。为了进行比较,从先前一项关于粘弹性特性的研究中报道的3岁牛TMJ盘的数据中获取了年轻成年组的相关结果。在所有标本中,随时间变化的蠕变曲线在最初5秒内应变有明显变化,但成熟成年组在应力开始时的弹性模量明显大于其他组。经过20分钟的蠕变后,应变随标本年龄的增加而减小,成熟成年组的应变明显小于年轻成年组。关于区域差异,在所有三个年龄组中,内侧标本的应变均明显小于中央标本。此外,20分钟恢复后的残余应变也随年龄略有下降。结论是,牛TMJ盘在生长和成熟过程中会变硬并获得从持续变形中恢复的能力。这些发现表明,TMJ盘可以改变其粘弹性以承受外部功能应力。

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