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颞下颌关节盘的区域动态拉伸特性。

Regional dynamic tensile properties of the TMJ disc.

作者信息

Snider G R, Lomakin J, Singh M, Gehrke S H, Detamore M S

机构信息

Department of Chemical and Petroleum Engineering, University of Kansas, 1530 W. 15th St., Room 4132, Lawrence, KS 66045-7609, USA.

出版信息

J Dent Res. 2008 Nov;87(11):1053-7. doi: 10.1177/154405910808701112.

Abstract

Although the TMJ disc has been well-characterized under tension and compression, dynamic viscoelastic regional and directional variations have heretofore not been investigated. We hypothesized that the intermediate zone under mediolateral tension would exhibit lower dynamic moduli compared with the other regions of the disc under either mediolateral or anteroposterior tension. Specimens were prepared from porcine discs (3 regions/direction), and dynamic tensile sweeps were performed at 1% strain over a frequency range of 0.1 to 100 rad/sec. Generally, the intermediate zone possessed the lowest storage and loss moduli, and the highest loss tangent. This study further accentuates the known distinct character of the intermediate zone by showing for the first time that these differences also extend to dynamic behavior, perhaps implicating the TMJ disc as a structure primarily exposed to predominantly anteroposterior tension via anterior and posterior attachments, with a need for great distension mediolaterally across the intermediate zone.

摘要

尽管颞下颌关节盘在拉伸和压缩状态下已有充分的特征描述,但此前尚未对其动态粘弹性的区域和方向变化进行研究。我们假设,在内外侧张力作用下,关节盘的中间区域与在内外侧或前后向张力作用下的关节盘其他区域相比,其动态模量会更低。从猪的关节盘(3个区域/方向)制备标本,并在1%应变下于0.1至100弧度/秒的频率范围内进行动态拉伸扫描。一般来说,中间区域具有最低的储能模量和损耗模量,以及最高的损耗角正切。本研究首次表明这些差异也延伸至动态行为,进一步突显了中间区域已知的独特特性,这可能意味着颞下颌关节盘是一个主要通过前后附着而主要承受前后向张力的结构,需要在中间区域进行较大程度的内外侧扩张。

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