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胶原纤维直径分布不能反映体外应力剥夺肌腱力学性能的变化。

Collagen fibril diameter distribution does not reflect changes in the mechanical properties of in vitro stress-deprived tendons.

作者信息

Lavagnino Michael, Arnoczky S P Steven P, Frank Katherine, Tian Tao

机构信息

Laboratory for Comparative Orthopaedic Research, College of Veterinary Medicine, Michigan State University, East Lansing, MI 48824, USA.

出版信息

J Biomech. 2005 Jan;38(1):69-75. doi: 10.1016/j.jbiomech.2004.03.035.

Abstract

The purpose of this study was to determine if an association exists between the tensile properties and the collagen fibril diameter distribution in in vitro stress-deprived rat tail tendons. Rat tail tendons were paired into two groups of 21 day stress-deprived and 0 time controls and compared using transmission electron microscopy (n = 6) to measure collagen fibril diameter distribution and density, and mechanical testing (n =6) to determine ultimate stress and tensile modulus. There was a statistically significant decrease in both ultimate tensile strength (control: 17.95+/-3.99 MPa, stress-deprived: 6.79+/-3.91 MPa) and tensile modulus (control: 312.8+/-89.5 MPa, stress-deprived: 176.0+/-52.7 MPa) in the in vitro stress-deprived tendons compared to controls. However, there was no significant difference between control and stress-deprived tendons in the number of fibrils per tendon counted, mean fibril diameter, mean fibril density, or fibril size distribution. The results of this study demonstrate that the decrease in mechanical properties observed in in vitro stress-deprived rat tail tendons is not correlated with the collagen fibril diameter distribution and, therefore, the collagen fibril diameter distribution does not, by itself, dictate the decrease in mechanical properties observed in in vitro stress-deprived rat tail tendons.

摘要

本研究的目的是确定体外失应力大鼠尾腱的拉伸性能与胶原纤维直径分布之间是否存在关联。将大鼠尾腱配对分为两组,一组为21天失应力组,另一组为0时间对照组,使用透射电子显微镜(n = 6)测量胶原纤维直径分布和密度,并进行力学测试(n = 6)以确定极限应力和拉伸模量。与对照组相比,体外失应力腱的极限拉伸强度(对照组:17.95±3.99 MPa,失应力组:6.79±3.91 MPa)和拉伸模量(对照组:312.8±89.5 MPa,失应力组:176.0±52.7 MPa)均有统计学意义的降低。然而,对照组和失应力组在每条腱计数的纤维数量、平均纤维直径、平均纤维密度或纤维尺寸分布方面没有显著差异。本研究结果表明,体外失应力大鼠尾腱中观察到的力学性能下降与胶原纤维直径分布无关,因此,胶原纤维直径分布本身并不能决定体外失应力大鼠尾腱中观察到的力学性能下降。

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