Yamamoto E, Hayashi K, Yamamoto N
Department of Mechanical Engineering, Faculty of Engineering Science, Osaka University, Japan.
J Biomech Eng. 1999 Feb;121(1):124-31. doi: 10.1115/1.2798033.
Tensile and viscoelastic properties of collagen fascicles of approximately 300 microns in diameter, which were obtained from rabbit patellar tendons, were studied using a newly designed micro-tensile tester. Their cross-sectional areas were determined with a video dimension analyzer combined with a CCD camera and a low magnification microscope. There were no statistically significant differences in tensile properties among the fascicles obtained from six medial-to-lateral locations of the patellar tendon. Tangent modulus, tensile strength, and strain at failure of the fascicles determined at about 1.5 percent/s strain rate were 216 +/- 68 MPa, 17.2 +/- 4.1 MPa, and 10.9 +/- 1.6 percent (mean +/- S.D.), respectively. These properties were much different from those of bulk patellar tendons; for example, the tensile strength and strain at failure of these fascicles were 42 percent and 179 percent of those of bulk tendons, respectively. Tangent modulus and tensile strength of collagen fascicles determined at 1 percent/s strain rate were 35 percent larger than those at 0.01 percent/s. The strain at failure was independent of strain rate. Relaxation tests showed that the reduction of stress was approximately 25 percent at 300 seconds. These stress relaxation behavior and strain rate effects of collagen fascicles differed greatly from those of bulk tendons. The differences in tensile and viscoelastic properties between fascicles and bulk tendons may be attributable to ground substances, mechanical interaction between fascicles, and the difference of crimp structure of collagen fibrils.
使用新设计的微拉伸测试仪,研究了从兔髌腱获取的直径约300微米的胶原纤维束的拉伸和粘弹性特性。使用结合了CCD相机和低倍显微镜的视频尺寸分析仪测定其横截面积。从髌腱内侧到外侧六个位置获取的纤维束之间的拉伸特性没有统计学上的显著差异。在约1.5%/秒应变率下测定的纤维束的切线模量、拉伸强度和断裂应变分别为216±68兆帕、17.2±4.1兆帕和10.9±1.6%(平均值±标准差)。这些特性与整块髌腱的特性有很大不同;例如,这些纤维束的拉伸强度和断裂应变分别是整块肌腱的42%和179%。在1%/秒应变率下测定的胶原纤维束切线模量和拉伸强度比在0.01%/秒时大35%。断裂应变与应变率无关。松弛试验表明,在300秒时应力降低约25%。胶原纤维束的这些应力松弛行为和应变率效应与整块肌腱有很大不同。纤维束和整块肌腱之间拉伸和粘弹性特性的差异可能归因于基质、纤维束之间的机械相互作用以及胶原原纤维卷曲结构的差异。