Walker P, Amstutz H C, Rubinfeld M
J Biomed Mater Res. 1976 Jan;10(1):61-76. doi: 10.1002/jbm.820100107.
Some of the mechanical properties of regrown canine tendons are compared to those of normal tendons of young and mature animals. Patellar and Achilles tendons from 12 beagle dogs were removed and studied with their bone origin and insertions. Mechanical tests were performed within 24 hr and test conditions simulated the physiological function of the tendon in vivo at room temperature. Specimens were soaked in Ringers solution and mounted in an Instron testing machine with load deflection curves plotted automatically. The parameters used for analysis were load extension, stress relaxation, elastic limit, and strain rate dependence. The regrown tendons in young animals appeared to quickly adjust in dimension and structure so that their properties were not significantly different from those of normal tendons on a load extension basis. The normal tendons were stiffer than regrown ones but the modulus of elasticity increased with age. The Achilles were stiffer than patellar tendons. Cyclic loading with 25 kg did not affect reconstructed tendon models, although some increase in stiffness was noted. The elastic modulus decreased with an increase in ambient temperature and increasing strain rate.
将再生犬肌腱的一些力学性能与幼年和成年动物正常肌腱的力学性能进行了比较。从12只比格犬身上取下髌腱和跟腱,并对其骨起源和附着点进行了研究。在24小时内进行力学测试,测试条件模拟了肌腱在室温下的体内生理功能。将标本浸泡在林格氏液中,并安装在英斯特朗测试机上,自动绘制载荷-挠度曲线。用于分析的参数有载荷伸长、应力松弛、弹性极限和应变率依赖性。幼年动物的再生肌腱似乎能迅速在尺寸和结构上进行调整,因此在载荷伸长基础上,其性能与正常肌腱没有显著差异。正常肌腱比再生肌腱更硬,但弹性模量随年龄增长而增加。跟腱比髌腱更硬。25千克的循环加载并未影响重建的肌腱模型,不过注意到刚度有一些增加。弹性模量随环境温度升高和应变率增加而降低。