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应力遮挡对兔髌腱横向力学性能的影响。

Effects of stress shielding on the transverse mechanical properties of rabbit patellar tendons.

作者信息

Yamamoto E, Hayashi K, Yamamoto N

机构信息

Laboratory on Mechanical Behavior of Materials, Department of Mechanical Engineering, School of Biology-Oriented Science and Technology, Kinki University, Naga, Wakayama 649-6493, Japan.

出版信息

J Biomech Eng. 2000 Dec;122(6):608-14. doi: 10.1115/1.1319660.

Abstract

With the aim of studying mechanisms of the remodeling of tendons and ligaments, the effects of stress shielding on the rabbit patellar tendon were studied by performing tensile and stress relaxation tests in the transverse direction. The tangent modulus, tensile strength, and strain at failure of non-treated, control patellar tendons in the transverse direction were 1272 kPa, 370 kPa, and 40.5 percent, respectively, whereas those of the tendons stress-shielded for 1 week were 299 kPa, 108 kPa, and 40.4 percent, respectively. Stress shielding markedly decreased tangent modulus and tensile strength in the transverse direction, and the decreases were larger than those in the longitudinal direction, which were determined in our previous study. For example, tensile strength in the transverse and longitudinal direction decreased to 29 and 50 percent of each control value, respectively, after 1 week stress shielding. In addition, the stress relaxation in the transverse direction of stress-shielded patellar tendons was much larger than that of nontreated, control ones. In contrast to longitudinal tensile tests for the behavior of collagen, transverse tests reflect the contributions of ground substances such as proteoglycans and mechanical interactions between collagen fibers. Ground substances provide lubrication and spacing between fibers, and also confer viscoelastic properties. Therefore, the results obtained from the present study suggest that ground substance matrix, and interfiber and fiber-matrix interactions have important roles in the remodeling response of tendons to stress.

摘要

为了研究肌腱和韧带重塑的机制,通过在横向方向上进行拉伸和应力松弛试验,研究了应力屏蔽对兔髌腱的影响。未处理的对照髌腱在横向方向上的切线模量、拉伸强度和断裂应变分别为1272kPa、370kPa和40.5%,而应力屏蔽1周的肌腱的切线模量、拉伸强度和断裂应变分别为299kPa、108kPa和40.4%。应力屏蔽显著降低了横向方向上的切线模量和拉伸强度,且降低幅度大于我们先前研究中确定的纵向方向上的降低幅度。例如,在应力屏蔽1周后,横向和纵向方向上的拉伸强度分别降至各自对照值的29%和50%。此外,应力屏蔽的髌腱在横向方向上的应力松弛比未处理的对照髌腱大得多。与用于研究胶原蛋白行为的纵向拉伸试验不同,横向试验反映了蛋白聚糖等基质物质的作用以及胶原纤维之间的机械相互作用。基质物质在纤维之间提供润滑和间距,还赋予粘弹性。因此,本研究获得的结果表明,基质物质基质以及纤维间和纤维-基质相互作用在肌腱对应力的重塑反应中具有重要作用。

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