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短期自由落体着陆会导致生长中的大鼠股骨的骨大小和弯曲能量减小。

Short-term free-fall landing causes reduced bone size and bending energy in femora of growing rats.

出版信息

J Sports Sci Med. 2013 Mar 1;12(1):1-9. eCollection 2013.

Abstract

The purpose of this study was to determine the effects of a mechanical loading course (short-term free-fall landing) on femoral geometry and biomechanical properties in growing rats. Thirty-two female Wistar rats (7-week-old) were randomly assigned to three groups: L30 (n = 11), L10 (n = 11) and CON (n = 10) groups. Animals in the L10 and L30 groups were subjected to a 5-day free-fall landing program in which animals were dropped from a height of 40cm 10 and 30 times per day, respectively. Landing ground reaction force (GRF) was measured on the 1(st) and 5(th) days of landing training. All animals were subjected to two fluorescent labeling injections on the days before and after the 5-day landing training. Three days after the last labeling injection, animals were sacrificed under deep anesthesia. Methods of dynamic histomorphometry, tissue geometry and tissue biomechanical measurements were used to investigate the response in femora. A significant decrease in peak GRF in the hind-limb was shown from day 1 to day 5. No significant difference was shown among groups in dynamic histomorphometry. Biomechanical property analyses showed significantly lower maximal energy and post-yield energy in the L10 and L30 groups as compared to the CON group (p < 0.05). Moreover, geometric measurements revealed that cross-sectional cortical areas and thicknesses were significantly lower in landing groups than in the CON group. Short-term (5-day) free-fall landing training resulted in minor compromised long bone tissue, as shown by reduced bending energy and cortical bone area but not in other mechanical properties or tissue measurements (e.g. weights and length) of growing female rats. Further studies would be valuable to investigate whether this compromised bone material represents the existence of a latency period in the adaptation of bone material to external mechanical loading. Key pointsShort-term free-fall landing causes compromised bone material as shown by reduced post-yield energy in long bones of rodents.The results of the current study suggest the existence of unsettled bone material after a short-term mechanical loading regime.The connection of the present animal study to the stress fractures occurring in young athletes needs to be clarified.

摘要

本研究旨在确定机械加载过程(短期自由落体着陆)对生长大鼠股骨几何形状和生物力学特性的影响。32 只雌性 Wistar 大鼠(7 周龄)被随机分为三组:L30 组(n = 11)、L10 组(n = 11)和 CON 组(n = 10)。L10 和 L30 组的动物分别接受为期 5 天的自由落体着陆方案,每天从 40cm 高处跳下 10 和 30 次。在着陆训练的第 1 天和第 5 天测量着陆地面反作用力(GRF)。所有动物在 5 天着陆训练前后的两天进行两次荧光标记注射。最后一次标记注射后 3 天,动物在深度麻醉下被处死。使用动态组织形态计量学、组织几何形状和组织生物力学测量方法来研究股骨的反应。从第 1 天到第 5 天,后肢的峰值 GRF 显著下降。在动态组织形态计量学方面,各组之间没有差异。生物力学特性分析表明,与 CON 组相比,L10 和 L30 组的最大能量和屈服后能量显著降低(p < 0.05)。此外,几何测量显示,着陆组的横截面积和厚度明显低于 CON 组。短期(5 天)自由落体着陆训练导致未成年大鼠长骨组织受损,表现为弯曲能量和皮质骨面积降低,但其他力学性能或组织测量(如体重和长度)不受影响。进一步的研究将有助于确定这种受损的骨材料是否代表骨材料对外部机械加载的适应存在潜伏期。关键点短期自由落体着陆导致啮齿动物长骨的屈服后能量降低,从而导致骨材料受损。本研究结果表明,短期机械加载后骨材料存在未解决的问题。需要阐明目前动物研究与年轻运动员应力性骨折之间的联系。

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