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High Impact Exercise Improves Bone Microstructure and Strength in Growing Rats

机译:高冲击运动可改善成年大鼠的骨微结构和强度

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摘要

Physical activity is beneficial for skeletal development. However, impact sports during adolescence, leading to bone growth retardation and/or bone quality improvement, remains unexplained. This study investigated the effects of in vivo low (LI), medium (MI), and high (HI) impact loadings applied during puberty on bone growth, morphometry and biomechanics using a rat model. 4-week old rats (n = 30) were divided into control, sham, LI, MI, and HI groups. The impact was applied on the right tibiae, 5 days/week for 8 weeks mimicking walking (450 µε), uphill running (850 µε) and jumping (1250 µε) conditions. Trabecular and cortical parameters were determined by micro-CT, bone growth rate by calcein labeling and toluidine blue staining followed by histomorphometry. Bio-mechanical properties were evaluated from bending tests. HI group reduced rat body weight and food consumption compared to shams. Bone growth rate also decreased in MI and HI groups despite developing thicker hypertrophic and proliferative zone heights. HI group showed significant increment in bone mineral density, trabecular thickness, cortical and total surface area. Ultimate load and stiffness were also increased in MI and HI groups. We conclude that impact loading during adolescence reduces bone growth moderately but improves bone quality and biomechanics at the end of the growing period.
机译:体育锻炼对骨骼发育有益。然而,尚无法解释导致青春期的撞击运动导致骨骼生长迟缓和/或骨骼质量改善的情况。这项研究使用大鼠模型研究了青春期施加的体内低(LI),中(MI)和高(HI)冲击负荷对骨骼生长,形态和生物力学的影响。将4周龄的大鼠(n = 30)分为对照组,假组,LI,MI和HI组。在右侧胫骨上施加冲击,每周5天,连续8周,模仿步行(450 µε),上坡跑步(850 µε)和跳跃(1250 µε)的状况。通过微CT确定骨小梁和皮层参数,通过钙黄绿素标记和甲苯胺蓝染色,然后用组织形态测定法测定骨生长速率。通过弯曲试验评估生物力学性能。与sha相比,HI组减少了老鼠的体重和食物消耗。尽管肥大和增生区高度增高,MI和HI组的骨生长速率也降低了。 HI组的骨矿物质密度,小梁厚度,皮质和总表面积显着增加。 MI和HI组的极限负荷和刚度也增加了。我们得出的结论是,青春期的冲击负荷会适度降低骨骼生长,但在生长期结束时会改善骨骼质量和生物力学。

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