Umemura Y, Ishiko T, Yamauchi T, Kurono M, Mashiko S
Laboratory for Exercise Physiology and Biomechanics, School of Physical Education, Chukyo University, Toyota, Japan.
J Bone Miner Res. 1997 Sep;12(9):1480-5. doi: 10.1359/jbmr.1997.12.9.1480.
The effects of jump training on bone morphological and mechanical properties were investigated in immature bones of female Fischer 344 rats. Five-week-old rats were divided into control or five jump-trained groups comprised of 5-, 10-, 20-, 40-, and 100-jump groups, representing the number of jumps per day. The rats were jump-trained 5 days/week for 8 weeks, and the height of jump was increased to 40 cm progressively. The femur and tibia in the 5-jump group had significantly greater fat-free dry weights per body weight and maximum loads at the fracture tests than those in the control group. The tibia in the 5-jump group also had significantly larger cortical area at the cross-sectional analysis. Although a slight tendency toward increase according to the number of jumps per day was observed, there were few differences in bone morphological and mechanical parameters among the 10-, 20-, and 40-jump groups. The present results indicate that a large number of strains per day is not necessary for bone hypertrophy to develop in rats.
在雌性Fischer 344幼鼠的未成熟骨骼中研究了跳跃训练对骨骼形态和力学性能的影响。将5周龄的大鼠分为对照组或五个跳跃训练组,分别为每天跳跃5次、10次、20次、40次和100次的组。大鼠每周进行5天跳跃训练,持续8周,跳跃高度逐渐增加到40厘米。在骨折试验中,5次跳跃组的股骨和胫骨每体重的无脂干重和最大负荷显著高于对照组。在横截面分析中,5次跳跃组的胫骨皮质面积也显著更大。尽管观察到根据每天跳跃次数有轻微的增加趋势,但在10次、20次和40次跳跃组之间,骨骼形态和力学参数几乎没有差异。目前的结果表明,大鼠骨骼肥大的发展并不需要每天大量的应变。