Tianjin Key Laboratory for Advanced Mechatronic System Design and Intelligent Control, School of Mechanical Engineering, Tianjin University of Technology, Tianjin, 300382, China.
National Demonstration Center for Experimental Mechanical and Electrical Engineering Education, Tianjin University of Technology, Tianjin, 300382, China.
J Bone Miner Metab. 2024 May;42(3):302-315. doi: 10.1007/s00774-024-01513-7. Epub 2024 May 16.
High + Gz loads, the gravitational forces experienced by the body in hypergravity environments, can lead to bone loss in pilots and astronauts, posing significant health risks.
To explore the effect of treadmill exercise on bone tissue recovery, a study was conducted on 72 male Wistar rats. These rats were subjected to four weeks of varying levels of periodic high + Gz loads (1G, 8G, 20G) experiments, and were subsequently divided into the treadmill group and the control group. The treadmill group underwent a continuous two-week treadmill experiment, while the control group rested during this period. The mechanical properties, microstructure, and molecular markers of their tibial bone tissue were measured using three-point bending, micro-CT, and PCR.
The results showed that treadmill exercise improved the elastic modulus, ultimate deflection, and ultimate load of rat bone tissue. It also increased the number, density, and volume fraction of bone trabeculae, and decreased their separation. Moreover, treadmill exercise enhanced osteogenesis and inhibited osteoclastogenesis.
This study demonstrates that treadmill exercise can promote the recovery of bone tissue in rats subjected to high + Gz loads, providing a potential countermeasure for bone loss in pilots and astronauts.
高+Gz 负荷是指在超重环境中人体所承受的重力,它会导致飞行员和宇航员的骨质流失,带来严重的健康风险。
为了探究跑步机运动对骨组织恢复的影响,本研究对 72 只雄性 Wistar 大鼠进行了实验。这些大鼠经历了为期四周的不同水平周期性高+Gz 负荷(1G、8G、20G)实验,随后分为跑步机组和对照组。跑步机组进行了为期两周的连续跑步机实验,而对照组在此期间休息。使用三点弯曲、微 CT 和 PCR 测量了它们的胫骨骨组织的机械性能、微观结构和分子标记物。
结果表明,跑步机运动改善了大鼠骨组织的弹性模量、极限挠度和极限载荷。它还增加了骨小梁的数量、密度和体积分数,并减少了它们的分离。此外,跑步机运动促进了成骨作用,抑制了破骨作用。
这项研究表明,跑步机运动可以促进高+Gz 负荷下大鼠骨组织的恢复,为飞行员和宇航员的骨质流失提供了一种潜在的对策。