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The Role of Mechanical Stimulation in Recovery of Bone Loss—High versus Low Magnitude and Frequency of Force

机译:机械刺激在骨丢失恢复中的作用-高低幅值和力量频率

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摘要

Musculoskeletal pathologies associated with decreased bone mass, including osteoporosis and disuse-induced bone loss, affect millions of Americans annually. Microgravity-induced bone loss presents a similar concern for astronauts during space missions. Many pharmaceutical treatments have slowed osteoporosis, and recent data shows promise for countermeasures for bone loss observed in astronauts. Additionally, high magnitude and low frequency impact such as running has been recognized to increase bone and muscle mass under normal but not microgravity conditions. However, a low magnitude and high frequency (LMHF) mechanical load experienced in activities such as postural control, has also been shown to be anabolic to bone. While several clinical trials have demonstrated that LMHF mechanical loading normalizes bone loss in vivo, the target tissues and cells of the mechanical load and underlying mechanisms mediating the responses are unknown. In this review, we provide an overview of bone adaptation under a variety of loading profiles and the potential for a low magnitude loading as a way to counteract bone loss as experienced by astronauts.
机译:与骨量减少相关的肌肉骨骼病理,包括骨质疏松症和滥用引起的骨质流失,每年影响数百万美国人。微重力引起的骨质流失在太空飞行中引起了宇航员的类似关注。许多药物治疗已经减缓了骨质疏松症,最近的数据表明有望采取对策来减轻宇航员中的骨质流失。另外,在正常情况下,但在微重力条件下,跑步等高强度和低频冲击会增加骨骼和肌肉质量。但是,在姿势控制等活动中所经历的低强度和高频(LMHF)机械负载也已显示出对骨骼合成代谢没有作用。尽管一些临床试验已经证明,LMHF机械负荷可以使体内骨丢失正常化,但机械负荷的目标组织和细胞以及介导这种反应的潜在机制尚不清楚。在这篇综述中,我们概述了在各种负荷情况下的骨骼适应性,以及低强度负荷的潜力,以此来抵消宇航员所经历的骨质流失。

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