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The Importance of Impact Loading and the Stretch Shortening Cycle for Spaceflight Countermeasures

机译:航天载荷对策中冲击载荷和拉伸缩短周期的重要性

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摘要

Pronounced muscle and bone losses indicate that the musculoskeletal system suffers substantially from prolonged microgravity. A likely reason for these detrimental adaptations in the lower extremity is the lack of impact loading and the difficulty to apply large loading forces on the human body in microgravity. The human body is well adapted to ambulating in Earth’s gravitational field. A key principle herein is the periodic conversion of kinetic to elastic energy and vice versa. Predominantly tendons and to a lesser extent muscles, bones and other tissues contribute to this storage and release of energy, which is most efficient when organized in the stretch-shortening cycle (SSC). During SSC, muscles, especially those encompassing the ankle, knee, and hip joints, are activated in a specific manner, thereby enabling the production of high muscle forces and elastic energy storage. In consequence, the high forces acting throughout the body deform the viscoelastic biological structures sensed by mechanoreceptors and feedback in order to regulate the resilience of these structures and keep strains and strain rates in an uncritical range. Recent results from our lab indicate, notably, that SSC can engender a magnitude of tissue strains that cannot be achieved by other types of exercise. The present review provides an overview of the physiology and mechanics of the natural SSC as well as the possibility to mimic it by the application of whole-body vibration. We then report the evidence from bed rest studies on effectiveness and efficiency of plyometric and resistive vibration exercise as a countermeasure. Finally, implications and applications of both training modalities for human spaceflight operations and terrestrial spin-offs are discussed.
机译:明显的肌肉和骨骼损失表明,肌肉骨骼系统严重受微重力的影响。下肢这些不利适应的可能原因是缺乏冲击负荷,并且难以在微重力下对人体施加较大的负荷力。人体非常适合在地球的重力场中行走。这里的关键原理是动能到弹性能的周期性转换,反之亦然。主要是肌腱,而肌肉,骨骼和其他组织在较小程度上有助于这种能量的存储和释放,而这种能量在以缩短-缩短周期(SSC)进行组织时最有效。在SSC期间,肌肉(特别是那些踝,膝和髋关节周围的肌肉)以特定的方式被激活,从而能够产生高的肌肉力量和弹性能量。因此,作用于全身的高力会使机械感受器和反馈感知的粘弹性生物结构变形,从而调节这些结构的弹性并将应变和应变率保持在非临界范围内。我们实验室的最新研究结果表明,特别是SSC可以引起其他类型的运动无法达到的组织应变。本综述概述了天然SSC的生理和力学,以及通过应用全身振动来模拟它的可能性。然后,我们将从卧床休息研究中得出的证据作为对策,将强度测量和阻力振动锻炼的有效性和效率作为对策。最后,讨论了两种训练方式对人类太空飞行和地面衍生活动的影响和应用。

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