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航天生理学 VI:长时间航天飞行的运动、人工重力和对策开发。

Space physiology VI: exercise, artificial gravity, and countermeasure development for prolonged space flight.

机构信息

Department of Orthopedic Surgery, University of California San Diego, San Diego, CA 92103-8894, USA.

出版信息

Eur J Appl Physiol. 2013 Sep;113(9):2183-92. doi: 10.1007/s00421-012-2523-5. Epub 2012 Oct 19.

Abstract

When applied individually, exercise countermeasures employed to date do not fully protect the cardiovascular and musculoskeletal systems during prolonged spaceflight. Recent ground-based research suggests that it is necessary to perform exercise countermeasures within some form of artificial gravity to prevent microgravity deconditioning. In this regard, it is important to provide normal foot-ward loading and intravascular hydrostatic-pressure gradients to maintain musculoskeletal and cardiovascular function. Aerobic exercise within a centrifuge restores cardiovascular function, while aerobic exercise within lower body negative pressure restores cardiovascular function and helps protect the musculoskeletal system. Resistive exercise with vibration stimulation may increase the effectiveness of resistive exercise by preserving muscle function, allowing lower intensity exercises, and possibly reducing risk of loss of vision during prolonged spaceflight. Inexpensive methods to induce artificial gravity alone (to counteract head-ward fluid shifts) and exercise during artificial gravity (for example, by short-arm centrifuge or exercise within lower body negative pressure) should be developed further and evaluated as multi-system countermeasures.

摘要

当单独应用时,迄今为止采用的运动对策并不能在长时间的太空飞行中完全保护心血管和肌肉骨骼系统。最近的地面研究表明,有必要在某种形式的人工重力下进行运动对策,以防止微重力导致的适应性下降。在这方面,提供正常的足向加载和血管内静水压力梯度以维持肌肉骨骼和心血管功能非常重要。在离心机内进行有氧运动可恢复心血管功能,而在下肢负压下进行有氧运动可恢复心血管功能并有助于保护肌肉骨骼系统。带有振动刺激的抗阻运动可能通过保持肌肉功能、允许进行低强度运动并可能降低长时间太空飞行中视力丧失的风险来提高抗阻运动的效果。应该进一步开发和评估单独诱导人工重力(以对抗头向流体转移)和在人工重力下运动(例如通过短臂离心机或下肢负压下运动)的廉价方法,作为多系统对策。

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