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Benefits of Motor Imagery for Human Space Flight: A Brief Review of Current Knowledge and Future Applications

机译:汽车影像对人类太空飞行的好处:当前知识和未来应用的简要回顾

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摘要

Motor imagery (MI) is arguably one of the most remarkable capacities of the human mind. There is now strong experimental evidence that MI contributes to substantial improvements in motor learning and performance. The therapeutic benefits of MI in promoting motor recovery among patients with motor impairments have also been reported. Despite promising theoretical and experimental findings, the utility of MI in adapting to unusual conditions, such as weightlessness during space flight, has received far less attention. In this review, we consider how, why, where, and when MI might be used by astronauts, and further evaluate the optimum MI content. Practically, we suggest that MI might be performed before, during, and after exposure to microgravity, respectively, to prepare for the rapid changes in gravitational forces after launch and to reduce the adverse effects of weightlessness exposition. Moreover, MI has potential role in facilitating re-adaptation when returning to Earth after long exposure to microgravity. Suggestions for further research include a focus on the multi-sensory aspects of MI, the requirement to use temporal characteristics as a measurement tool, and to account for the knowledge-base or metacognitive processes underlying optimal MI implementation.
机译:运动图像(MI)可以说是人类心灵最杰出的能力之一。现在有强有力的实验证据表明,MI有助于运动学习和性能的显着改善。还已经报道了MI在促进运动障碍患者中促进运动恢复的治疗益处。尽管有令人鼓舞的理论和实验发现,但MI在适应异常条件(如太空飞行过程中的失重)方面的应用受到的关注很少。在这篇评论中,我们考虑了宇航员如何,为什么,何时何地使用MI,并进一步评估了最佳MI含量。实际上,我们建议MI可能分别在暴露于微重力之前,之中和之后进行,以为发射后重力的快速变化做好准备,并减少失重暴露的不利影响。此外,MI在长时间暴露于微重力下返回地球时具有促进重新适应的潜在作用。进一步研究的建议包括关注MI的多感官方面,使用时间特征作为测量工具的要求,以及说明基于最佳MI实施的知识库或元认知过程的要求。

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