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Enhancing astronaut performance using sensorimotor adaptability training

机译:通过感觉运动适应性训练提高宇航员的表现

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摘要

Astronauts experience disturbances in balance and gait function when they return to Earth. The highly plastic human brain enables individuals to modify their behavior to match the prevailing environment. Subjects participating in specially designed variable sensory challenge training programs can enhance their ability to rapidly adapt to novel sensory situations. This is useful in our application because we aim to train astronauts to rapidly formulate effective strategies to cope with the balance and locomotor challenges associated with new gravitational environments—enhancing their ability to “learn to learn.” We do this by coupling various combinations of sensorimotor challenges with treadmill walking. A unique training system has been developed that is comprised of a treadmill mounted on a motion base to produce movement of the support surface during walking. This system provides challenges to gait stability. Additional sensory variation and challenge are imposed with a virtual visual scene that presents subjects with various combinations of discordant visual information during treadmill walking. This experience allows them to practice resolving challenging and conflicting novel sensory information to improve their ability to adapt rapidly. Information obtained from this work will inform the design of the next generation of sensorimotor countermeasures for astronauts.
机译:宇航员返回地球后会遇到平衡和步态功能的干扰。高度可塑性的人脑使个人能够改变其行为以适应当前的环境。参加经过特殊设计的可变感觉挑战训练计划的受试者可以增强他们快速适应新型感觉情况的能力。这对我们的应用很有用,因为我们旨在培训宇航员迅速制定有效的策略,以应对与新引力环境相关的平衡和运动挑战,从而增强其“学习学习”的能力。我们通过在跑步机上行走结合各种感觉运动挑战来做到这一点。已经开发出一种独特的训练系统,该系统包括安装在运动基座上的跑步机,以在行走过程中产生支撑表面的运动。该系统对步态稳定性提出了挑战。虚拟视觉场景会带来额外的感官变化和挑战,该虚拟视觉场景会在跑步机行走过程中为对象显示不一致的视觉信息的各种组合。这种经验使他们能够练习解决具有挑战性和相互矛盾的新颖感官信息,以提高其快速适应能力。从这项工作中获得的信息将为宇航员设计下一代的感觉运动对策。

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