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局部重力补偿对变重力环境下运动控制的影响。

Effects of Local Gravity Compensation on Motor Control During Altered Environmental Gravity.

机构信息

Laboratory for Neuromechanics and Biorobotics, Department of Automatics, Biocybernetics and Robotics, Jožef Stefan Institute, Ljubljana, Slovenia.

Jožef Stefan International Postgraduate School, Ljubljana, Slovenia.

出版信息

Front Neural Circuits. 2021 Oct 21;15:750267. doi: 10.3389/fncir.2021.750267. eCollection 2021.

Abstract

Our sensorimotor control is well adapted to normogravity environment encountered on Earth and any change in gravity significantly disturbs our movement. In order to produce appropriate motor commands for aimed arm movements such as pointing or reaching, environmental changes have to be taken into account. This adaptation is crucial when performing successful movements during microgravity and hypergravity conditions. To mitigate the effects of changing gravitational levels, such as the changed movement duration and decreased accuracy, we explored the possible beneficial effects of gravity compensation on movement. Local gravity compensation was achieved using a motorized robotic device capable of applying precise forces to the subject's wrist that generated a normogravity equivalent torque at the shoulder joint during periods of microgravity and hypergravity. The efficiency of the local gravity compensation was assessed with an experiment in which participants performed a series of pointing movements toward the target on a screen during a parabolic flight. We compared movement duration, accuracy, movement trajectory, and muscle activations of movements during periods of microgravity and hypergravity with conditions when local gravity compensation was provided. The use of local gravity compensation at the arm mitigated the changes in movement duration, accuracy, and muscle activity. Our results suggest that the use of such an assistive device helps with movements during unfamiliar environmental gravity.

摘要

我们的感觉运动控制很好地适应了在地球上遇到的常重力环境,任何重力变化都会显著干扰我们的运动。为了产生指向或伸手等有目的的手臂运动的适当运动指令,必须考虑环境变化。在微重力和超重条件下进行成功的运动时,这种适应至关重要。为了减轻不断变化的重力水平的影响,例如运动持续时间的变化和准确性的降低,我们探索了运动中重力补偿的可能有益效果。局部重力补偿是通过一种能够向受试者手腕施加精确力的电动机器人设备来实现的,该设备在微重力和超重期间在肩关节产生常重力等效扭矩。通过在抛物线飞行期间在屏幕上向目标进行一系列指向运动的实验来评估局部重力补偿的效率。我们将微重力和超重期间的运动持续时间、准确性、运动轨迹和肌肉激活与提供局部重力补偿的条件进行了比较。手臂局部重力补偿的使用减轻了运动持续时间、准确性和肌肉活动的变化。我们的结果表明,使用这种辅助设备有助于在不熟悉的环境重力下进行运动。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/742a/8568321/1e517be101e4/fncir-15-750267-g0003.jpg

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