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Stumbling reactions in hypo and hyper gravity – muscle synergies are robust across different perturbations of human stance during parabolic flights

机译:Hypo和Hypergity - 肌肉协同效应的磕碰反应在抛物线飞行中对人类姿势的不同扰动是强大的

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The control of bipedal stance and the capacity to regain postural equilibrium after its deterioration in variable gravities are crucial prerequisites for manned space missions. With an emphasize on natural orthograde posture, computational techniques synthesize muscle activation patterns of high complexity to a simple synergy organization. We used nonnegative matrix factorization to identify muscle synergies during postural recovery responses in human and to examine the functional significance of such synergies for hyper-gravity (1.75?g) and hypo-gravity (0.25?g). Electromyographic data were recorded from leg, trunk and arm muscles of five human exposed to five modes of anterior and posterior support surface translations during parabolic flights including transitional g-levels of 0.25, 1 and 1.75?g. Results showed that in 1?g four synergies accounted for 99% of the automatic postural response across all muscles and perturbation directions. Each synergy in 1?g was correlated to the corresponding one in 0.25 and 1.75?g. This study therefore emphasizes the similarity of the synergy organization of postural recovery responses in Earth, hypo- and hyper-gravity conditions, indicating that the muscle synergies and segmental strategies acquired under terrestrial habits are robust and persistent across variable and acute changes in gravity levels.
机译:双模型立场的控制和在可变重力劣化后重新获得姿势均衡的能力是载人空间任务的至关重要的先决条件。强调自然的正方形姿势,计算技术合成了一个简单的协同组织的高复杂性的肌肉激活模式。我们使用非负矩阵分解来识别人类姿势回收响应期间的肌肉协同作用,并检查超重(1.75?G)和Hypo-Gravity(0.25?G)这种协同作用的功能意义。在抛物线飞行期间暴露于五种人的腿部,躯干和臂肌的腿部,躯干和臂肌记录,其中五种前支撑表面翻译,包括0.25,1和1.75Ω的过渡性G级。结果表明,在1?G的四种协同作用中占所有肌肉和扰动方向的自动姿势反应的99%。在1?g中的每个协同作用与0.25和1.75?g的相应相应相关。因此,本研究强调了地球,多重重力条件中的姿势恢复反应的协同作用组织的相似性,表明在陆地习惯下获得的肌肉协同效应和分段策略是强大的,在重力水平的变量和急性变化中具有鲁棒性和持久性。

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