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Adaptation to Coriolis perturbations of voluntary body sway transfers to preprogrammed fall-recovery behavior

机译:适应科里奥利自愿身体摇摆转移对预编程的跌倒恢复行为的干扰

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摘要

In a rotating environment, goal-oriented voluntary movements are initially disrupted in trajectory and endpoint, due to movement-contingent Coriolis forces, but accuracy is regained with additional movements. We studied whether adaptation acquired in a voluntary, goal-oriented postural swaying task performed during constant-velocity counterclockwise rotation (10 RPM) carries over to recovery from falling induced using a hold and release (H&R) paradigm. In H&R, standing subjects actively resist a force applied to their chest, which when suddenly released results in a forward fall and activation of an automatic postural correction. We tested H&R postural recovery in subjects (n = 11) before and after they made voluntary fore-aft swaying movements during 20 trials of 25 s each, in a counterclockwise rotating room.
机译:在旋转的环境中,归因于运动的科里奥利力会首先破坏目标导向的自愿运动的轨迹和终点,但其他运动又可以恢复准确性。我们研究了在恒速逆时针旋转(10 RPM)期间执行的自愿性,面向目标的姿势摇摆任务中获得的适应是否可以从使用保持并释放(H&R)范式诱发的跌倒中恢复过来。在H&R中,站立的受试者会主动抵抗施加到其胸部的力,该力在突然释放时会导致向前跌倒并激活自动姿势校正。我们在逆时针旋转室中进行了20次每次25 s的试验前后自愿进行前后摇摆运动的受试者(n = 11)之前和之后的H​​&R姿势恢复。

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