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Online control of anticipated postural adjustments in step initiation: Evidence from behavioral and computational approaches

机译:在线控制步骤开始时预期的姿势调整:来自行为和计算方法的证据

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摘要

Anticipatory postural adjustments (APAs) prior to step execution are thought to be immutable once released. Here we challenge this assumption by testing whether APAs can be modified online if a body perturbation occurs during execution. Two directions of perturbation (resisting and assisting) relative to the body weight transfer were used during the execution of APAs. We found that APAs are modified online (increase in both ground pressure and muscle activity) to compensate for resisting perturbations. The outcomes of a biomechanical model confirmed that the early changes in the APAs resulted from an active control of the APAs and were not merely mechanical consequences of the perturbation. However, no modification of the initial feedforward command was observed for assisting perturbations. The motor command changes for the resisting perturbation may originate from the mismatch between passively originated forces and those actively specified by the central command when acting in the opposite direction. The absence of a mismatch in the assisting perturbation might explain why the central nervous system was not prompted to modify the APAs in this condition.
机译:一旦释放,在执行步骤之前的预期姿势调整(APA)被认为是不可变的。在这里,我们通过测试在执行过程中是否发生身体扰动是否可以在线修改APA来挑战这一假设。在执行APA期间,使用了相对于体重传递的两个扰动方向(抵抗和辅助)。我们发现,在线修改了APA(增加了地面压力和肌肉活动)以补偿抵抗干扰。生物力学模型的结果证实,APA的早期变化是由主动控制APA引起的,而不仅仅是机械干扰的结果。但是,没有观察到对初始前馈命令的修改以辅助扰动。抵抗扰动的电机指令变化可能是由于被动产生的力与反方向作用时由中央指令主动指定的力之间的不匹配引起的。辅助扰动不失配可能解释了为什么在这种情况下未提示中枢神经系统修饰APA。

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