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Adaptation to Visuomotor Rotations Remaps Movement Vectors Not Final Positions

机译:适应运动运动旋转会重新映射运动矢量而不是最终位置

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摘要

When exposed to novel visuomotor rotations, subjects readily adapt reaching movements, such that the virtual display of the hand is brought to the target. Whereas this clearly reflects remapping of the relationship between hand movements and the visual display, the nature of this remapping is not well understood. We now examine whether such adaptation results in remapping of the position of the visually displayed target and the final limb position or between the target vector and the movement vector. The latter is defined relative to a starting position, whereas the former should be independent of the starting position. Subjects first adapted to a 30° rotation during reaching movements made from a single starting location to four different target locations. After adaptation, generalization trials were introduced, during which reaching movements were made under the same visual rotation condition but started from one of two locations outside the practiced workspace. These trials were directed to either the previously practiced targets or new targets that reflected the direction and distance of the practiced trials. Generalization was greatest for movements made in similar directions, regardless of changes in spatial location. Most significantly, when reaching to the previously adapted targets, subjects did not reach to the previously learned limb positions but rather to positions that reflected a near 30° rotation of the new target vector. These results indicate that learned visuomotor rotations remap the representations of movement vectors and not final positions of the limb in the workspace.
机译:当暴露于新颖的视觉运动时,受试者很容易适应伸手的动作,从而将手的虚拟显示带到目标。尽管这清楚地反映了对手部动作和视觉显示之间关系的重新映射,但是这种重新映射的本质还不是很清楚。现在我们检查这种适应是否导致视觉显示目标的位置和最终肢体位置的重新映射或目标矢量和运动矢量之间的重新映射。后者是相对于起始位置定义的,而前者应独立于起始位置。在从单个起始位置到四个不同目标位置的移动过程中,对象首先适应了30°旋转。改编后,引入了泛化试验,在此过程中,在相同的视觉旋转条件下进行伸手可及的动作,但从实际工作空间之外的两个位置之一开始。这些试验针对的是先前实践的目标或反映了实践试验的方向和距离的新目标。无论空间位置如何变化,泛化对于在相似方向上进行的运动都是最大的。最重要的是,当到达先前适应的目标时,受试者没有到达先前学习的肢体位置,而是到达了反映新目标向量旋转近30°的位置。这些结果表明,学习到的运动运动重新映射了运动矢量的表示,而不是工作空间中肢体的最终位置。

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