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Proprioception plays a different role for sensorimotor adaptation to different distortions.

机译:本体感受在感觉运动适应不同畸变中起着不同的作用。

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If proprioceptive feedback is degraded by agonist-antagonist muscle vibration, then adaptation to rotated vision remains intact while adaptation to a velocity-dependent force field worsens. Here we evaluate whether this differential effect of vibration is related to the physical nature of the distortion - visual versus mechanical - or to their kinematic coupling to the subjects' hand - velocity versus position dependent. Subjects adapted to a velocity-dependent visual distortion, to a position-dependent force, or to a velocity-dependent force; one half of the subjects adapted with, and the other half without agonist-antagonist vibration at the wrist, elbow, and shoulder. We found, as before, that vibration slowed down adaptation to a velocity-dependent force. However, vibration did not modify adaptation to the other two distortions, nor did it influence the aftereffects of any distortion. From this we conclude that intact proprioception supports strategic compensatory processes when proprioceptive signals agree with visual ones, and provide relevant (dynamic) information not available to the visual system.
机译:如果本体激动反馈由于激动剂-拮抗剂肌肉的振动而降低,那么对旋转视力的适应将保持不变,而对速度相关的力场的适应则会变差。在这里,我们评估振动的这种微分效应是否与失真的物理性质(视觉与机械)相关,还是它们与受试者手部的运动学关联(与速度相关,与位置相关)。适应速度依赖的视觉畸变,位置依赖的力或速度依赖的力的对象;一半的受试者适应了手腕,肘部和肩膀,另一半则没有激动剂-拮抗剂振动。与以前一样,我们发现振动减慢了对速度相关力的适应。但是,振动不会改变对其他两种变形的适应性,也不会影响任何变形的后效应。由此得出的结论是,当本体感受信号与视觉信号一致时,完整的本体感受将支持战略性补偿过程,并提供视觉系统无法获得的相关(动态)信息。

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