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Reach adaptation and proprioceptive recalibration following terminal visual feedback of the hand

机译:在手的终端视觉反馈后达到适应和本体感受的重新校准

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摘要

We have shown that when subjects reach with continuous, misaligned visual feedback of their hand, their reaches are adapted and proprioceptive sense of hand position is recalibrated to partially match the visual feedback (). It is unclear if similar changes arise after reaching with visual feedback that is provided only at the end of the reach (i.e., terminal feedback), when there are shorter temporal intervals for subjects to experience concurrent visual and proprioceptive feedback. Subjects reached to targets with an aligned hand-cursor that provided visual feedback at the end of each reach movement across a 99-trial training block, and with a rotated cursor over three successive blocks of 99 trials each. After each block, no cursor reaches, to measure aftereffects, and felt hand positions were measured. Felt hand position was determined by having subjects indicate the position of their unseen hand relative to a reference marker. We found that subjects adapted their reaches following training with rotated terminal visual feedback, yet slightly less (i.e., reach aftereffects were smaller), than subjects from a previous study who experienced continuous visual feedback. Nonetheless, current subjects recalibrated their sense of felt hand position in the direction of the altered visual feedback, but this proprioceptive change increased incrementally over the three rotated training blocks. Final proprioceptive recalibration levels were comparable to our previous studies in which subjects performed the same task with continuous visual feedback. Thus, compared to reach training with continuous, but altered visual feedback, subjects who received terminal altered visual feedback of the hand produced significant but smaller reach aftereffects and similar changes in hand proprioception when given extra training. Taken together, results suggest that terminal feedback of the hand is sufficient to drive motor adaptation, and also proprioceptive recalibration.
机译:我们已经表明,当受试者到达连续且未对准的手部视觉反馈时,会调整他们的触及范围,并重新校准手位置的本体感觉以部分匹配视觉反馈()。尚不清楚只有在到达时间范围较短的时间间隔内,受试者才能同时经历视觉和本体感受反馈时,只有在触及范围尽头才提供的视觉反馈后是否会出现类似的变化。受试者使用对齐的手形光标到达目标,该手形光标在每次触及运动结束时提供了视觉反馈,跨越了99个试验块,并在三个连续的连续块中进行了光标旋转,每个连续99个试验块。在每个块之后,没有光标到达以测量后效果,并且测量了手的感觉位置。通过让受试者指示他们看不见的手相对于参考标记的位置来确定手的感觉位置。我们发现受试者在训练后通过旋转的终末视觉反馈适应了他们的触及范围,但比经历连续视觉反馈的先前研究的受试者稍少(即触及后效应更小)。尽管如此,当前的受试者在改变的视觉反馈的方向上重新校准了他们的手感,但是这种本体感受的变化在三个旋转的训练块上逐渐增加。最终的本体感受性重新校准水平与我们之前的研究相当,在这些研究中,受试者通过连续的视觉反馈执行相同的任务。因此,与具有连续但改变的视觉反馈的伸手训练相比,接受额外的训练时,接受末端改变的手视觉反馈的受试者产生了明显但较小的伸手后遗症和类似的手本体感受变化。两者合计,结果表明手的终端反馈足以驱动电机适应性,并能进行本体感受性重新校准。

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