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暴露于不匹配的感觉输入后,达到适应和本体感觉重新校准。

Reach adaptation and proprioceptive recalibration following exposure to misaligned sensory input.

作者信息

Cressman Erin K, Henriques Denise Y P

机构信息

1School of Human Kinetics, University of Ottawa, Canada.

出版信息

J Neurophysiol. 2010 Apr;103(4):1888-95. doi: 10.1152/jn.01002.2009. Epub 2010 Feb 3.

Abstract

Motor adaptation in response to a visuomotor distortion arises when the usual motor command no longer results in the predicted sensory output. In this study, we examined if exposure to a sensory discrepancy was sufficient on its own to produce changes in reaches and recalibrate the sense of felt hand position in the absence of any voluntary movements. Subjects pushed their hand out along a robot-generated fixed linear path (active exposure group) or were passively moved along the same path (passive exposure group). This fixed path was gradually rotated counterclockwise around the home position with respect to the path of the cursor. On all trials, subjects saw the cursor head directly to the remembered target position while their hand moved outwards. We found that after exposure to the visually distorted hand motion, subjects in both groups adapted their reaches such that they aimed ∼6° to the left of the intended target. The magnitude of reach adaptation was similar to the extent that subjects recalibrated their sense of felt hand position. Specifically the position at which subjects perceived their unseen hand to be aligned with a reference marker was the same as that to which they reached when allowed to move freely. Given the similarity in magnitude of these adaptive responses we propose that reach adaptation arose due to changes in subjects' sense of felt hand position. Moreover, results indicate that motor adaptation can arise following exposure to a sensory mismatch in the absence of movement related error signals.

摘要

当通常的运动指令不再产生预期的感觉输出时,就会出现针对视觉运动扭曲的运动适应。在本研究中,我们考察了在没有任何自主运动的情况下,仅暴露于感觉差异是否足以引起伸手动作的变化并重新校准手部位置的感觉。受试者沿着机器人生成的固定直线路径伸出手(主动暴露组),或者被动地沿着相同路径移动(被动暴露组)。相对于光标的路径,这条固定路径围绕起始位置逐渐逆时针旋转。在所有试验中,当受试者的手向外移动时,他们看到光标直接指向记忆中的目标位置。我们发现,在暴露于视觉扭曲的手部运动后,两组受试者都调整了他们的伸手动作,使得他们的目标指向预期目标左侧约6°处。伸手动作适应的幅度与受试者重新校准手部位置感觉的程度相似。具体而言,受试者感觉到他们看不见的手与参考标记对齐的位置,与他们在被允许自由移动时伸手所到达的位置相同。鉴于这些适应性反应在幅度上的相似性,我们提出伸手动作适应是由于受试者手部位置感觉的变化而产生的。此外,结果表明,在没有与运动相关的误差信号的情况下,暴露于感觉不匹配后也会出现运动适应。

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