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通过振动一只手臂所产生的本体感觉错觉会因振动另一只手臂而改变。

Proprioceptive illusions created by vibration of one arm are altered by vibrating the other arm.

作者信息

Hakuta Naoyuki, Izumizaki Masahiko, Kigawa Kazuyoshi, Murai Norimitsu, Atsumi Takashi, Homma Ikuo

机构信息

Department of Physiology, Showa University School of Medicine, 1-5-8 Hatanodai, Shinagawa-ku, Tokyo, 142-8555, Japan.

出版信息

Exp Brain Res. 2014 Jul;232(7):2197-206. doi: 10.1007/s00221-014-3911-3. Epub 2014 Mar 27.

Abstract

There is some evidence that signals coming from both arms are used to determine the perceived position and movement of one arm. We examined whether the sense of position and movement of one (reference) arm is altered by increases in muscle spindle signals in the other (indicator) arm in blindfolded participants (n = 26). To increase muscle spindle discharge, we applied 70-80 Hz muscle vibration to the elbow flexors of the indicator arm. In a first experiment, proprioceptive illusions in the vibrated reference arm in a forearm position-matching task were compared between conditions in which the indicator arm elbow flexors were vibrated or not vibrated. We found that the vibration illusion of arm extension induced by vibration of reference arm elbow flexors was reduced in the presence of vibration of the indicator elbow flexors. In a second experiment, participants were asked to describe their perception of the illusion of forearm extension movements of the reference arm evoked by vibration of reference arm elbow flexors in response to on/off and off/on transitions of vibration of non-reference arm elbow flexors. When vibration of non-reference arm elbow flexors was turned on, they reported a sensation of slowing down of the illusion of the reference arm. When it was turned off, they reported a sensation of speeding up. To conclude, the present study shows that both the sense of limb position and the sense of limb movement of one arm are dependent to some extent on spindle signals coming from the other arm.

摘要

有证据表明,来自双臂的信号被用于确定其中一只手臂的感知位置和运动。我们研究了在蒙眼参与者(n = 26)中,另一只(指示)手臂的肌梭信号增加是否会改变一只(参照)手臂的位置感和运动感。为了增加肌梭放电,我们对指示手臂的肘屈肌施加70 - 80赫兹的肌肉振动。在第一个实验中,比较了指示手臂肘屈肌振动或不振动两种情况下,在前臂位置匹配任务中振动的参照手臂的本体感觉错觉。我们发现,在指示肘部屈肌振动的情况下,参照手臂肘部屈肌振动引起的手臂伸展振动错觉会减弱。在第二个实验中,要求参与者描述在非参照手臂肘屈肌振动的开/关和关/开转换时,参照手臂肘屈肌振动所诱发的前臂伸展运动错觉的感知。当非参照手臂肘屈肌的振动打开时,他们报告参照手臂的错觉有减慢的感觉。当它关闭时,他们报告有加速的感觉。总之,本研究表明,一只手臂的肢体位置感和肢体运动感在一定程度上都依赖于来自另一只手臂的梭形信号。

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