首页> 外文期刊>The Journal of Physiology >Impairment of human proprioception by high-frequency cutaneous vibration.
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Impairment of human proprioception by high-frequency cutaneous vibration.

机译:高频皮肤振动对人体本体感受的损害。

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These experiments assessed whether the impairment in proprioceptive acuity in the hand during 'interfering' cutaneous stimulation could be caused by inputs from Pacinian corpuscles. The ability to detect passive movements at the proximal interphalangeal joint of the index finger was measured when vibrotactile stimuli were applied to the adjacent middle finger and thenar eminence at frequencies and amplitudes that favour activation of rapidly adapting cutaneous afferents. Inputs from Pacinian corpuscles are favoured with high-frequency vibration (300 Hz), while those from Meissner corpuscles are favoured by lower frequencies (30 Hz). Detection of movement was significantly impaired when 300 Hz (20 microm peak-to-peak amplitude) complex vibration or 300 Hz (50 microm) sinusoidal vibration was applied to the middle finger and thenar eminence. In contrast, detection of movements was not altered by low-frequency sinusoidal vibration at 30 Hz with an amplitude of 50 microm or with a larger amplitude matched in subjective intensity to the 300 Hz sinusoidal stimulus. Thus it is unlikely that the impairment in detection was due to attention being diverted by vibration of an adjacent digit. In addition, an increase in amplitude of 300 Hz vibration led to a greater impairment of movement detection, so that the impairment was graded with the input. The time taken to nominate the direction of applied movement also increased during 300 Hz but not during 30 Hz sinusoidal vibration. These findings suggest that stimuli which preferentially activate Pacinian, but not Meissner corpuscles, impair proprioceptive acuity in a movement detection task.
机译:这些实验评估了在“干扰”皮肤刺激过程中手的本体感受力是否受损可能是由帕西尼亚小体的输入引起的。当在邻近的中指上施加触觉刺激时,测量食指近端指间关节被动运动的能力,并以有利于快速适应皮肤传入的激活的频率和幅度进行声纳突出。来自Pacinian小球的输入倾向于高频振动(300 Hz),而来自Meissner小球的输入倾向于低频(30 Hz)。当对中指和鼻廓隆起施加300 Hz(峰峰值至峰值20微米)复合振动或300 Hz(50微米)正弦振动时,运动的检测将受到严重损害。相反,运动的检测并没有被30 Hz的低频正弦振动所改变,振幅为50 microm或更大的振幅在主观上与300 Hz正弦刺激相匹配。因此,检测的损害不太可能是由于注意力被相邻手指的振动转移了。另外,振幅的增加300 Hz振动导致更大的运动检测损害,以便损害与输入分级。在300 Hz期间,指定施加运动方向所花费的时间也增加了,但在30 Hz正弦振动期间却没有增加。这些发现表明,优先激活Pacinian而非Meissner小球的刺激会损害运动检测任务中的本体感觉敏锐度。

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