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Relationship between the velocity of illusory hand movement and strength of MEG signals in human primary motor cortex and left angular gyrus

机译:人类初级运动皮层和左角回的幻觉手运动速度与MEG信号强度之间的关系

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摘要

We studied the relationship between the velocity of movement illusion and the activity level of primary motor area (M1) and of the left angular gyrus (AG) in humans. To induce illusory movement perception, we applied co-vibration at different frequencies on tendons of antagonistic muscle groups. Since it is well established that the velocity of illusory movement is related to the difference in vibration frequency applied to two antagonistic muscles, we compared magnetoencephalography (MEG) signals recorded in two conditions of co-vibration: in the “fast illusion” condition a frequency difference of 80 Hz was applied on the tendons of the right wrist extensor and flexor muscle groups, whereas in the “slow illusion” condition a frequency difference of 40 Hz was applied on the same muscle groups. The dipole strength, reflecting the activity level of structures, was measured over M1 and the left AG in two different time-periods: 0–400 and 400–800 ms in each condition. Our results showed that the activity level of the AG was similar in both conditions whatever the time-period, whereas the activity level of M1 was higher in the “fast illusion” condition compared to the “slow illusion” condition from 400 ms after the vibration onset only. The data suggest that the two structures differently contributed to the perception of illusory movements. Our hypothesis is that M1 would be involved in the coding of cinematic parameters of the illusory movement but not the AG.
机译:我们研究了运动幻觉的速度与人类主要运动区域(M1)和左角回(AG)的活动水平之间的关系。为了诱发虚幻的运动感知,我们在拮抗性肌肉群的肌腱上应用了不同频率的共振动。由于已经很好地确定了幻觉运动的速度与应用于两个拮抗肌肉的振动频率的差异有关,因此我们比较了在两种共同振动条件下记录的脑磁图(MEG)信号:在“快速错觉”条件下,右腕伸肌和屈肌群的肌腱施加80 Hz的频率差​​异,而在“慢错觉”条件下,相同肌群施加40 Hz的频率差​​异。偶极强度反映了结构的活动水平,是在两个不同的时间段(分别在0-400和400-800 ms的情况下)在M1和左AG上测量的。我们的结果表明,无论在什么时间段,两种情况下AG的活动水平都相似,而振动后400毫秒,“快错觉”条件下的M1活动水平要高于“慢错觉”条件。仅发病。数据表明,两种结构对幻觉运动的感知不同。我们的假设是,M1将参与幻觉运动的电影参数编码,而不参与AG。

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