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Neuromagnetic gamma-band activity in the primary and secondary somatosensory areas.

机译:主要和次要体感区域中的神经磁γ带活动。

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To evaluate the gamma-band activity related to somatosensory processing, we recorded neuromagnetic signals from seven healthy subjects. The source power changes evoked by electrical stimulation of the median nerve were estimated with synthetic aperture magnetometry (SAM). Source power in the low gamma band (40 Hz) decreased in the contralateral primary somatosensory cortex (SI) for a few hundred milliseconds (i.e. middle and long latency) and then increased inversely. Source power in the high gamma band (70-90 Hz) increased simultaneously both in the contralateral SI and contra/ipsilateral secondary somatosensory cortex (SII) in 80-180 ms. These results suggest that low and high gamma oscillations work under independent mechanisms during somatosensory processing. In particular, high gamma oscillations may play an essential role in making a functional connection between SI and SII.
机译:为了评估与体感处理相关的伽马射线带活动,我们记录了来自七个健康受试者的神经磁信号。用合成孔径磁法(SAM)估算由正中神经电刺激引起的源功率变化。低伽玛带(40 Hz)中的源功率在对侧初级体感皮层(SI)中下降了几百毫秒(即中和长潜伏期),然后反之增加。高伽玛带(70-90 Hz)中的源功率在80-180毫秒内同时在对侧SI和对/同侧次生体感皮层(SII)中增加。这些结果表明,在体感处理过程中,低和高伽马振荡在独立的机制下起作用。尤其是,高伽马振荡可能在SI和SII之间建立功能连接方面起着至关重要的作用。

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