首页> 外文期刊>Neuroscience Letters: An International Multidisciplinary Journal Devoted to the Rapid Publication of Basic Research in the Brain Sciences >Dipole orientation differs between high frequency oscillations and N20m current sources in human somatosensory evoked magnetic fields to median nerve stimulation.
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Dipole orientation differs between high frequency oscillations and N20m current sources in human somatosensory evoked magnetic fields to median nerve stimulation.

机译:在人体体感诱发磁场对正中神经刺激中,高频振荡和N20m电流源的偶极子定向不同。

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The dipole orientation of equivalent current source for the high frequency oscillations (HFOs) above 300 Hz and that for the underlying N20m were compared. Somatic magnetic fields were recorded over the left hand somatosensory area to right median nerve stimulation at the wrist with a wide-bandpass (0.1-2000 Hz). The HFOs and underlying N20m were extracted by digital filtering of 300-900 Hz and 1-300 Hz, respectively. We found that the orientation of the HFOs and underlying N20m current sources differs and that the HFO source orientation shows a more divergent pattern than the N20m. These results suggest that the somatosensory HFOs are not generated from the pyramidal cell population in area 3b which produces the underlying N20m and that they may reflect activities of the non-pyramidal neuron population.
机译:比较了高于300 Hz的高频振荡(HFO)和下层N20m的等效电流源的偶极子方向。在左手的体感区域,以宽带(0.1-2000 Hz)在腕部记录右手正中神经的体磁场。通过分别对300-900 Hz和1-300 Hz的数字滤波来提取HFO和下面的N20m。我们发现,HFO的方向和潜在的N20m电流源的方向有所不同,并且HFO的源方向显示出比N20m更发散的模式。这些结果表明,体感HFO不是由区域3b中的锥体细胞群产生的,而后者会产生潜在的N20m,并且它们可能反映了非锥体神经元种群的活动。

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