首页> 外文期刊>Neuroscience Letters: An International Multidisciplinary Journal Devoted to the Rapid Publication of Basic Research in the Brain Sciences >Dynamic anterolateral movement of N100m dipoles in evoked magnetic field reflects activation of isofrequency bands through horizontal fibers in human auditory cortex.
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Dynamic anterolateral movement of N100m dipoles in evoked magnetic field reflects activation of isofrequency bands through horizontal fibers in human auditory cortex.

机译:N100m偶极子在诱发磁场中的动态前外侧运动反映了通过人类听觉皮层中水平纤维的等频带激活。

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摘要

To analyze the temporal changes in localization of an equivalent current dipole (ECD) for the auditory N100m, we recorded auditory evoked magnetic fields (AEFs) to 400 Hz tone pips presented at the right or left ear. Using a single ECD model, the dipole location for the N100m sources was successively calculated from the AEFs obtained from the hemisphere contralateral to the stimulated ear. We found that the location of the N100m current sources moved dynamically in medio-lateral and postero-anterior directions before the N100m peak. This direction was parallel to the surface of the supratemporal cortex. We propose that the dynamic movement of the N100m dipole reflects spread of intracortical activation through horizontal fibers of pyramidal neurons in the auditory cortex, forming the isofrequency bands in humans.
机译:为了分析听觉N100m的等效电流偶极(ECD)本地化的时间变化,我们记录了在右耳或左耳呈现的400 Hz音调点的听觉诱发磁场(AEF)。使用单个ECD模型,从受刺激耳朵对侧的半球获得的AEF连续计算N100m源的偶极位置。我们发现,N100m电流源的位置在N100m峰值之前沿中外侧和后外侧方向动态移动。该方向平行于肱骨上皮质的表面。我们提出,N100m偶极子的动态运动反映了皮层内激活的扩散,通过听觉皮层中锥体神经元的水平纤维,在人体内形成了等频带。

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