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A neuromagnetic analysis of the mechanism for generating auditory evoked fields.

机译:对产生听觉诱发磁场的机制的神经磁学分析。

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摘要

Averaged and non-averaged neuromagnetic responses to repetitive transients of sound were analyzed in the frequency and time domains. It was found that ongoing oscillations between 3 and 16 Hz are relevant to the generation of auditory evoked fields (AEF). First, phases of the oscillation were locked at around the timings of N100m, but randomly distributed from trial to trial at the other timings. Secondly, amplitudes of the oscillation were larger on average at around the timings of N100m than at the other timings, although the amplitudes fluctuated from trial to trial with almost the same standard deviations throughout the periods of observation. Thirdly, spatial distributions of the oscillatory activities were often reduced to an equivalent current dipole in the auditory cortex at around the timings of N100m, but seldom reduced at the other timings. An explanation of these results would be to suppose several oscillators within the cortex whose phases are locked at around the timings of N100m, but fluctuated randomly at the other timings.
机译:在频域和时域中分析了对声音的重复瞬态的平均和非平均神经磁响应。发现在3Hz和16Hz之间的持续振荡与听觉诱发场(AEF)的产生有关。首先,振荡的相位被锁定在N100m的时间点附近,但在其他时间点在试验之间随机分布。其次,在整个N100m左右的时间,振荡幅度平均要比其他时间要大,尽管在整个观察期间,幅度随试验的不同而波动。第三,振荡活动的空间分布通常在N100m左右被减小到听觉皮层中的等效电流偶极子,而在其他时刻很少减小。这些结果的解释是假设皮质中的几个振荡器的相位被锁定在N100m的时序附近,但在其他时序随机地波动。

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