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视觉刺激在猴子的皮层内电位和脑电图中引发锁定和诱导的伽马振荡,但在人类脑电图中则不然。

Visual stimulation elicits locked and induced gamma oscillations in monkey intracortical- and EEG-potentials, but not in human EEG.

作者信息

Juergens E, Guettler A, Eckhorn R

机构信息

Neurophysics Group, Department of Physics, Philipps-University, Renthof 7, D-35032 Marburg, Germany.

出版信息

Exp Brain Res. 1999 Nov;129(2):247-59. doi: 10.1007/s002210050895.

Abstract

Stimulus-related fast oscillations in the gamma-range (30-100 Hz) were clearly demonstrated with microelectrode recordings in visual cortex of awake monkeys, and they were also reported for recordings of human electroencephalograms (EEG). However, the presence of stimulus-related gamma-modulation in human EEG has repeatedly been disputed. To clarify this dispute, we recorded the scalp EEG of man and monkey as well as intracortical field potentials (LFP) from monkey primary visual cortex (V1) during identical visual stimulation (large-field sinusoidal gratings, which proved to induce the largest gamma-amplitudes in monkey V1 and V2). We found a strong stimulus-related increase of gamma-oscillations in monkey LFP and EEG, but no modulation of gamma-activity in human EEG. In contrast to previous results, gamma-oscillations in the monkey were strongly phase-locked to stimulus onsets in early response periods (80-160 ms) and became gradually independent in later periods. Our negative result on gamma-modulation in human subjects contradicts several published findings. We conclude from our results that visually evoked gamma-modulations in humans EEG are not as accessible as in the monkey.

摘要

在清醒猴子的视觉皮层中,通过微电极记录清楚地证明了与刺激相关的伽马波段(30 - 100赫兹)快速振荡,并且在人类脑电图(EEG)记录中也有相关报道。然而,人类脑电图中与刺激相关的伽马调制的存在一直存在争议。为了澄清这一争议,我们在相同的视觉刺激(大视野正弦光栅,事实证明其能在猴子的初级视觉皮层V1和V2中诱发最大的伽马振幅)过程中,记录了人类和猴子的头皮脑电图以及猴子初级视觉皮层(V1)的皮层内场电位(LFP)。我们发现猴子的LFP和脑电图中与刺激相关的伽马振荡有强烈增加,但人类脑电图中的伽马活动没有调制。与先前的结果相反,猴子的伽马振荡在早期反应期(80 - 160毫秒)与刺激起始强烈锁相,并在后期逐渐独立。我们在人类受试者中关于伽马调制的阴性结果与一些已发表的研究结果相矛盾。我们从结果中得出结论,人类脑电图中视觉诱发的伽马调制不像在猴子中那样容易检测到。

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