Lakatos Peter, Szilágyi Nóra, Pincze Zsuzsanna, Rajkai Csaba, Ulbert István, Karmos György
Institute for Psychology of the Hungarian Academy of Sciences, POB 398, Budapest, H-1394, Hungary.
Brain Res Cogn Brain Res. 2004 Mar;19(1):1-9. doi: 10.1016/j.cogbrainres.2003.10.023.
Sensory information processing in neocortex is associated with rhythmic synchronized gamma frequency firing of sensory cortical units and similar frequency oscillations of the field potentials. Different aspects of the gamma activity (20-80 Hz) have been suggested as correlates of attention, arousal and sensory binding. It is clear that attention has a modality selective influence, while arousal has a more general effect on the sensory systems. We used an experimental conditioning paradigm to separate these differential effects of attention and arousal on spontaneous neocortical gamma activity. We recorded field potentials with epidural electrodes placed above the auditory cortical areas of cats. The animals performed a simple instrumental alimentary conditioning task with different modality (visual and auditory) conditioned stimuli. When they attended to the auditory conditioned stimulus, both frequency and power increase of spontaneous gamma activity were detected. However when they attended visual, we found no power increase of gamma activity recorded above auditory areas, while the frequency increase was the same as in the "attend auditory" condition. We conclude that the power modulation of gamma activity is modality specific and thus can be attributed to selective attention, whereas the frequency modulation of gamma activity shows no modality specificity, it is influenced by the arousal level.
新皮层中的感觉信息处理与感觉皮层单元的节律性同步伽马频率放电以及场电位的类似频率振荡有关。伽马活动(20 - 80赫兹)的不同方面已被认为与注意力、觉醒和感觉绑定相关。很明显,注意力具有模态选择性影响,而觉醒对感觉系统有更普遍的作用。我们使用一种实验性条件范式来区分注意力和觉醒对自发新皮层伽马活动的这些不同影响。我们用放置在猫听觉皮层区域上方的硬膜外电极记录场电位。动物们执行一个简单的工具性食物条件任务,使用不同模态(视觉和听觉)的条件刺激。当它们关注听觉条件刺激时,检测到自发伽马活动的频率和功率都增加。然而,当它们关注视觉刺激时,我们发现在听觉区域上方记录的伽马活动功率没有增加,而频率增加与“关注听觉”条件下相同。我们得出结论,伽马活动的功率调制是模态特异性的,因此可归因于选择性注意力,而伽马活动的频率调制没有模态特异性,它受觉醒水平影响。