Keil A, Müller M M, Ray W J, Gruber T, Elbert T
Department of Psychology, University of Konstanz, D-78457 Konstanz, Germany.
J Neurosci. 1999 Aug 15;19(16):7152-61. doi: 10.1523/JNEUROSCI.19-16-07152.1999.
Neuronal oscillations in the gamma band (above 30 Hz) have been proposed to be a possible mechanism for the visual representation of objects. The present study examined the topography of gamma band spectral power and event-related potentials in human EEG associated with perceptual switching effected by rotating ambiguous (bistable) figures. Eleven healthy human subjects were presented two rotating bistable figures: first, a face figure that allowed perception of a sad or happy face depending on orientation and therefore caused a perceptual switch at defined points in time when rotated, and, second, a modified version of the Rubin vase, allowing perception as a vase or two faces whereby the switch was orientation-independent. Nonrotating figures served as further control stimuli. EEG was recorded using a high-density array with 128 electrodes. We found a negative event-related potential associated with the switching of the sad-happy figure, which was most pronounced at central prefrontal sites. Gamma band activity (GBA) was enhanced at occipital electrode sites in the rotating bistable figures compared with the standing stimuli, being maximal at vertical stimulus orientations that allowed an easy recognition of the sad and happy face or the vase-faces, respectively. At anterior electrodes, GBA showed a complementary pattern, being maximal when stimuli were oriented horizontally. The findings support the notion that formation of a visual percept may involve oscillations in a distributed neuronal assembly.
有人提出,伽马波段(高于30赫兹)的神经元振荡可能是物体视觉表征的一种机制。本研究考察了与旋转的模糊(双稳态)图形所引起的知觉转换相关的人类脑电图中伽马波段频谱功率和事件相关电位的地形图。向11名健康受试者呈现了两个旋转的双稳态图形:第一个是面部图形,根据方向可以感知到悲伤或快乐的脸,因此在旋转时会在特定时间点引起知觉转换;第二个是鲁宾之杯的修改版本,可以感知为一个花瓶或两张脸,其转换与方向无关。非旋转图形用作进一步的对照刺激。使用具有128个电极的高密度阵列记录脑电图。我们发现与悲伤-快乐图形的转换相关的负性事件相关电位,在中央前额叶部位最为明显。与静止刺激相比,旋转双稳态图形时枕叶电极部位的伽马波段活动(GBA)增强,在分别便于识别悲伤和快乐脸或花瓶脸的垂直刺激方向时达到最大。在前部电极,GBA呈现出互补模式,在刺激水平方向时达到最大。这些发现支持了视觉感知的形成可能涉及分布式神经元集合振荡的观点。