Han Shihui, Jiang Yi, Mao Lihua, Humphreys Glyn W, Qin Jungang
Department of Psychology, Peking University, Beijing, People's Republic of China. shan@pku
Hum Brain Mapp. 2005 Nov;26(3):199-209. doi: 10.1002/hbm.20157.
We sought to identify the neural substrates underlying perceptual grouping, and examined whether the grouping-related neural activities are modulated by task relevance and attention by recording high-density event-related potentials (ERPs). Participants were presented with stimulus arrays, in which local elements were either evenly distributed or grouped into rows or columns by proximity or similarity, and had to discriminate orientations of the perceptual groups, or to identify the colors of dots around stimulus displays or of the fixation cross. We found that proximity grouping was indexed by a positive activity over the medial occipital cortex with a peak latency of about 100 ms after stimulus onset (Pd100), whereas grouping by similarity of shape was reflected in a negative activity with longer latency over the occipito-temporal areas. Dipole modeling based on a realistic boundary element head model localized the Pd100 to the right calcarine cortex. Moreover, we showed that the grouping-related activities were weakened when stimulus arrays were of low task relevance and fell outside an attended area of field. The results suggest that human calcarine cortex is engaged in early grouping operations defined by proximity, reinforcing the previous fMRI findings. Moreover, our ERP results indicate that the neural bases underlying perceptual grouping in human visual cortex can be modulated by task relevance and attention as early as 100 ms after sensory stimulation. Hum Brain Mapp, 2005. (c) 2005 Wiley-Liss, Inc.
我们试图确定感知分组背后的神经基质,并通过记录高密度事件相关电位(ERP)来研究与分组相关的神经活动是否受到任务相关性和注意力的调节。向参与者呈现刺激阵列,其中局部元素要么均匀分布,要么通过接近度或相似性分组为行或列,参与者必须辨别感知组的方向,或者识别刺激显示周围或注视十字处的点的颜色。我们发现,接近分组由枕叶内侧皮质上的正向活动表示,刺激开始后峰值潜伏期约为100毫秒(Pd100),而形状相似性分组则表现为枕颞区潜伏期更长的负向活动。基于逼真的边界元素头部模型的偶极子建模将Pd100定位到右侧距状皮质。此外,我们还表明,当刺激阵列的任务相关性较低且落在视野的关注区域之外时,与分组相关的活动会减弱。结果表明,人类距状皮质参与了由接近度定义的早期分组操作,强化了先前的功能磁共振成像研究结果。此外,我们的ERP结果表明,人类视觉皮质中感知分组的神经基础在感觉刺激后100毫秒就可以受到任务相关性和注意力的调节。《人类大脑图谱》,2005年。(c)2005威利 - 利斯公司。