The Cognitive Neurophysiology Laboratory, Nathan S. Kline Institute for Psychiatric Research, 140 Old Orangeburg Road, Orangeburg, NY 10962, USA.
Neuroimage. 2013 Apr 1;69:146-56. doi: 10.1016/j.neuroimage.2012.11.023. Epub 2012 Nov 28.
Contour integration, the linking of collinear but disconnected visual elements across space, is an essential facet of object and scene perception. Here, we set out to arbitrate between two previously advanced mechanisms of contour integration: serial facilitative interactions between collinear cells in the primary visual cortex (V1) versus pooling of inputs in higher-order visual areas. To this end, we used high-density electrophysiological recordings to assess the spatio-temporal dynamics of brain activity in response to Gabor contours embedded in Gabor noise (so-called "pathfinder displays") versus control stimuli. Special care was taken to elicit and detect early activity stemming from the primary visual cortex, as indexed by the C1 component of the visual evoked potential. Arguing against a purely early V1 account, there was no evidence for contour-related modulations within the C1 timeframe (50-100 ms). Rather, the earliest effects were observed within the timeframe of the N1 component (160-200 ms) and inverse source analysis pointed to principle generators in the lateral occipital complex (LOC) within the ventral visual stream. Source anlaysis also suggested that it was only during this relatively late processing period that contextual effects emerged in hierarchically early visual regions (i.e. V1/V2), consistent with a more distributed process involving recurrent feedback/feedforward interactions between LOC and early visual sensory regions. The distribution of effects uncovered here is consistent with pooling of information in higher order cortical areas as the initial step in contour integration, and that this pooling occurs relatively late in processing rather than during the initial sensory-processing period.
轮廓整合,即将空间中线性但不连续的视觉元素连接起来,是物体和场景感知的一个基本方面。在这里,我们旨在仲裁两种以前提出的轮廓整合机制:初级视觉皮层 (V1) 中线性细胞的序列促进相互作用与高级视觉区域中的输入池化。为此,我们使用高密度电生理记录来评估对嵌入在 Gabor 噪声中的 Gabor 轮廓(所谓的“探路者显示”)与对照刺激的大脑活动的时空动力学。特别注意诱发和检测源自初级视觉皮层的早期活动,该活动由视觉诱发电位的 C1 成分表示。与纯粹的早期 V1 解释相反,在 C1 时间范围内(50-100ms)没有发现与轮廓相关的调制。相反,最早的影响是在 N1 成分的时间范围内(160-200ms)观察到的,并且逆源分析指向腹侧视觉流中的外侧枕叶复合体(LOC)中的主要发生器。源分析还表明,只有在这个相对较晚的处理期间,上下文效应才会出现在层次较早的视觉区域(即 V1/V2)中,这与涉及 LOC 和早期视觉感觉区域之间的递归反馈/前馈相互作用的更分布式过程一致。这里揭示的效应分布与信息在高级皮质区域中的池化一致,作为轮廓整合的初始步骤,并且这种池化发生在处理的相对较晚阶段,而不是在初始感觉处理期间。