Liang Hualou, Gong Xiajing, Chen Minggui, Yan Yin, Li Wu, Gilbert Charles D
School of Biomedical Engineering, Drexel University, Philadelphia, PA 19104.
State Key Laboratory of Cognitive Neuroscience and Learning, Beijing Normal University, Beijing 100875, China.
Proc Natl Acad Sci U S A. 2017 Aug 8;114(32):8637-8642. doi: 10.1073/pnas.1706183114. Epub 2017 Jul 24.
Perceptual grouping of line segments into object contours has been thought to be mediated, in part, by long-range horizontal connectivity intrinsic to the primary visual cortex (V1), with a contribution by top-down feedback projections. To dissect the contributions of intraareal and interareal connections during contour integration, we applied conditional Granger causality analysis to assess directional influences among neural signals simultaneously recorded from visual cortical areas V1 and V4 of monkeys performing a contour detection task. Our results showed that discounting the influences from V4 markedly reduced V1 lateral interactions, indicating dependence on feedback signals of the effective connectivity within V1. On the other hand, the feedback influences were reciprocally dependent on V1 lateral interactions because the modulation strengths from V4 to V1 were greatly reduced after discounting the influences from other V1 neurons. Our findings suggest that feedback and lateral connections closely interact to mediate image grouping and segmentation.
线段被感知分组为物体轮廓,部分被认为是由初级视觉皮层(V1)固有的长程水平连接介导的,还有自上而下的反馈投射的作用。为了剖析轮廓整合过程中区域内和区域间连接的作用,我们应用条件格兰杰因果分析来评估在执行轮廓检测任务的猴子的视觉皮层区域V1和V4同时记录的神经信号之间的方向性影响。我们的结果表明,排除来自V4的影响会显著降低V1的侧向相互作用,这表明V1内有效连接对反馈信号的依赖性。另一方面,反馈影响相互依赖于V1的侧向相互作用,因为在排除其他V1神经元的影响后,从V4到V1的调制强度大大降低。我们的研究结果表明,反馈和侧向连接密切相互作用,以介导图像分组和分割。