Xin Ye, Yan Yin, Li Wu
State Key Laboratory of Cognitive Neuroscience and Learning, Beijing Normal University, Beijing, China.
IDG/McGovern Institute for Brain Research, Beijing Normal University, Beijing, China.
Nat Commun. 2025 Jul 28;16(1):6930. doi: 10.1038/s41467-025-62279-8.
Visual scene analysis in the brain involves diverse grouping and segmentation processes mediated by intra- and inter-areal interactions, but the role of feedback from higher to lower visual cortices has remained largely speculative, relying mostly on indirect evidence. In this study with behaving monkeys, we investigated the causal impact of V4-to-V1 feedback on different figure-ground perceptual tasks employing distinct contextual cues. We compared neuronal responses in the primary visual cortex (V1) and the behavioral performance before and after silencing a higher-order visual area (V4). Our results reveal that V4-to-V1 feedback comprises dissociable facilitatory and inhibitory components that differ in their spatial distribution, onset time, modulatory polarity, and magnitude. This feedback is essential for, and consistent across, distinct grouping and segmentation processes, operating independently of V1 neurons' selectivity for local features and primarily modifying the late phases of neuronal responses. These findings highlight fundamental differences between the mechanisms underlying global, feature-independent figure-ground organization and local, feature-dependent contextual analysis. Moreover, while the feedback modifies correlated variability in neural responses, this effect does not alter the neural population code. Our study underscores the central and unified role of corticocortical feedback in integrating and interpreting visual scenes, with implications for circuit-level mechanisms.
大脑中的视觉场景分析涉及由区域内和区域间相互作用介导的多种分组和分割过程,但从高级视觉皮层到低级视觉皮层的反馈作用在很大程度上仍属推测,主要依赖间接证据。在这项针对行为猴子的研究中,我们利用不同的上下文线索,研究了V4到V1反馈对不同图形-背景感知任务的因果影响。我们比较了初级视觉皮层(V1)中的神经元反应以及沉默一个高级视觉区域(V4)前后的行为表现。我们的结果表明,V4到V1的反馈包含可分离的促进和抑制成分,它们在空间分布、起始时间、调制极性和幅度上存在差异。这种反馈对于不同的分组和分割过程至关重要且具有一致性,其运作独立于V1神经元对局部特征的选择性,并且主要改变神经元反应的后期阶段。这些发现凸显了全局的、与特征无关的图形-背景组织机制和局部的、与特征相关的上下文分析机制之间的根本差异。此外,虽然这种反馈改变了神经反应中的相关变异性,但这种效应并未改变神经群体编码。我们的研究强调了皮质-皮质反馈在整合和解释视觉场景中的核心和统一作用,对电路层面的机制具有启示意义。