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皮层-皮层反馈使视觉皮层中的活性树突参与活动。

Cortico-cortical feedback engages active dendrites in visual cortex.

机构信息

Wolfson Institute for Biomedical Research and Department of Neuroscience, Physiology and Pharmacology, University College London, London, UK.

出版信息

Nature. 2023 May;617(7962):769-776. doi: 10.1038/s41586-023-06007-6. Epub 2023 May 3.

Abstract

Sensory processing in the neocortex requires both feedforward and feedback information flow between cortical areas. In feedback processing, higher-level representations provide contextual information to lower levels, and facilitate perceptual functions such as contour integration and figure-ground segmentation. However, we have limited understanding of the circuit and cellular mechanisms that mediate feedback influence. Here we use long-range all-optical connectivity mapping in mice to show that feedback influence from the lateromedial higher visual area (LM) to the primary visual cortex (V1) is spatially organized. When the source and target of feedback represent the same area of visual space, feedback is relatively suppressive. By contrast, when the source is offset from the target in visual space, feedback is relatively facilitating. Two-photon calcium imaging data show that this facilitating feedback is nonlinearly integrated in the apical tuft dendrites of V1 pyramidal neurons: retinotopically offset (surround) visual stimuli drive local dendritic calcium signals indicative of regenerative events, and two-photon optogenetic activation of LM neurons projecting to identified feedback-recipient spines in V1 can drive similar branch-specific local calcium signals. Our results show how neocortical feedback connectivity and nonlinear dendritic integration can together form a substrate to support both predictive and cooperative contextual interactions.

摘要

在新皮层中,感觉处理需要皮质区域之间的前馈和反馈信息流。在反馈处理中,更高层次的表示为较低层次提供上下文信息,并促进轮廓整合和图形-背景分割等感知功能。然而,我们对介导反馈影响的电路和细胞机制知之甚少。在这里,我们使用在小鼠中进行的长程全光学连接映射,表明从中侧更高视觉区域(LM)到初级视觉皮层(V1)的反馈影响在空间上是有组织的。当反馈的源和目标代表相同的视觉空间区域时,反馈相对具有抑制性。相比之下,当源在视觉空间中与目标偏移时,反馈相对具有促进作用。双光子钙成像数据表明,这种促进性反馈在 V1 锥体神经元的顶树突中进行非线性整合:视网膜空间偏移(环绕)视觉刺激驱动局部树突钙信号,表明再生事件,并且向在 V1 中确定的反馈接受者棘突投射的投射到 LM 神经元的双光子光遗传学激活可以驱动类似的分支特异性局部钙信号。我们的结果表明,新皮层反馈连接和非线性树突整合如何共同形成支持预测和协作上下文交互的基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8528/10244179/e6e9fe993df2/41586_2023_6007_Fig1_HTML.jpg

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