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小鼠大脑皮层的用于视觉流预测的感觉运动回路。

A Sensorimotor Circuit in Mouse Cortex for Visual Flow Predictions.

机构信息

Friedrich Miescher Institute for Biomedical Research, Basel, Switzerland.

Friedrich Miescher Institute for Biomedical Research, Basel, Switzerland; Faculty of Natural Sciences, University of Basel, Basel, Switzerland.

出版信息

Neuron. 2017 Sep 13;95(6):1420-1432.e5. doi: 10.1016/j.neuron.2017.08.036.

Abstract

The cortex is organized as a hierarchical processing structure. Feedback from higher levels of the hierarchy, known as top-down signals, have been shown to be involved in attentional and contextual modulation of sensory responses. Here we argue that top-down input to the primary visual cortex (V1) from A24b and the adjacent secondary motor cortex (M2) signals a prediction of visual flow based on motor output. A24b/M2 sends a dense and topographically organized projection to V1 that targets most neurons in layer 2/3. By imaging the activity of A24b/M2 axons in V1 of mice learning to navigate a 2D virtual environment, we found that their activity was strongly correlated with locomotion and resulting visual flow feedback in an experience-dependent manner. When mice were trained to navigate a left-right inverted virtual environment, correlations of neural activity with behavior reversed to match visual flow. These findings are consistent with a predictive coding interpretation of visual processing.

摘要

大脑皮层组织为分层处理结构。来自层级较高的反馈,即所谓的自上而下的信号,已被证明参与了对感觉反应的注意和上下文的调制。在这里,我们认为来自 A24b 和相邻的次级运动皮层 (M2) 的对初级视觉皮层 (V1) 的自上而下的输入信号基于运动输出对视觉流的预测。A24b/M2 向 V1 发送密集的、具有拓扑结构的投射,靶向大多数 2/3 层的神经元。通过对学习在二维虚拟环境中导航的小鼠的 V1 中的 A24b/M2 轴突的活动进行成像,我们发现它们的活动与运动以及以经验依赖的方式产生的视觉流反馈强烈相关。当小鼠被训练在左右反转的虚拟环境中导航时,与行为的神经活动相关性会逆转以匹配视觉流。这些发现与视觉处理的预测编码解释一致。

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