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鼠类视觉皮层区域代表了习得视觉类别的知觉和语义特征。

Mouse visual cortex areas represent perceptual and semantic features of learned visual categories.

机构信息

Max Planck Institute of Neurobiology, Martinsried, Germany.

Graduate School of Systemic Neurosciences, Ludwig-Maximilians-Universität München, Martinsried, Germany.

出版信息

Nat Neurosci. 2021 Oct;24(10):1441-1451. doi: 10.1038/s41593-021-00914-5. Epub 2021 Sep 20.

Abstract

Associative memories are stored in distributed networks extending across multiple brain regions. However, it is unclear to what extent sensory cortical areas are part of these networks. Using a paradigm for visual category learning in mice, we investigated whether perceptual and semantic features of learned category associations are already represented at the first stages of visual information processing in the neocortex. Mice learned categorizing visual stimuli, discriminating between categories and generalizing within categories. Inactivation experiments showed that categorization performance was contingent on neuronal activity in the visual cortex. Long-term calcium imaging in nine areas of the visual cortex identified changes in feature tuning and category tuning that occurred during this learning process, most prominently in the postrhinal area (POR). These results provide evidence for the view that associative memories form a brain-wide distributed network, with learning in early stages shaping perceptual representations and supporting semantic content downstream.

摘要

联想记忆存储在分布于多个脑区的网络中。然而,尚不清楚感觉皮质区在这些网络中占多大程度。我们采用了一种用于在小鼠中进行视觉类别学习的范例,研究了在新皮层的视觉信息处理的早期阶段,学习的类别联想的感知和语义特征是否已经存在。小鼠学会了对视觉刺激进行分类,区分类别并在类别内进行泛化。失活实验表明,分类性能取决于视皮层中的神经元活动。在视觉皮层的九个区域进行的长期钙成像确定了在学习过程中特征调谐和类别调谐的变化,在后穹窿区(POR)最为明显。这些结果为联想记忆形成大脑广泛分布的网络的观点提供了证据,在早期阶段的学习塑造了感知表示,并支持下游的语义内容。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7795/8481127/0fcaa10a243d/41593_2021_914_Fig1_HTML.jpg

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