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大鼠外侧纹外皮层中视觉对象的变换耐受表征的出现。

Emergence of transformation-tolerant representations of visual objects in rat lateral extrastriate cortex.

作者信息

Tafazoli Sina, Safaai Houman, De Franceschi Gioia, Rosselli Federica Bianca, Vanzella Walter, Riggi Margherita, Buffolo Federica, Panzeri Stefano, Zoccolan Davide

机构信息

Visual Neuroscience Lab, International School for Advanced Studies (SISSA), Trieste, Italy.

Laboratory of Neural Computation, Center for Neuroscience and Cognitive Systems @UniTn, Istituto Italiano di Tecnologia, Rovereto, Italy.

出版信息

Elife. 2017 Apr 11;6:e22794. doi: 10.7554/eLife.22794.

Abstract

Rodents are emerging as increasingly popular models of visual functions. Yet, evidence that rodent visual cortex is capable of advanced visual processing, such as object recognition, is limited. Here we investigate how neurons located along the progression of extrastriate areas that, in the rat brain, run laterally to primary visual cortex, encode object information. We found a progressive functional specialization of neural responses along these areas, with: (1) a sharp reduction of the amount of low-level, energy-related visual information encoded by neuronal firing; and (2) a substantial increase in the ability of both single neurons and neuronal populations to support discrimination of visual objects under identity-preserving transformations (e.g., position and size changes). These findings strongly argue for the existence of a rat object-processing pathway, and point to the rodents as promising models to dissect the neuronal circuitry underlying transformation-tolerant recognition of visual objects.

摘要

啮齿动物正日益成为视觉功能研究中越来越受欢迎的模型。然而,关于啮齿动物视觉皮层能够进行高级视觉处理(如物体识别)的证据却很有限。在此,我们研究了位于大鼠大脑中沿着纹外区域排列的神经元,这些区域横向于初级视觉皮层,它们是如何编码物体信息的。我们发现,沿着这些区域,神经反应呈现出逐渐的功能特化,具体表现为:(1)神经元放电所编码的低水平、与能量相关的视觉信息量急剧减少;(2)单个神经元和神经元群体在保持物体身份的变换(如位置和大小变化)下支持视觉物体辨别的能力大幅增加。这些发现有力地证明了大鼠存在物体处理通路,并表明啮齿动物是剖析视觉物体变换容忍识别背后神经回路的有前景的模型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a9d2/5388540/ba938b79235f/elife-22794-fig1.jpg

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