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什么 在哪里:作为视觉系统的典型组织原则的位置依赖特征敏感性。

What Where: Location-Dependent Feature Sensitivity as a Canonical Organizing Principle of the Visual System.

机构信息

Functional Architecture and Development of Cerebral Cortex, Max Planck Florida Institute for Neuroscience, Jupiter, FL, United States.

出版信息

Front Neural Circuits. 2022 Apr 12;16:834876. doi: 10.3389/fncir.2022.834876. eCollection 2022.

Abstract

Traditionally, functional representations in early visual areas are conceived as retinotopic maps preserving ego-centric spatial location information while ensuring that other stimulus features are uniformly represented for all locations in space. Recent results challenge this framework of relatively independent encoding of location and features in the early visual system, emphasizing location-dependent feature sensitivities that reflect specialization of cortical circuits for different locations in visual space. Here we review the evidence for such location-specific encoding including: (1) systematic variation of functional properties within conventional retinotopic maps in the cortex; (2) novel periodic retinotopic transforms that dramatically illustrate the tight linkage of feature sensitivity, spatial location, and cortical circuitry; and (3) retinotopic biases in cortical areas, and groups of areas, that have been defined by their functional specializations. We propose that location-dependent feature sensitivity is a fundamental organizing principle of the visual system that achieves efficient representation of positional regularities in visual experience, and reflects the evolutionary selection of sensory and motor circuits to optimally represent behaviorally relevant information. Future studies are necessary to discover mechanisms underlying joint encoding of location and functional information, how this relates to behavior, emerges during development, and varies across species.

摘要

传统上,早期视觉区域的功能表示被设想为保留自我中心空间位置信息的视网膜映射图,同时确保所有空间位置的其他刺激特征得到统一表示。最近的结果挑战了早期视觉系统中位置和特征相对独立编码的这一框架,强调了位置依赖的特征敏感性,反映了皮质回路对视觉空间中不同位置的专业化。在这里,我们回顾了这种位置特异性编码的证据,包括:(1)在皮质中常规视网膜映射图内的功能特性的系统变化;(2)新颖的周期性视网膜映射变换,这些变换极大地说明了特征敏感性、空间位置和皮质回路的紧密联系;(3)通过其功能专业化定义的皮质区域和区域组的视网膜偏置。我们提出,位置依赖的特征敏感性是视觉系统的一个基本组织原则,它实现了对视觉经验中位置规律的有效表示,并反映了感觉和运动回路的进化选择,以最佳地表示与行为相关的信息。未来的研究需要发现位置和功能信息联合编码的机制,以及它如何与行为相关,在发展过程中出现以及在不同物种中变化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/93e8/9039279/169d7046125c/fncir-16-834876-g001.jpg

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