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鸟类大脑中的视觉类别和概念。

Visual categories and concepts in the avian brain.

机构信息

Biopsychology, Faculty of Psychology, Ruhr University Bochum, 44780, Bochum, Germany.

Neural Basis of Learning, Faculty of Psychology, Ruhr University Bochum, 44780, Bochum, Germany.

出版信息

Anim Cogn. 2023 Jan;26(1):153-173. doi: 10.1007/s10071-022-01711-8. Epub 2022 Nov 10.

Abstract

Birds are excellent model organisms to study perceptual categorization and concept formation. The renewed focus on avian neuroscience has sparked an explosion of new data in the field. At the same time, our understanding of sensory and particularly visual structures in the avian brain has shifted fundamentally. These recent discoveries have revealed how categorization is mediated in the avian brain and has generated a theoretical framework that goes beyond the realm of birds. We review the contribution of avian categorization research-at the methodical, behavioral, and neurobiological levels. To this end, we first introduce avian categorization from a behavioral perspective and the common elements model of categorization. Second, we describe the functional and structural organization of the avian visual system, followed by an overview of recent anatomical discoveries and the new perspective on the avian 'visual cortex'. Third, we focus on the neurocomputational basis of perceptual categorization in the bird's visual system. Fourth, an overview of the avian prefrontal cortex and the prefrontal contribution to perceptual categorization is provided. The fifth section outlines how asymmetries of the visual system contribute to categorization. Finally, we present a mechanistic view of the neural principles of avian visual categorization and its putative extension to concept learning.

摘要

鸟类是研究感知分类和概念形成的优秀模式生物。对鸟类神经科学的重新关注引发了该领域新数据的爆炸式增长。与此同时,我们对鸟类大脑中感觉,特别是视觉结构的理解已经从根本上发生了转变。这些最新发现揭示了在鸟类大脑中如何进行分类,并产生了超越鸟类领域的理论框架。我们回顾了鸟类分类研究在方法论、行为和神经生物学层面上的贡献。为此,我们首先从行为的角度介绍鸟类的分类和分类的常见元素模型。其次,我们描述了鸟类视觉系统的功能和结构组织,接着概述了最近的解剖学发现以及对鸟类“视觉皮层”的新视角。第三,我们专注于鸟类视觉系统中感知分类的神经计算基础。第四,概述了鸟类的前额叶皮层以及前额叶对感知分类的贡献。第五部分概述了视觉系统的不对称性如何有助于分类。最后,我们提出了鸟类视觉分类的神经原理的机制观点及其对概念学习的潜在扩展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3780/9877096/8608436e2b77/10071_2022_1711_Fig1_HTML.jpg

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