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数值无知乌鸦后脑神经元自发编码视觉数量。

Neurons in the Endbrain of Numerically Naive Crows Spontaneously Encode Visual Numerosity.

机构信息

Animal Physiology Unit, Institute of Neurobiology, Auf der Morgenstelle 28, University of Tübingen, 72076 Tübingen, Germany.

Animal Physiology Unit, Institute of Neurobiology, Auf der Morgenstelle 28, University of Tübingen, 72076 Tübingen, Germany.

出版信息

Curr Biol. 2018 Apr 2;28(7):1090-1094.e4. doi: 10.1016/j.cub.2018.02.023. Epub 2018 Mar 15.

Abstract

Endowed with an elaborate cerebral cortex, humans and other primates can assess the number of items in a set, or numerosity, from birth on [1] and without being trained [2]. Whether spontaneous numerosity extraction is a unique feat of the mammalian cerebral cortex [3-7] or rather an adaptive property that can be found in differently designed and independently evolved neural substrates, such as the avian enbrain [8], is unknown. To address this question, we recorded single-cell activity from the nidopallium caudolaterale (NCL), a high-level avian association brain area [9-11], of numerically naive crows. We found that a proportion of NCL neurons were spontaneously responsive to numerosity and tuned to the number of items, even though the crows were never trained to assess numerical quantity. Our data show that numerosity-selective neuronal responses are spontaneously present in the distinct endbrains of diverge vertebrate taxa. This seemingly hard-wired property of the avian endbrain to extract numerical quantity explains how birds in the wild, or right after hatching, can exploit numerical cues when making foraging or social decisions. It suggests that endbrain circuitries that evolved based on convergent evolution, such as the avian endbrain, give rise to the same numerosity code.

摘要

人类和其他灵长类动物拥有精细的大脑皮层,能够从出生起就无需训练地评估集合中的项目数量,即数量[1]。自发的数量提取是哺乳动物大脑皮层的独特特征[3-7],还是可以在不同设计和独立进化的神经基质中找到的适应性特征,如鸟类的脑[8],目前尚不清楚。为了解决这个问题,我们记录了数值上无知的乌鸦的尾侧苍白球(NCL)中单个细胞的活动,NCL 是一个高级鸟类关联脑区[9-11]。我们发现,尽管乌鸦从未接受过评估数量的训练,但一部分 NCL 神经元对数量具有自发反应性,并对项目数量进行了调整。我们的数据表明,数量选择性神经元反应在不同的脊椎动物分类群的独特端脑中自发存在。这种鸟类端脑提取数量的固有特性解释了野生动物或孵化后不久的鸟类如何在觅食或社交决策中利用数量线索。这表明,基于趋同进化而进化的端脑回路,如鸟类端脑,会产生相同的数量代码。

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