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数量的神经编码。

Neural coding of numerousness.

机构信息

Centre for Mind/Brain Science, CIMeC, University of Trento, Rovereto, Italy.

Centre for Mind/Brain Science, CIMeC, University of Trento, Rovereto, Italy.

出版信息

Biosystems. 2023 Oct;232:104999. doi: 10.1016/j.biosystems.2023.104999. Epub 2023 Aug 11.

Abstract

Perception of numerousness, i.e. number of items in a set, is an important cognitive ability, which is present in several animal taxa. In spite of obvious differences in neuroanatomy, insects, fishes, reptiles, birds, and mammals all possess a "number sense". Furthermore, information regarding numbers can belong to different sensory modalities: animals can estimate a number of visual items, a number of tones, or a number of their own movements. Given both the heterogeneity of stimuli and of the brains processing these stimuli, it is hard to imagine that number cognition can be traced back to the same evolutionary conserved neural pathway. However, neurons that selectively respond to the number of stimuli have been described in higher-order integration brain centres both in primates and in birds, two evolutionary distant groups. Although most probably not of the same evolutionary origin, these number neurons share remarkable similarities in their response properties. Instead of homology, this similarity might result from computational advantages of the underlying coding mechanism. This means that one might expect numerousness information to undergo similar steps of neural processing even in evolutionary distant neural pathways. Following this logic, in this review we summarize our current knowledge of how numerousness is processed in the brain from sensory input to coding of abstract information in the higher-order integration centres. We also propose a list of key open questions that might promote future research on number cognition.

摘要

多数感知,即集合中项目的数量,是一种重要的认知能力,存在于几个动物分类群中。尽管神经解剖学存在明显差异,但昆虫、鱼类、爬行动物、鸟类和哺乳动物都具有“数字感”。此外,关于数字的信息可以属于不同的感觉模式:动物可以估计视觉项目的数量、音调的数量或自身运动的数量。鉴于刺激的异质性和处理这些刺激的大脑的异质性,很难想象数字认知可以追溯到相同的进化保守的神经通路。然而,在灵长类动物和鸟类等进化距离较远的两个群体的高级整合脑区中,已经描述了选择性地对刺激数量做出反应的神经元。尽管这些数量神经元可能不是同源的,但它们在反应特性上具有显著的相似性。这种相似性不是由于同源性,而是由于潜在编码机制的计算优势。这意味着人们可能期望数量信息即使在进化距离较远的神经通路中,也会经历类似的神经处理步骤。基于此逻辑,在本文中,我们总结了目前关于数量在从感觉输入到高级整合中心的抽象信息编码的大脑中是如何处理的知识。我们还提出了一系列关键的开放性问题,这些问题可能会促进未来对数字认知的研究。

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