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斑马鱼皮层背-中区域神经元对视觉数量变化的反应。

Neurons in the Dorso-Central Division of Zebrafish Pallium Respond to Change in Visual Numerosity.

机构信息

Center for Mind/Brain Sciences, University of Trento, Rovereto 38068, Italy.

Department of Psychology and Cognitive Science, University of Trento, Rovereto 38068, Italy.

出版信息

Cereb Cortex. 2022 Jan 10;32(2):418-428. doi: 10.1093/cercor/bhab218.

Abstract

We found a region of the zebrafish pallium that shows selective activation upon change in the numerosity of visual stimuli. Zebrafish were habituated to sets of small dots that changed in individual size, position, and density, while maintaining their numerousness and overall surface. During dishabituation tests, zebrafish faced a change in number (with the same overall surface), in shape (with the same overall surface and number), or in size (with the same shape and number) of the dots, whereas, in a control group, zebrafish faced the same stimuli as during the habituation. Modulation of the expression of the immediate early genes c-fos and egr-1 and in situ hybridization revealed a selective activation of the caudal part of the dorso-central division of the zebrafish pallium upon change in numerosity. These findings support the existence of an evolutionarily conserved mechanism for approximate magnitude and provide an avenue for understanding its underlying molecular correlates.

摘要

我们发现斑马鱼大脑皮层的一个区域,在视觉刺激数量发生变化时会选择性地激活。斑马鱼习惯于一组大小、位置和密度不断变化的小点,同时保持其数量和整体表面积不变。在去习惯化测试中,斑马鱼面临着点数的变化(整体表面积相同)、形状的变化(整体表面积和数量相同)或大小的变化(形状和数量相同),而在对照组中,斑马鱼面临的刺激与习惯化过程中相同。即时早期基因 c-fos 和 egr-1 的表达的调节以及原位杂交显示,在数量发生变化时,斑马鱼大脑皮层背侧中央分裂的尾部选择性地激活。这些发现支持了一种进化上保守的近似大小机制的存在,并为理解其潜在的分子相关性提供了途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f975/8754367/0c088a3da9f6/bhab218f1.jpg

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