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小鼠感知主观轮廓的能力。

Mouse Ability to Perceive Subjective Contours.

作者信息

Okuyama-Uchimura Fumi, Komai Shoji

机构信息

Graduate School of Biological Sciences, Nara Institute of Science and Technology, Nara, Japan.

Graduate School of Biological Sciences, Nara Institute of Science and Technology, Nara, Japan Precursory Research for Embryonic Science and Technology, Japan Science and Technology Agency, Saitama, Japan

出版信息

Perception. 2016 Mar;45(3):315-27. doi: 10.1177/0301006615614440. Epub 2015 Nov 2.

Abstract

In contrast to the previously held notion that mice have a weak visual system, it is now generally accepted that mice can perceive rather complicated figures in various contexts such as in cognitive experiments and in social settings. Here, we show that mice could even be capable of perceiving a visual illusion--subjective contours. This illusion requires the visual system to compensate for a lack of visual information in compressed 2D images on the retina. In this experiment, we trained mice to respond appropriately to a rectangle-shaped rewarded figure of specific orientation in a two-choice visual discrimination task with a touchscreen monitor. In Transfer Test 1, mice could discriminate illusory rectangle-shaped figures significantly as compared with a figure, which did not induce illusory figures. In Transfer Test 2, the choice rate of targets decreased with imperfect illusory figures, which produced weak perception of rotated or deficient inducers. Moreover, in Transfer Test 3, mice could not discriminate the low-resolution illusory figure, which also induced weak perception. These results demonstrated the possibility that mice might be useful for investigating fundamental properties of the neural visual system.

摘要

与之前认为小鼠视觉系统较弱的观念相反,现在人们普遍认为小鼠能够在各种情境中,如认知实验和社交环境中,感知相当复杂的图形。在此,我们表明小鼠甚至能够感知一种视觉错觉——主观轮廓。这种错觉要求视觉系统弥补视网膜上压缩二维图像中视觉信息的缺失。在本实验中,我们训练小鼠在使用触摸屏显示器的二选一视觉辨别任务中,对特定方向的矩形奖励图形做出适当反应。在转移测试1中,与未诱发错觉图形的图形相比,小鼠能够显著辨别错觉矩形图形。在转移测试2中,目标的选择率随着不完美的错觉图形而降低,这些图形产生了对旋转或有缺陷诱导物的微弱感知。此外,在转移测试3中,小鼠无法辨别低分辨率的错觉图形,该图形也诱导出微弱的感知。这些结果证明了小鼠可能有助于研究神经视觉系统基本特性的可能性。

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