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Why do we see colors in a black-and-white top?

08.19.26 | National Institutes of Natural Sciences
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When a pattern drawn only in black and white is rotated, people sometimes perceive colors that are not actually present. This phenomenon is known as “subjective color” and has been studied for approximately 200 years as one of the remarkable mysteries of vision. Among such phenomena, Benham’s top is a well-known example in which colors are perceived simply by spinning a black-and-white disk.

A research group led by Kyohei Ueda, a graduate student at the Laboratory of Neurophysiology, National Institute for Basic Biology, and SOKENDAI; Dr. Lana Sinapayen, a researcher at Sony Computer Science Laboratories Kyoto and concurrently a Project Associate Professor at the AI Analysis Unit, Center for Trans-Scale Biology, National Institute for Basic Biology; and Associate Professor Eiji Watanabe of the Laboratory of Neurophysiology, National Institute for Basic Biology, who also serves as Head of the AI Analysis Unit, Center for Trans-Scale Biology, and Associate Professor at SOKENDAI, used an artificial neural network trained through predictive learning to investigate the mechanism underlying this subjective color phenomenon.

The research group presented a black-and-white Benham’s top to an AI model that had been trained to predict “what kind of image will come next” after viewing natural videos. Although the input images contained no color information at all, faint colors appeared in the images predicted by the AI. Furthermore, the artificially generated colors were found to change depending on the colors of moving objects contained in the videos used to train the AI. Analyses using natural videos, 3D computer graphics, and simple two-dimensional videos of moving red, green, and blue squares suggested that learning the association between motion and color may be one factor that enables colors to emerge from black-and-white stimuli.

This study suggests that subjective color may not be a phenomenon completed solely within the retina, but may also be related to the brain’s function of predicting future visual input based on past experience. By using AI, the study provides a new clue to the classical mystery of why colors are perceived from a black-and-white spinning top.

These findings were published in Scientific Reports .

Scientific Reports

10.1038/s41598-026-57953-w

Predictive networks generate motion-induced color illusions

16-Jun-2026

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Public Relations Group
National Institute for Basic Biology, NINS
press@nibb.ac.jp

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This article is based on a news release from National Institutes of Natural Sciences. BrightSurf curates and republishes science news from research institutions worldwide; the original release is linked below.

How to Cite This Article

APA:
National Institutes of Natural Sciences. (2026, August 19). Why do we see colors in a black-and-white top?. Brightsurf News. https://www.brightsurf.com/news/147Z2PJ1/why-do-we-see-colors-in-a-black-and-white-top.html
MLA:
"Why do we see colors in a black-and-white top?." Brightsurf News, Aug. 19 2026, https://www.brightsurf.com/news/147Z2PJ1/why-do-we-see-colors-in-a-black-and-white-top.html.