Abstract
SummaryPressures for survival drive sensory circuit adaption to a species’ habitat, making it essential to statistically characterise natural scenes. Mice, a prominent visual system model, are dichromatic with enhanced sensitivity to green and UV. Their visual environment, however, is rarely considered. Here, we built a UV-green camera to record footage from mouse habitats. We found chromatic contrast to greatly diverge in the upper but not the lower visual field, an environmental difference that may underlie the species’ superior colour discrimination in the upper visual field. Moreover, training an autoencoder on upper but not lower visual field scenes was sufficient for the emergence of colour-opponent filters. Furthermore, the upper visual field was biased towards dark UV contrasts, paralleled by more light-offset-sensitive cells in the ventral retina. Finally, footage recorded at twilight suggests that UV promotes aerial predator detection. Our findings support that natural scene statistics shaped early visual processing in evolution.Lead contactFurther information and requests for resources and reagents should be directed to and will be fulfilled by the Lead Contact, Thomas Euler (thomas.euler@cin.uni-tuebingen.de)
Publisher
Cold Spring Harbor Laboratory
Reference106 articles.
1. Abbasi-Asl, R. , Pehlevan, C. , Yu, B. , and Chklovskii, D. (2016). Do retinal ganglion cells project natural scenes to their principal subspace and whiten them? 2016 50th Asilomar Conference on Signals, Systems and Computers.
2. Thermal Activation and Photoactivation of Visual Pigments
3. Ultraviolet reflectance in fruits, ambient light composition and fruit removal in a tropical forest;Evol. Ecol. Res,2001
4. The Murine Cone Photoreceptor
5. Some informational aspects of visual perception.
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