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Neural pathways and computations that achieve stable contrast processing tuned to natural scenes

Biology

Neural pathways and computations that achieve stable contrast processing tuned to natural scenes

B. Gür, L. Ramirez, et al.

This groundbreaking research by Burak Gür, Luisa Ramirez, Jacqueline Cornean, Freya Thurn, Sebastian Molina-Obando, Giordano Ramos-Traslosheros, and Marion Silies uncovers the intricate algorithms behind rapid luminance gain control in Drosophila, ensuring stable visual processing even in dynamic environments. Discover how specific neurons achieve this feat, enhancing our understanding of visual systems.... show more
Abstract
Natural scenes are highly dynamic, challenging the reliability of visual processing. Yet, humans and many animals perform accurate visual behaviors, whereas computer vision devices struggle with rapidly changing background luminance. How does animal vision achieve this? Here, we reveal the algorithms and mechanisms of rapid luminance gain control in Drosophila, resulting in stable visual processing. We identify specific transmedullary neurons as the site of luminance gain control, which pass this property to direction-selective cells. The circuitry further involves wide-field neurons, matching computational predictions that local spatial pooling drive optimal contrast processing in natural scenes when light conditions change rapidly. Experiments and theory argue that a spatially pooled luminance signal achieves luminance gain control via divisive normalization. This process relies on shunting inhibition using the glutamate-gated chloride channel GluClα. Our work describes how the fly robustly processes visual information in dynamically changing natural scenes, a common challenge of all visual systems.
Publisher
Nature Communications
Published On
Oct 03, 2024
Authors
Burak Gür, Luisa Ramirez, Jacqueline Cornean, Freya Thurn, Sebastian Molina-Obando, Giordano Ramos-Traslosheros, Marion Silies
Tags
Drosophila
luminance gain control
visual processing
transmedullary neurons
divisive normalization
contrast processing
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