A new computational model shows how cortical feedback slashes neural chaos by 93%, explaining how our vision stays stable despite fluctuating brain activity.
Using simulations, robots, and live fish, scientists at EPFL and Duke University have replicated the neural circuitry that allows zebrafish to react to visual stimuli and maintain their position in ...
Neuroscientists uncover how the visual cortex builds consensus, rapidly weeding out conflicting sensory signals to form unified perceptions.
Using zebrafish larvae as a model organism, researchers investigated the cooperative mechanisms between the eyes and the brain that underlie visual function restoration following optic nerve injury.
Neuroscientists want to understand how individual neurons encode information that allows us to distinguish objects, like telling a leaf apart from a rock. But they have struggled to build ...
The environment experienced by young zebrafish influences both the shape and electrical activity of the neurons in the eye, which impacts subsequent behavior. Neuroscientists at King's College London ...
A study provides new details about how the brain’s motor cortex reacts when people watch actions by agents that may appear ...
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