Closely related subtypes of dopamine-releasing neurons may play entirely separate roles in processing sensory information, ...
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AI uncovers hidden mechanisms of covert attention and emergent neuron types
Shifting focus on a visual scene without moving our eyes - think driving, or reading a room for the reaction to your joke - ...
Closely related dopamine-releasing neurons in the olfactory bulb behave in fundamentally different ways depending on their physical structure.
Neurons can rapidly rebalance their communication using a structural signal rather than electrical activity, overturning long-held assumptions about how synapses maintain stability.
Our mushy brains seem a far cry from the solid silicon chips in computer processors, but scientists have a long history of comparing the two. As Alan Turing put it in 1952: “We are not interested in ...
Every movement you make and every memory you form depends on precise communication between neurons. When that communication is disrupted, the brain must rapidly rebalance its internal signaling to ...
Closely related subtypes of dopamine-releasing neurons may play entirely separate roles in processing sensory information, depending on their physical ...
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