During olfactory associative learning in Drosophila, odors activate specific subsets of intrinsic mushroom body (MB) neurons. Coincident exposure to either rewards or punishments is thought to activate extrinsic dopaminergic neurons, which modulate synaptic connections between odor-encoding MB neurons and MB output neurons to alter behaviors. However, here we identify two classes of intrinsic MB γ neurons based on cAMP response element (CRE)-dependent expression, γCRE-p and γCRE-n, which encode aversive and appetitive valences. γCRE-p and γCRE-n neurons act antagonistically to maintain neutral valences for neutral odors. Activation or inhibition of either cell type upsets this balance, toggling odor preferences to either positive or negativ...
In Drosophila, negatively reinforcing dopaminergic neurons also provide the inhibitory control of sa...
SummaryAnimals continuously evaluate sensory information to decide on their next action. Different s...
The brain adaptively integrates present sensory input, past experience, and options for future actio...
SummaryDuring olfactory learning in fruit flies, dopaminergic neurons assign value to odor represent...
During olfactory learning in fruit flies, dopaminergic neurons assign value to odor representations ...
During olfactory learning in fruit flies, dopaminergic neurons assign value to odor representations ...
In Drosophila, anatomically discrete dopamine neurons that innervate distinct zones of the mushroom ...
Summary: Odor-based learning and innate odor-driven behavior have been hypothesized to require separ...
In Drosophila, anatomically discrete dopamine neurons that innervate distinct zones of the mushroom ...
SummaryIn Drosophila, anatomically discrete dopamine neurons that innervate distinct zones of the mu...
Summary: Dopaminergic neurons play a key role in encoding associative memories, but little is known ...
Summary Mushroom body (MB)-dependent olfactory learning in Drosophila provides a powerful model to i...
In Drosophila, negatively reinforcing dopaminergic neurons also provide the inhibitory control of sa...
SummaryIn Drosophila, negatively reinforcing dopaminergic neurons also provide the inhibitory contro...
Animals continuously evaluate sensory information to decide on their next action. Different sensory ...
In Drosophila, negatively reinforcing dopaminergic neurons also provide the inhibitory control of sa...
SummaryAnimals continuously evaluate sensory information to decide on their next action. Different s...
The brain adaptively integrates present sensory input, past experience, and options for future actio...
SummaryDuring olfactory learning in fruit flies, dopaminergic neurons assign value to odor represent...
During olfactory learning in fruit flies, dopaminergic neurons assign value to odor representations ...
During olfactory learning in fruit flies, dopaminergic neurons assign value to odor representations ...
In Drosophila, anatomically discrete dopamine neurons that innervate distinct zones of the mushroom ...
Summary: Odor-based learning and innate odor-driven behavior have been hypothesized to require separ...
In Drosophila, anatomically discrete dopamine neurons that innervate distinct zones of the mushroom ...
SummaryIn Drosophila, anatomically discrete dopamine neurons that innervate distinct zones of the mu...
Summary: Dopaminergic neurons play a key role in encoding associative memories, but little is known ...
Summary Mushroom body (MB)-dependent olfactory learning in Drosophila provides a powerful model to i...
In Drosophila, negatively reinforcing dopaminergic neurons also provide the inhibitory control of sa...
SummaryIn Drosophila, negatively reinforcing dopaminergic neurons also provide the inhibitory contro...
Animals continuously evaluate sensory information to decide on their next action. Different sensory ...
In Drosophila, negatively reinforcing dopaminergic neurons also provide the inhibitory control of sa...
SummaryAnimals continuously evaluate sensory information to decide on their next action. Different s...
The brain adaptively integrates present sensory input, past experience, and options for future actio...