Animals discriminate stimuli, learn their predictive value and use this knowledge to modify their behavior. In Drosophila, the mushroom body (MB) plays a key role in these processes. Sensory stimuli are sparsely represented by ∼2000 Kenyon cells, which converge onto 34 output neurons (MBONs) of 21 types. We studied the role of MBONs in several associative learning tasks and in sleep regulation, revealing the extent to which information flow is segregated into distinct channels and suggesting possible roles for the multi-layered MBON network. We also show that optogenetic activation of MBONs can, depending on cell type, induce repulsion or attraction in flies. The behavioral effects of MBON perturbation are combinatorial, suggesting that the...
Although all sensory circuits ascend to higher brain areas where stimuli are represented in sparse, ...
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 ...
Animals discriminate stimuli, learn their predictive value and use this knowledge to modify their be...
Learning allows animals to adapt their behaviour to changes in the environment. In humans and other ...
SummaryDuring olfactory learning in fruit flies, dopaminergic neurons assign value to odor represent...
Learning permits animals to attach meaning and context to sensory stimuli. How this information is c...
During olfactory associative learning in Drosophila, odors activate specific subsets of intrinsic mu...
Summary: Dopaminergic neurons play a key role in encoding associative memories, but little is known ...
Neuromodulation permits flexibility of synapses, neural circuits, and ultimately behavior. One neuro...
The brain adaptively integrates present sensory input, past experience, and options for future actio...
The brain adaptively integrates present sensory input, past experience, and options for future actio...
Neuromodulation permits flexibility of synapses, neural circuits, and ultimately behavior. One neuro...
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...
Although all sensory circuits ascend to higher brain areas where stimuli are represented in sparse, ...
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 ...
Animals discriminate stimuli, learn their predictive value and use this knowledge to modify their be...
Learning allows animals to adapt their behaviour to changes in the environment. In humans and other ...
SummaryDuring olfactory learning in fruit flies, dopaminergic neurons assign value to odor represent...
Learning permits animals to attach meaning and context to sensory stimuli. How this information is c...
During olfactory associative learning in Drosophila, odors activate specific subsets of intrinsic mu...
Summary: Dopaminergic neurons play a key role in encoding associative memories, but little is known ...
Neuromodulation permits flexibility of synapses, neural circuits, and ultimately behavior. One neuro...
The brain adaptively integrates present sensory input, past experience, and options for future actio...
The brain adaptively integrates present sensory input, past experience, and options for future actio...
Neuromodulation permits flexibility of synapses, neural circuits, and ultimately behavior. One neuro...
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...
Although all sensory circuits ascend to higher brain areas where stimuli are represented in sparse, ...
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 ...