Discrete Serotonin Systems Mediate Memory Enhancement and Escape Latencies after Unpredicted Aversive Experience in Drosophila Place Memory

scientific article published on 11 December 2017

Discrete Serotonin Systems Mediate Memory Enhancement and Escape Latencies after Unpredicted Aversive Experience in Drosophila Place Memory is …
instance of (P31):
scholarly articleQ13442814

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P356DOI10.3389/FNSYS.2017.00092
P932PMC publication ID5732137
P698PubMed publication ID29321732

P2093author name stringTroy Zars
Divya Sitaraman
Daniela Ostrowski
Elizabeth F Kramer
Lily Kahsai
P2860cites workPlace memory formation in Drosophila is independent of proper octopamine signalingQ43129973
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Tissue-specific expression of a type I adenylyl cyclase rescues the rutabaga mutant memory defect: in search of the engramQ34646604
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Stressor controllability and learned helplessness: the roles of the dorsal raphe nucleus, serotonin, and corticotropin-releasing factorQ36127587
Inescapable Stress Changes Walking Behavior in Flies - Learned Helplessness RevisitedQ36201202
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A Subset of Serotonergic Neurons Evokes Hunger in Adult DrosophilaQ38966821
The beauty of the network in the brain and the origin of the mind in the control of behaviorQ39212288
Lack of prediction for high-temperature exposures enhances Drosophila place learningQ39817416
Learned HelplessnessQ39921518
P304page(s)92
P577publication date2017-12-11
P1433published inFrontiers in Systems NeuroscienceQ15816495
P1476titleDiscrete Serotonin Systems Mediate Memory Enhancement and Escape Latencies after Unpredicted Aversive Experience in Drosophila Place Memory
P478volume11

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cites work (P2860)
Q55385221A biphasic locomotor response to acute unsignaled high temperature exposure in Drosophila.
Q94560749Anti-instinctive Learning Behavior Revealed by Locomotion-Triggered Mild Heat Stress in Drosophila