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Reciprocal synapses between mushroom body and dopamine neurons form a positive feedback loop required for learning.
scientific article published on 10 May 2017
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5425253
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20 March 2020
title
Reciprocal synapses between mushroom body and dopamine neurons form a positive feedback loop required for learning
(English)
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20 March 2020
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Ronald L Davis
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20 March 2020
Isaac Cervantes-Sandoval
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20 March 2020
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Anna Phan
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20 March 2020
Molee Chakraborty
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10 May 2017
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20 March 2020
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eLife
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20 March 2020
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Heterosynaptic Plasticity Underlies Aversive Olfactory Learning in Drosophila
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A Higher Brain Circuit for Immediate Integration of Conflicting Sensory Information in Drosophila.
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Delayed dopamine signaling of energy level builds appetitive long-term memory in Drosophila.
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31 August 2018
Two pairs of mushroom body efferent neurons are required for appetitive long-term memory retrieval in Drosophila.
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31 August 2018
A subset of dopamine neurons signals reward for odour memory in Drosophila.
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31 August 2018
Mushroom body efferent neurons responsible for aversive olfactory memory retrieval in Drosophila.
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31 August 2018
D1 dopamine receptor dDA1 is required in the mushroom body neurons for aversive and appetitive learning in Drosophila
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31 August 2018
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31 August 2018
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Dopamine and octopamine differentiate between aversive and appetitive olfactory memories in Drosophila.
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31 August 2018
Targeted gene expression in Drosophila dopaminergic cells using regulatory sequences from tyrosine hydroxylase
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Identifiers
DOI
10.7554/ELIFE.23789
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Europe PubMed Central
PMCID
5425253
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PMCID
5425253
1 reference
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Europe PubMed Central
PMCID
5425253
reference URL
https://www.ebi.ac.uk/europepmc/webservices/rest/search?query=EXT_ID:28489528%20AND%20SRC:MED&resulttype=core&format=json
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20 March 2020
PubMed ID
28489528
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5425253
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