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Synapsin determines memory strength after punishment- and relief-learning.
J Neurosci. 2015 May 13;35(19):7487-502. doi: 10.1523/JNEUROSCI.4454-14.2015.
2
Synapsin is required to "boost" memory strength for highly salient events.
Learn Mem. 2015 Dec 15;23(1):9-20. doi: 10.1101/lm.039685.115. Print 2016 Jan.
3
Cellular site and molecular mode of synapsin action in associative learning.
Learn Mem. 2011 Apr 25;18(5):332-44. doi: 10.1101/lm.2101411. Print 2011.
4
Independent natural genetic variation of punishment- versus relief-memory.
Biol Lett. 2016 Dec;12(12). doi: 10.1098/rsbl.2016.0657.
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Genetic distortion of the balance between punishment and relief learning in Drosophila.
J Neurogenet. 2009;23(1-2):235-47. doi: 10.1080/01677060802441372. Epub 2008 Dec 12.
6
Synapsin is selectively required for anesthesia-sensitive memory.
Learn Mem. 2010 Feb 13;17(2):76-9. doi: 10.1101/lm.1661810. Print 2010 Feb.
7
A role for Synapsin in associative learning: the Drosophila larva as a study case.
Learn Mem. 2005 May-Jun;12(3):224-31. doi: 10.1101/lm.92805.
8
Maggot learning and Synapsin function.
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9
Differential associative training enhances olfactory acuity in Drosophila melanogaster.
J Neurosci. 2014 Jan 29;34(5):1819-37. doi: 10.1523/JNEUROSCI.2598-13.2014.
10
Flies lacking all synapsins are unexpectedly healthy but are impaired in complex behaviour.
Eur J Neurosci. 2004 Aug;20(3):611-22. doi: 10.1111/j.1460-9568.2004.03527.x.

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2
Cyclic nucleotide-induced bidirectional long-term synaptic plasticity in Drosophila mushroom body.
J Physiol. 2024 May;602(9):2019-2045. doi: 10.1113/JP285745. Epub 2024 Mar 15.
3
Cyclic nucleotide-induced bidirectional long-term synaptic plasticity in mushroom body.
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An essential role of the autophagy activating kinase ULK1 in snRNP biogenesis.
Nucleic Acids Res. 2021 Jun 21;49(11):6437-6455. doi: 10.1093/nar/gkab452.
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Mdivi-1 alleviates brain damage and synaptic dysfunction after intracerebral hemorrhage in mice.
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7
Effects of aversive conditioning on expression of physiological stress in honey bees (Apis mellifera).
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Cellular and circuit mechanisms of olfactory associative learning in .
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本文引用的文献

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Identification of genes that promote or inhibit olfactory memory formation in Drosophila.
Genetics. 2015 Apr;199(4):1173-82. doi: 10.1534/genetics.114.173575. Epub 2015 Feb 2.
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Reward and motivation in pain and pain relief.
Nat Neurosci. 2014 Oct;17(10):1304-12. doi: 10.1038/nn.3811. Epub 2014 Sep 25.
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Synapsin regulates activity-dependent outgrowth of synaptic boutons at the Drosophila neuromuscular junction.
J Neurosci. 2014 Aug 6;34(32):10554-63. doi: 10.1523/JNEUROSCI.5074-13.2014.
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Converging circuits mediate temperature and shock aversive olfactory conditioning in Drosophila.
Curr Biol. 2014 Aug 4;24(15):1712-22. doi: 10.1016/j.cub.2014.06.062. Epub 2014 Jul 17.
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Drosophila learn opposing components of a compound food stimulus.
Curr Biol. 2014 Aug 4;24(15):1723-30. doi: 10.1016/j.cub.2014.05.078. Epub 2014 Jul 17.
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Relief learning is distinguished from safety learning by the requirement of the nucleus accumbens.
Behav Brain Res. 2014 Oct 1;272:40-5. doi: 10.1016/j.bbr.2014.06.053. Epub 2014 Jul 1.
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Dopaminergic modulation of cAMP drives nonlinear plasticity across the Drosophila mushroom body lobes.
Curr Biol. 2014 Apr 14;24(8):822-31. doi: 10.1016/j.cub.2014.03.021. Epub 2014 Mar 27.
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Pain-relief learning in flies, rats, and man: basic research and applied perspectives.
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