Experience-dependent changes in excitatory and inhibitory receptor subunit expression in visual cortex.

scientific article

Experience-dependent changes in excitatory and inhibitory receptor subunit expression in visual cortex. is …
instance of (P31):
scholarly articleQ13442814

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P356DOI10.3389/FNSYN.2010.00138
P932PMC publication ID3059668
P698PubMed publication ID21423524
P5875ResearchGate publication ID50597036

P50authorDavid G. JonesQ59748843
P2093author name stringKathryn M Murphy
Brett R Beston
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P304page(s)138
P577publication date2010-09-28
P1433published inFrontiers in synaptic neuroscienceQ27723479
P1476titleExperience-dependent changes in excitatory and inhibitory receptor subunit expression in visual cortex.
P478volume2

Reverse relations

cites work (P2860)
Q35077299Characterizing synaptic protein development in human visual cortex enables alignment of synaptic age with rat visual cortex
Q90354599Classification of Visual Cortex Plasticity Phenotypes following Treatment for Amblyopia
Q41073085Comparing development of synaptic proteins in rat visual, somatosensory, and frontal cortex
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Q42172218Cortical development of AMPA receptor trafficking proteins
Q30100953Development of glutamatergic proteins in human visual cortex across the lifespan.
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Q91710154Experience-Dependent Changes in Myelin Basic Protein Expression in Adult Visual and Somatosensory Cortex
Q48335469Experience-dependent central vision deficits: Neurobiology and visual acuity.
Q91934021Experience-dependent development of visual sensitivity in larval zebrafish
Q34237129Experience-dependent regulation of functional maps and synaptic protein expression in the cat visual cortex
Q48381326Monocular deprivation delays the dynamic changes of phosphorylated synapsin Ia/b at site-1 in contralateral visual cortex of juvenile mice
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Q33698992Timing-dependent LTP and LTD in mouse primary visual cortex following different visual deprivation models
Q41962365Zif268 mRNA Expression Patterns Reveal a Distinct Impact of Early Pattern Vision Deprivation on the Development of Primary Visual Cortical Areas in the Cat.

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