A cross-modal genetic framework for the development and plasticity of sensory pathways.

scientific article published on 26 September 2016

A cross-modal genetic framework for the development and plasticity of sensory pathways. is …
instance of (P31):
scholarly articleQ13442814

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P6179Dimensions Publication ID1017554932
P356DOI10.1038/NATURE19770
P698PubMed publication ID27669022

P50authorLudovic TelleyQ47124992
Laura FrangeulQ48952370
Christian LüscherQ79359057
Denis JabaudonQ31970475
P2093author name stringSandrine Lefort
Gabrielle Pouchelon
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Synaptic properties of thalamic and intracortical inputs to layer 4 of the first- and higher-order cortical areas in the auditory and somatosensory systemsQ36805127
Corticothalamic Axons Are Essential for Retinal Ganglion Cell Axon Targeting to the Mouse Dorsal Lateral Geniculate NucleusQ36889618
Different distributions of calbindin and calretinin immunostaining across the medial and dorsal divisions of the mouse medial geniculate body.Q37415223
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In vivo rapid gene delivery into postmitotic neocortical neurons using iontoporationQ41618743
The Regulation of Corticofugal Fiber Targeting by Retinal InputsQ41922641
P433issue7623
P407language of work or nameEnglishQ1860
P304page(s)96-98
P577publication date2016-09-26
P1433published inNatureQ180445
P1476titleA cross-modal genetic framework for the development and plasticity of sensory pathways
P478volume538

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cites work (P2860)
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Q89963984Cross-Talk of Low-Level Sensory and High-Level Cognitive Processing: Development, Mechanisms, and Relevance for Cross-Modal Abilities of the Brain
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Q52312728In vivo clonal analysis reveals spatiotemporal regulation of thalamic nucleogenesis.
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Q90574927Transient callosal projections of L4 neurons are eliminated for the acquisition of local connectivity
Q90310674Whole-Neuron Synaptic Mapping Reveals Spatially Precise Excitatory/Inhibitory Balance Limiting Dendritic and Somatic Spiking

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