Adult pallium transcriptomes surprise in not reflecting predicted homologies across diverse chicken and mouse pallial sectors.
about
From sauropsids to mammals and back: New approaches to comparative cortical developmentThe opportunities and challenges of large-scale molecular approaches to songbird neurobiology.A hypothesis for the evolution of the upper layers of the neocortex through co-option of the olfactory cortex developmental programThe reptilian brainConvergent transcriptional specializations in the brains of humans and song-learning birdsNSF workshop report: discovering general principles of nervous system organization by comparing brain maps across speciesNeural progenitors, patterning and ecology in neocortical originsCombinatorial expression of Lef1, Lhx2, Lhx5, Lhx9, Lmo3, Lmo4, and Prox1 helps to identify comparable subdivisions in the developing hippocampal formation of mouse and chickenSubset of early radial glial progenitors that contribute to the development of callosal neurons is absent from avian brain.Evolution of the mammalian dentate gyrusOrigin and evolution of developmental enhancers in the mammalian neocortexA common developmental plan for neocortical gene-expressing neurons in the pallium of the domestic chicken Gallus gallus domesticus and the Chinese softshell turtle Pelodiscus sinensis.NSF workshop report: discovering general principles of nervous system organization by comparing brain maps across species.Subtype-Specific Genes that Characterize Subpopulations of Callosal Projection Neurons in Mouse Identify Molecularly Homologous Populations in Macaque Cortex.Avian brains: Insights from development, behaviors and evolution.Selective early expression of the orphan nuclear receptor Nr4a2 identifies the claustrum homolog in the avian mesopallium: Impact on sauropsidian/mammalian pallium comparisons.Thalamocortical Connections Drive Intracortical Activation of Functional Columns in the Mislaminated Reeler Somatosensory Cortex.Pallial patterning and the origin of the isocortex.Things change: how comparative transcriptomics suggest the pallium has evolved at multiple levels of organization.Expression of regulatory genes in the embryonic brain of a lizard and implications for understanding pallial organization and evolution.The impact of gene expression analysis on evolving views of avian brain organization.Update on forebrain evolution: From neurogenesis to thermogenesis.Should we redefine the classic lateral pallium?Transmitter receptors reveal segregation of the arcopallium/amygdala complex in pigeons (Columba livia).Hippocampal-like circuitry in the pallium of an electric fish: Possible substrates for recursive pattern separation and completion.
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Adult pallium transcriptomes surprise in not reflecting predicted homologies across diverse chicken and mouse pallial sectors.
description
article científic
@ca
article scientifique
@fr
articolo scientifico
@it
artigo científico
@pt
bilimsel makale
@tr
scientific article published on 22 July 2013
@en
vedecký článok
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vetenskaplig artikel
@sv
videnskabelig artikel
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vědecký článek
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name
Adult pallium transcriptomes s ...... ken and mouse pallial sectors.
@en
Adult pallium transcriptomes s ...... ken and mouse pallial sectors.
@nl
type
label
Adult pallium transcriptomes s ...... ken and mouse pallial sectors.
@en
Adult pallium transcriptomes s ...... ken and mouse pallial sectors.
@nl
prefLabel
Adult pallium transcriptomes s ...... ken and mouse pallial sectors.
@en
Adult pallium transcriptomes s ...... ken and mouse pallial sectors.
@nl
P2860
P50
P356
P1476
Adult pallium transcriptomes s ...... cken and mouse pallial sectors
@en
P2093
Elliott H Margulies
Wei Zhi Wang
P2860
P304
13150-13155
P356
10.1073/PNAS.1307444110
P407
P577
2013-07-22T00:00:00Z