Additive neurogenesis supported by multiple stem cell populations mediates adult spinal cord development: A spatiotemporal statistical mapping analysis in a teleost model of indeterminate growth.

scientific article published on 13 July 2017

Additive neurogenesis supported by multiple stem cell populations mediates adult spinal cord development: A spatiotemporal statistical mapping analysis in a teleost model of indeterminate growth. is …
instance of (P31):
scholarly articleQ13442814

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P356DOI10.1002/DNEU.22511
P698PubMed publication ID28707354

P50authorIulian IliesQ81399234
Günther K H ZupancQ87668172
P2093author name stringRuxandra F Sîrbulescu
Annette Meyer
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P433issue11
P921main subjectstatisticsQ12483
neurogenesisQ1456827
P1104number of pages39
P304page(s)1269-1307
P577publication date2017-07-23
P1433published inDevelopmental NeurobiologyQ15716734
P1476titleAdditive neurogenesis supported by multiple stem cell populations mediates adult spinal cord development: A spatiotemporal statistical mapping analysis in a teleost model of indeterminate growth
P478volume77

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cites work (P2860)
Q92895878Adult Neural Stem Cells in Development, Regeneration, and Aging
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Q47361703Dynamic Neuron-Glia Interactions in an Oscillatory Network Controlling Behavioral Plasticity in the Weakly Electric Fish, Apteronotus leptorhynchus
Q92097057Stem-Cell-Driven Growth and Regrowth of the Adult Spinal Cord in Teleost Fish
Q91934138Universality of indeterminate growth in lizards rejected: the micro-CT reveals contrasting timing of growth cartilage persistence in iguanas, agamas, and chameleons

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