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      Distinct Morphological Stages of Dentate Granule Neuron Maturation in the Adult Mouse Hippocampus

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          Abstract

          Adult neurogenesis in the dentate gyrus may contribute to hippocampus-dependent functions, yet little is known about when and how newborn neurons are functional because of limited information about the time course of their connectivity. By using retrovirus-mediated gene transduction, we followed the dendritic and axonal growth of adult-born neurons in the mouse dentate gyrus and identified distinct morphological stages that may indicate different levels of connectivity. Axonal projections of newborn neurons reach the CA3 area 10–11 d after viral infection, 5–6 d before the first spines are formed. Quantitative analyses show that the peak of spine growth occurs during the first 3–4 weeks, but further structural modifications of newborn neurons take place for months. Moreover, the morphological maturation is differentially affected by age and experience, as shown by comparisons between adult and postnatal brains and between housing conditions. Our study reveals the key morphological transitions of newborn granule neurons during their course of maturation.

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          Author and article information

          Journal
          J Neurosci
          J. Neurosci
          jneuro
          The Journal of Neuroscience
          Society for Neuroscience
          0270-6474
          1529-2401
          4 January 2006
          : 26
          : 1
          : 3-11
          Affiliations
          Laboratory of Genetics, Salk Institute for Biological Studies, La Jolla, California 92037
          Article
          PMC6674324 PMC6674324 6674324 0003
          10.1523/JNEUROSCI.3648-05.2006
          6674324
          16399667
          414f3de9-0994-40a6-94db-c1d7d0b23303
          Copyright © 2006 Society for Neuroscience 0270-6474/06/263-09.00/0
          History
          : 29 October 2005
          : 27 August 2005
          : 23 October 2005
          Categories
          Development/Plasticity/Repair
          Custom metadata
          3
          ARTICLE

          spine motility,mushroom spines,neurogenesis,spines,neuronal development,plasticity

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