Literature DB >> 15313798

The road we travelled: discovery, choreography, and significance of brain replaceable neurons.

Fernando Nottebohm1.   

Abstract

Neurons are constantly added to the telencephalon of songbirds. In the high vocal center (HVC), where this has been studied, new neurons replace older ones that died. Peaks in replacement are seasonal and affect some neuronal classes but not others. Peaks in replacement coincide with peaks in information acquisition. The new neurons are produced by division of cells in the wall of the lateral ventricle. Where studied closely, the neuronal stem cells proved to be radial glia. Life expectancy of the new neurons ranges from weeks to months. New neuron survival is regulated by vacancies, hormones, and activity. The immediate agent of new neuron survival is, in some cases, brain-derived neurotrophic factor (BDNF). The effect of BDNF is maximal 14-20 days after the cells are born, when they are establishing their connections. These observations are now being extended to other vertebrates and may apply, to varying degrees, to all of them. The function of neuronal replacement in healthy adult brain remains unclear. If synaptic number and efficacy sufficed as mechanisms for long-term memory storage and could be adjusted again and again to incorporate new memories, then neuronal replacement would seem unnecessary. Since it occurs, it seems reasonable to suppose that replacement serves to maintain learning potential in a way that could not be done just by synaptic change. Long-term memories may be encoded by long-term changes in gene expression akin to a last step in cell differentiation. If so, neuronal replacement may be the adult brain's way of striking a balance between limited memory space and the need to acquire new memories. The testing of this hypothesis remains in the future. This chapter tells how neuronal replacement was discovered in the adult songbird brain.

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Year:  2004        PMID: 15313798     DOI: 10.1196/annals.1298.027

Source DB:  PubMed          Journal:  Ann N Y Acad Sci        ISSN: 0077-8923            Impact factor:   5.691


  45 in total

1.  Birth of neural progenitors during the embryonic period of sexual differentiation in the Japanese quail brain.

Authors:  Sylvia M Bardet; Karen Mouriec; Jacques Balthazart
Journal:  J Comp Neurol       Date:  2012-12-15       Impact factor: 3.215

Review 2.  Social cognition and the evolution of language: constructing cognitive phylogenies.

Authors:  W Tecumseh Fitch; Ludwig Huber; Thomas Bugnyar
Journal:  Neuron       Date:  2010-03-25       Impact factor: 17.173

Review 3.  Recent advances in behavioral neuroendocrinology: insights from studies on birds.

Authors:  James L Goodson; Colin J Saldanha; Thomas P Hahn; Kiran K Soma
Journal:  Horm Behav       Date:  2005-11       Impact factor: 3.587

Review 4.  Adult neurogenesis and hippocampal memory function: new cells, more plasticity, new memories?

Authors:  Yasuji Kitabatake; Kurt A Sailor; Guo-li Ming; Hongjun Song
Journal:  Neurosurg Clin N Am       Date:  2007-01       Impact factor: 2.509

5.  Developmental modulation of the temporal relationship between brain and behavior.

Authors:  Shane R Crandall; Naoya Aoki; Teresa A Nick
Journal:  J Neurophysiol       Date:  2006-11-01       Impact factor: 2.714

Review 6.  Neurogenesis in the adult avian song-control system.

Authors:  Eliot A Brenowitz; Tracy A Larson
Journal:  Cold Spring Harb Perspect Biol       Date:  2015-06-01       Impact factor: 10.005

7.  Songbirds: A novel perspective on estrogens and the aging brain.

Authors:  Barney A Schlinger; Colin J Saldanha
Journal:  Age (Dordr)       Date:  2006-02-17

Review 8.  Neurosteroid production in the songbird brain: a re-evaluation of core principles.

Authors:  Sarah E London; Luke Remage-Healey; Barney A Schlinger
Journal:  Front Neuroendocrinol       Date:  2009-05-13       Impact factor: 8.606

9.  Comparative genomic analysis of the zebra finch degradome provides new insights into evolution of proteases in birds and mammals.

Authors:  Víctor Quesada; Gloria Velasco; Xose S Puente; Wesley C Warren; Carlos López-Otín
Journal:  BMC Genomics       Date:  2010-04-01       Impact factor: 3.969

10.  Adult birdsong is actively maintained by error correction.

Authors:  Samuel J Sober; Michael S Brainard
Journal:  Nat Neurosci       Date:  2009-06-14       Impact factor: 24.884

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