Brain plasticity/Bibliography: Difference between revisions

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*{{CZ:Ref:Mozzachiodi 2009 More than synaptic plasticity: role of nonsynaptic plasticity in learning and memory}}
*{{CZ:Ref:Draganski 2008 Training-induced structural changes in the adult human brain}}
*{{CZ:Ref:Boyke 2008 Training-Induced Brain Structure Changes in the Elderly}}
*{{cite journal
*{{cite journal
  | author = Suga, N.
  | author = Suga, N.
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  | doi = 10.1016/S0140-6736(07)61127-1
  | doi = 10.1016/S0140-6736(07)61127-1
}}
}}
*{{CZ:Ref:Toga 2006 Mapping brain maturation}}
:Quote: "Areas with more advanced functions – integrating information from the senses, reasoning and other ‘executive’ functions (e.g. prefrontal cortex) – matured last, in late adolescence. This sequence also provided evidence that phylogenetically older cortical areas mature earlier than the more recently evolved higher-order association cortices, which integrate information from earlier maturing cortex."
*{{CZ:Ref:Duffau 2006 Brain plasticity: from pathophysiological mechanisms to therapeutic applications}}
*{{cite journal
*{{cite journal
  | author = Maguire, E.A.
  | author = Maguire, E.A.
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  | doi = 10.1523/JNEUROSCI.4628-05.2006
  | doi = 10.1523/JNEUROSCI.4628-05.2006
}}
}}
*{{CZ:Ref:Hummel 2005 Drivers of brain plasticity}}
*{{cite journal
*{{cite journal
  | author = Draganski, B.
  | author = Draganski, B.
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  | pages = 9240
  | pages = 9240
  | url = http://www.neuroscience.org/cgi/content/abstract/23/27/9240
  | url = http://www.neuroscience.org/cgi/content/abstract/23/27/9240
}}
*{{citation
| last1 = Mohammed | first1 = A.H.
| last2 = Zhu | first2 = S.W.
| last3 = Darmopil | first3 = S.
| last4 = Hjerling-leffler | first4 = J.
| last5 = Ernfors | first5 = P.
| last6 = Winblad | first6 = B.
| last7 = Diamond | first7 = M.C.
| last8 = Eriksson | first8 = P.S.
| last9 = Bogdanovic | first9 = N.
| year = 2002
| title = Environmental enrichment and the brain
| journal = Plasticity in the Adult Brain: from Genes to Neurotherapy
| volume = 138
| pages = 109
| doi = 10.1016/S0079-6123(02)38074-9
| url = http://books.google.co.uk/books?hl=en
}}
}}
*{{cite journal
*{{cite journal
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  | pages = 57-59
  | pages = 57-59
  | doi = 10.1016/S0960-9822(01)00015-X  
  | doi = 10.1016/S0960-9822(01)00015-X  
}}
*{{cite journal
| author = Scharff, C.
| year = 2000
| title = Chasing fate and function of new neurons in adult brains
| journal = Current Opinion in Neurobiology
| volume = 10
| issue = 6
| pages = 774-783
| doi = 10.1016/S0959-4388(00)00155-0
}}
}}
*{{cite journal
*{{cite journal

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A list of key readings about Brain plasticity.
Please sort and annotate in a user-friendly manner. For formatting, consider using automated reference wikification.
Provides an overview on how pre- and postsynaptic processes are complemented by activity-induced changes of the properties of neurons not specific to their synapses, e.g. modifications of the membrane conductance.
  • Song, J.H.; Banai, K.; Kraus, N. (2008). "Brainstem Timing Deficits in Children with Learning Impairment May Result from Corticofugal Origins". Audiol Neurootol 13 (5): 335-344. DOI:10.1159/000132689. Research Blogging.
Quote: "Areas with more advanced functions – integrating information from the senses, reasoning and other ‘executive’ functions (e.g. prefrontal cortex) – matured last, in late adolescence. This sequence also provided evidence that phylogenetically older cortical areas mature earlier than the more recently evolved higher-order association cortices, which integrate information from earlier maturing cortex."
  • Draganski, B.; Gaser, C.; Kempermann, G.; Kuhn, H.G.; Winkler, J.; Buchel, C.; May, A. (2006). "Temporal and Spatial Dynamics of Brain Structure Changes during Extensive Learning". Journal of Neuroscience 26 (23): 6314. DOI:10.1523/JNEUROSCI.4628-05.2006. Research Blogging[e]