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  • #REDIRECT [[Brain size]]
    24 bytes (3 words) - 18:00, 6 December 2009
  • #REDIRECT [[Brain size]]
    24 bytes (3 words) - 02:40, 7 January 2009
  • The [[map projection|projection]] of [[brain]] properties onto a standard [[coordinate system]].
    132 bytes (15 words) - 08:18, 1 March 2010
  • ...f:Kremen 2009 Genetic and environmental influences on the size of specific brain regions in midlife - The VETSA MRI study}} *{{CZ:Ref:Dechmann 2009 Comparative studies of brain evolution: a critical insight from the Chiroptera}}
    3 KB (351 words) - 04:21, 3 January 2010
  • File:Brain tumor-CT.png
    (439 × 439 (145 KB)) - 19:57, 11 March 2022
  • #REDIRECT [[Brain size]]
    24 bytes (3 words) - 18:00, 6 December 2009
  • One of the measures of [[brain size]]; sum of the [[volume]]s of [[grey matter]], [[white matter]] and oft
    174 bytes (25 words) - 06:40, 10 November 2010
  • | pagename = Brain atlas | abc = Brain atlas
    2 KB (231 words) - 04:18, 14 September 2009
  • 46 bytes (5 words) - 13:53, 21 November 2011
  • Umbrella term for various measures of how big a brain is.
    93 bytes (14 words) - 12:37, 16 July 2009
  • | pagename = Brain injury | abc = Brain injury
    947 bytes (97 words) - 19:50, 7 November 2010
  • File:Drosophila brain schematic.png
    (759 × 878 (416 KB)) - 19:53, 11 March 2022
  • 36 bytes (6 words) - 11:31, 20 August 2012
  • 534 bytes (79 words) - 12:42, 24 June 2010
  • | pagename = Brain evolution | abc = Brain evolution
    2 KB (234 words) - 04:19, 27 October 2008
  • One of the measures of [[brain size]]; sum of the [[mass]]es of [[grey matter]], [[white matter]] and ofte
    173 bytes (25 words) - 06:41, 10 November 2010
  • 12 bytes (1 word) - 09:50, 9 December 2008
  • | pagename = Brain trust | abc = brain trust
    2 KB (327 words) - 12:37, 24 June 2010
  • ...iator of regulation, and all of these inputs are processed by areas in the brain such as the [[hypothalamus]] and the [[nucleus tractus solitarii]] (NTS). ...|500px|''Gut-Brain signaling Pathways'' Proteins and [[hormone]]s activate brain pathways in different ways, either by eventual vagal activation or through
    14 KB (2,129 words) - 12:01, 24 August 2024
  • | pagename = Brain concussion | abc = Brain concussion
    780 bytes (74 words) - 07:58, 15 March 2024

Page text matches

  • ...wn as the organizer of the annual [[Human Brain Mapping (conference)|Human Brain Mapping conference]].
    222 bytes (29 words) - 05:08, 10 June 2010
  • | title = The brain's default network: anatomy, function, and relevance to disease
    406 bytes (48 words) - 06:02, 9 June 2009
  • ...the previous images) to differing degrees. From [[CZ:Ref:Bohland 2009 The Brain Atlas Concordance Problem Quantitative Comparison of Anatomical Parcellatio ...; from [[Magnetic resonance imaging|MRI scans]] of one or many or entire [[brain]]s or [[cerebral hemisphere]]s.
    2 KB (321 words) - 07:00, 21 July 2024
  • == Still missing: the musician's brain as a model system for plasticity research == ...ers and taxi drivers, or even students, are also popular model systems for brain plasticity. -- [[User:Daniel Mietchen|Daniel Mietchen]] 23:27, 13 August 20
    617 bytes (85 words) - 23:27, 13 August 2008
  • | title=A three-dimensional MRI atlas of the zebra finch brain in stereotaxic coordinates. *{{CZ:Ref:Rohlfing 2008 The SRI24 Multi-Channel Brain Atlas: Construction and Applications}}
    815 bytes (110 words) - 11:02, 20 April 2010
  • * Brain hemisphere. One of the two halves of the brain that are separated by the mid-plane of an animal's body.
    217 bytes (30 words) - 09:56, 20 February 2024
  • ...see [http://philosophybites.com/2011/05/david-eagleman-on-morality-and-the-brain.html this].
    1 KB (160 words) - 11:46, 24 February 2014
  • ...fing T, Zahr NM, Sullivan EV, Pfefferbaum A| title=The SRI24 Multi-Channel Brain Atlas: Construction and Applications | journal=Proc Soc Photo Opt Instrum E ...ted by template-free [[image registration|registration]] of [[neuroimaging|brain images]] of healthy humans obtained from various modalities of [[MRI]]. Sha
    813 bytes (102 words) - 05:48, 20 February 2024
  • ...d emeritus professor at the University of California, Irvine, explains how brain imaging is shedding light on intelligence. From MIT's ''Technology Review''
    431 bytes (56 words) - 09:53, 7 December 2022
  • {{r|Brain development}} {{r|Brain evolution}}
    2 KB (197 words) - 07:01, 9 July 2024
  • ...g the [[brain]] with [[x ray]]s; mainly used to evaluate the size of the [[brain ventricle]]s which are enlarged in some [[neuropsychiatric disease]]s, e.g.
    413 bytes (57 words) - 06:55, 5 February 2010
  • ...standard method of detecting [[brain pathology|pathological changes in the brain]] at the earliest possible occasion, leading to treatment and the minimizat
    2 KB (210 words) - 06:19, 20 January 2009
  • ...mage683.gif|right|thumb|350px|{{Credit|Grays-image683.gif}}Dissection of [[brain stem]]. Lateral view.]] In [[neuroanatomy]], the '''brainstem''' is the "part of the [[brain]] that connects the cerebral hemispheres with the [[spinal cord]]. It consi
    732 bytes (86 words) - 07:00, 21 July 2024
  • {{r|Brain ventricle}} {{r|Brain development}}
    465 bytes (55 words) - 07:00, 25 September 2024
  • ...ventricular organs: an atlas of comparative anatomy and vascularization. ''Brain Res Rev'' 56:119-47. PMID 17659349 *Joly JS ''et al.'' (2007) Windows of the brain: towards a developmental biology of circumventricular and other neurohemal
    348 bytes (45 words) - 09:37, 23 February 2009
  • ....J. Vallender, N. Mekel-Bobrov and B.T. Lahn |title=Genetic basis of human brain evolution | journal=Trends in Neurosciences |year=2008 |volume=31 | pages=6 ...enetic mechanisms currently deemed relevant for the evolution of the human brain, along with pointers to some related methodological issues.
    454 bytes (63 words) - 23:08, 28 June 2011
  • ...e = Neocortical neuron types in Xenarthra and Afrotheria: implications for brain evolution in mammals | journal = Brain structure & function
    530 bytes (70 words) - 08:14, 5 January 2009
  • {{r|Brain evolution}} {{r|Brain morphometry}}
    490 bytes (61 words) - 07:00, 9 July 2024
  • ...n FG| title=Fast, accurate, and reproducible automatic segmentation of the brain in T1-weighted volume MRI data | journal=Magn Reson Med | year= 1999 | volu :Describes a fully automated 3D [[Skull stripping|brain extraction]] algorithm that works independently of scan orientation.
    564 bytes (80 words) - 09:23, 9 September 2024
  • | title = Online resource for validation of brain segmentation methods ...oni.ucla.edu/ Segmentation Validation Engine] that allows to [[benchmark]] brain [[image segmentation|segmentation]] techniques.
    610 bytes (68 words) - 11:05, 11 March 2009
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