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020 _a9783642378249
024 7 _a10.1007/978-3-642-37824-9
_2doi
040 _dES-MaUEC
050 4 _aQP383
_b.G494 2013
100 1 _aGeyer, Stefan
_eeditor literario
_0Local
_985583
245 1 0 _aMicrostructural Parcellation of the Human Cerebral Cortex :
_bFrom Brodmann's Post-Mortem Map to in Vivo Mapping with High-Field Magnetic Resonance Imaging
_cedited by Stefan Geyer, Robert Turner.
260 _aBerlin, Heidelberg
_bSpringer International Publishing
_c2013
300 _a1 recurso en línea (VIII, 257 p.)
_b94 ilustraciones, 36 ilustraciones en color
336 _aTexto (visual)
_btxt
_2rdacontent
337 _aelectrónico
_bc
_2rdamedia
338 _arecurso electrónico
_bcr
_2rdacarrier
505 0 _aGuy N. Elston, Laurence J. Garey: The cytoarchitectonic map of Korbinian Brodmann: Arealisation and circuit specialization -- Lazaros C. Triarhou: The cytoarchitectonic map of Constantin von Economo and Georg N. Koskinas -- Rudolf Nieuwenhuys: The myeloarchitectonic studies on the human cerebral cortex of the Vogt - Vogt school, and their significance for the interpretation of functional neuroimaging data -- Bruce Fischl: Estimating the location of Brodmann Areas from cortical folding patterns using histology and ex vivo MRI -- Simon B. Eickhoff, Danilo Bzdok: Database-driven identification of functional modules in the cerebral cortex -- Robert Turner: Where matters: New approaches to brain analysis -- Robert Turner: MRI methods for in-vivo cortical parcellation -- Nicholas A. Bock, Afonso C. Silva: Visualizing myeloarchitecture in vivo with magnetic resonance imaging in common marmosets (Callithrix jacchus) -- Stefan Geyer: High-field magnetic resonance mapping of the border between primary motor (area 4) and somatosensory (area 3a) cortex in ex-vivo and in-vivo human brains.
520 _aUnraveling the functional properties of structural elements in the brain is one of the fundamental goals of neuroscientific research. In the cerebral cortex this is no mean feat, since cortical areas are defined microstructurally in post-mortem brains but functionally in living brains with electrophysiological or neuroimaging techniques â€{u086E}d cortical areas vary in their topographical properties across individual brains. Being able to map both microstructure and function in the same brains noninvasively in vivo would represent a huge leap forward. In recent years, high-field magnetic resonance imaging (MRI) technologies with spatial resolution below 0.5 mm have set the stage for this by detecting structural differences within the human cerebral cortex, beyond the Stria of Gennari. This provides the basis for an in vivo microanatomical brain map, with the enormous potential to make direct correlations between microstructure and function in living human brains. This book starts with Brodmannâ€{u3830}ost-mortem map published in the early 20th century, moves on to the almost forgotten microstructural maps of von Economo and Koskinas and the Vogt-Vogt school, sheds some light on more recent approaches that aim at mapping cortical areas noninvasively in living human brains, and culminates with the concept of “in vivo Brodmann mappingâ€{u0D73}ing high-field MRI, which was introduced in the early 21st century.
650 7 _aCorteza cerebral
_2embne
_9145032
700 1 _aTurner, Robert
_d1938-1999
_eeditor literario
_0Local
_985584
856 4 0 _uhttps://go.openathens.net/redirector/universidadeuropea.es?url=https://link.springer.com/book/10.1007/978-3-642-37824-9
_zAcceso a este recurso digital (usuarios Universidad Europea de Madrid)
907 _a.b12821056
_b10-10-17
_c01-10-14
942 _2lcc
_cLE
945 _aQP383 .G494 2013 EB
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