• DocumentCode
    1665234
  • Title

    Sulcal basins and sulcal strings as new concepts for describing the human cortical topography

  • Author

    Lohmann, Gabriele ; Von Cramon, D. Yves

  • Author_Institution
    Max-Planck-Inst. of Cognitive Neurosci., Leipzig, Germany
  • fYear
    1998
  • Firstpage
    24
  • Lastpage
    33
  • Abstract
    Human brain mapping aims at establishing correspondences between brain function and brain anatomy. One of the most intriguing problems in this field is the high inter-personal variability of human neuroanatomy which makes studies across many subjects very difficult. The cortical folds (“sulci”) often serve as landmarks that help to establish correspondences between subjects. Here, the authors present a method that both automatically detects and attributes neuroanatomical names to the cortical folds using image analysis methods applied to magnetic resonance data of human brains. The authors claim that the cortical folds can be subdivided into a number of substructures which they call sulcal basins. In addition to the concept of sulcal basins, the authors introduce the concept of sulcal strings which are groups of sulcal basins arranged as strings that are aligned with the Sylvian fissure and the inter-hemispheric cleft. The concept of sulcal basins allows to establish a complete parcellation of the cortical surface into separate regions. These regions are neuroanatomically meaningful and can be identified from MR data sets across many subjects. At the same time, the parcellation is detailed enough to be useful for brain mapping purposes
  • Keywords
    biomedical MRI; brain; medical image processing; surface topography measurement; Sylvian fissure; brain MRI; brain mapping; brain substructures; cortical folds; human brains; human cortical topography description; image analysis methods; inter-hemispheric cleft; magnetic resonance data; magnetic resonance imaging; medical diagnostic imaging; neuroanatomical names attributing; sulcal basins; Anatomy; Brain mapping; Electrical capacitance tomography; Humans; Image analysis; Image registration; Magnetic resonance; Neuroscience; Rain; Surface topography;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Biomedical Image Analysis, 1998. Proceedings. Workshop on
  • Conference_Location
    Santa Barbara, CA
  • Print_ISBN
    0-8186-8460-7
  • Type

    conf

  • DOI
    10.1109/BIA.1998.692384
  • Filename
    692384