MRI parcellation ofex vivomedial temporal lobe

Recent advancements in radio frequency coils, field strength and sophisticated pulse sequences have propelled modern brain mapping and have made validation to biological standards - histology and pathology - possible. The medial temporal lobe has long been established as a pivotal brain region for c...

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Veröffentlicht in:NeuroImage (Orlando, Fla.) Fla.), 2014-06, Vol.93, p.252
Hauptverfasser: Augustinack, Jean C, Magnain, Caroline, Reuter, Martin, van der Kouwe, André JW, Boas, David, Fischl, Bruce
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Sprache:eng
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Zusammenfassung:Recent advancements in radio frequency coils, field strength and sophisticated pulse sequences have propelled modern brain mapping and have made validation to biological standards - histology and pathology - possible. The medial temporal lobe has long been established as a pivotal brain region for connectivity, function and unique structure in the human brain, and reveals disconnection in mild Alzheimer's disease. Specific brain mapping of mesocortical areas affected with neurofibrillary tangle pathology early in disease progression provides not only an accurate description for location of these areas but also supplies spherical coordinates that allow comparison between otherex vivocases and largerin vivodatasets. We have identified several cytoarchitectonic features in the medial temporal lobe with high resolutionex vivoMRI, including gray matter structures such as the entorhinal layer II 'islands', perirhinal layer II-III columns, presubicular 'clouds', granule cell layer of the dentate gyrus as well as lamina of the hippocampus. Localization of Brodmann areas 28 and 35 (entorhinal and perirhinal, respectively) demonstrates MRI based area boundaries validated with multiple methods and histological stains. Based on our findings, both myelin and Nissl staining relate to contrast inex vivoMRI. Precise brain mapping serves to create modern atlases for cortical areas, allowing accurate localization with important applications to detecting early disease processes.
ISSN:1053-8119
1095-9572
DOI:10.1016/j.neuroimage.2013.05.053