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Title:

Tracking the Evolution of Cerebral Gadolinium-Enhancing Lesions to Persistent T1 Black Holes in Multiple Sclerosis: Validation of a Semiautomated Pipeline.

Document type:
Journal Article
Author(s):
Andermatt, Simon; Papadopoulou, Athina; Radue, Ernst-Wilhelm; Sprenger, Till; Cattin, Philippe
Abstract:
Some gadolinium-enhancing multiple sclerosis (MS) lesions remain T1-hypointense over months ("persistent black holes, BHs") and represent areas of pronounced tissue loss. A reduced conversion of enhancing lesions to persistent BHs could suggest a favorable effect of a medication on tissue repair. However, the individual tracking of enhancing lesions can be very time-consuming in large clinical trials.We created a semiautomated workflow for tracking the evolution of individual MS lesions, to calc...     »
Journal title abbreviation:
J Neuroimaging
Year:
2017
Journal volume:
27
Journal issue:
5
Pages contribution:
469-475
Language:
eng
Fulltext / DOI:
doi:10.1111/jon.12439
Pubmed ID:
http://view.ncbi.nlm.nih.gov/pubmed/28370651
Print-ISSN:
1051-2284
TUM Institution:
Neurologische Klinik und Poliklinik
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