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Individual Assessment of Brain Tissue Changes in MS and the Effect of Focal Lesions on Short-Term Focal Atrophy Development in MS: A Voxel-Guided Morphometry Study

We performed voxel-guided morphometry (VGM) investigating the mechanisms of brain atrophy in multiple sclerosis (MS) related to focal lesions. VGM maps detect regional brain changes when comparing 2 time points on high resolution T1-weighted (T1w) magnetic resonace imaging (MRI). Two T1w MR datasets...

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Autores principales: Fox, Jan, Kraemer, Matthias, Schormann, Thorsten, Dabringhaus, Andreas, Hirsch, Jochen, Eisele, Philipp, Szabo, Kristina, Weiss, Christel, Amann, Michael, Weier, Katrin, Naegelin, Yvonne, Kappos, Ludwig, Gass, Achim
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4848945/
https://www.ncbi.nlm.nih.gov/pubmed/27043553
http://dx.doi.org/10.3390/ijms17040489
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author Fox, Jan
Kraemer, Matthias
Schormann, Thorsten
Dabringhaus, Andreas
Hirsch, Jochen
Eisele, Philipp
Szabo, Kristina
Weiss, Christel
Amann, Michael
Weier, Katrin
Naegelin, Yvonne
Kappos, Ludwig
Gass, Achim
author_facet Fox, Jan
Kraemer, Matthias
Schormann, Thorsten
Dabringhaus, Andreas
Hirsch, Jochen
Eisele, Philipp
Szabo, Kristina
Weiss, Christel
Amann, Michael
Weier, Katrin
Naegelin, Yvonne
Kappos, Ludwig
Gass, Achim
author_sort Fox, Jan
collection PubMed
description We performed voxel-guided morphometry (VGM) investigating the mechanisms of brain atrophy in multiple sclerosis (MS) related to focal lesions. VGM maps detect regional brain changes when comparing 2 time points on high resolution T1-weighted (T1w) magnetic resonace imaging (MRI). Two T1w MR datasets from 92 relapsing-remitting MS patients obtained 12 months apart were analysed with VGM. New lesions and volume changes of focal MS lesions as well as in the surrounding tissue were identified by visual inspection on colour coded VGM maps. Lesions were dichotomized in active and inactive lesions. Active lesions, defined by either new lesions (NL) (volume increase > 5% in VGM), chronic enlarging lesions (CEL) (pre-existent T1w lesions with volume increase > 5%), or chronic shrinking lesions (CSL) (pre-existent T1w lesions with volume reduction > 5%) in VGM, were accompanied by tissue shrinkage in surrounding and/or functionally related regions. Volume loss within the corpus callosum was highly correlated with the number of lesions in its close proximity. Volume loss in the lateral geniculate nucleus was correlated with lesions along the optic radiation. VGM analysis provides strong evidence that all active lesion types (NL, CEL, and CSL) contribute to brain volume reduction in the vicinity of lesions and/or in anatomically and functionally related areas of the brain.
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spelling pubmed-48489452016-05-04 Individual Assessment of Brain Tissue Changes in MS and the Effect of Focal Lesions on Short-Term Focal Atrophy Development in MS: A Voxel-Guided Morphometry Study Fox, Jan Kraemer, Matthias Schormann, Thorsten Dabringhaus, Andreas Hirsch, Jochen Eisele, Philipp Szabo, Kristina Weiss, Christel Amann, Michael Weier, Katrin Naegelin, Yvonne Kappos, Ludwig Gass, Achim Int J Mol Sci Article We performed voxel-guided morphometry (VGM) investigating the mechanisms of brain atrophy in multiple sclerosis (MS) related to focal lesions. VGM maps detect regional brain changes when comparing 2 time points on high resolution T1-weighted (T1w) magnetic resonace imaging (MRI). Two T1w MR datasets from 92 relapsing-remitting MS patients obtained 12 months apart were analysed with VGM. New lesions and volume changes of focal MS lesions as well as in the surrounding tissue were identified by visual inspection on colour coded VGM maps. Lesions were dichotomized in active and inactive lesions. Active lesions, defined by either new lesions (NL) (volume increase > 5% in VGM), chronic enlarging lesions (CEL) (pre-existent T1w lesions with volume increase > 5%), or chronic shrinking lesions (CSL) (pre-existent T1w lesions with volume reduction > 5%) in VGM, were accompanied by tissue shrinkage in surrounding and/or functionally related regions. Volume loss within the corpus callosum was highly correlated with the number of lesions in its close proximity. Volume loss in the lateral geniculate nucleus was correlated with lesions along the optic radiation. VGM analysis provides strong evidence that all active lesion types (NL, CEL, and CSL) contribute to brain volume reduction in the vicinity of lesions and/or in anatomically and functionally related areas of the brain. MDPI 2016-04-01 /pmc/articles/PMC4848945/ /pubmed/27043553 http://dx.doi.org/10.3390/ijms17040489 Text en © 2016 by the authors; licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons by Attribution (CC-BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Fox, Jan
Kraemer, Matthias
Schormann, Thorsten
Dabringhaus, Andreas
Hirsch, Jochen
Eisele, Philipp
Szabo, Kristina
Weiss, Christel
Amann, Michael
Weier, Katrin
Naegelin, Yvonne
Kappos, Ludwig
Gass, Achim
Individual Assessment of Brain Tissue Changes in MS and the Effect of Focal Lesions on Short-Term Focal Atrophy Development in MS: A Voxel-Guided Morphometry Study
title Individual Assessment of Brain Tissue Changes in MS and the Effect of Focal Lesions on Short-Term Focal Atrophy Development in MS: A Voxel-Guided Morphometry Study
title_full Individual Assessment of Brain Tissue Changes in MS and the Effect of Focal Lesions on Short-Term Focal Atrophy Development in MS: A Voxel-Guided Morphometry Study
title_fullStr Individual Assessment of Brain Tissue Changes in MS and the Effect of Focal Lesions on Short-Term Focal Atrophy Development in MS: A Voxel-Guided Morphometry Study
title_full_unstemmed Individual Assessment of Brain Tissue Changes in MS and the Effect of Focal Lesions on Short-Term Focal Atrophy Development in MS: A Voxel-Guided Morphometry Study
title_short Individual Assessment of Brain Tissue Changes in MS and the Effect of Focal Lesions on Short-Term Focal Atrophy Development in MS: A Voxel-Guided Morphometry Study
title_sort individual assessment of brain tissue changes in ms and the effect of focal lesions on short-term focal atrophy development in ms: a voxel-guided morphometry study
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4848945/
https://www.ncbi.nlm.nih.gov/pubmed/27043553
http://dx.doi.org/10.3390/ijms17040489
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