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Heterogeneity of Multiple Sclerosis Lesions in Multislice Myelin Water Imaging

PURPOSE: To assess neuroprotection and remyelination in Multiple Sclerosis (MS), we applied a more robust myelin water imaging (MWI) processing technique, including spatial priors into image reconstruction, which allows for lower SNR, less averages and shorter acquisition times. We sought to evaluat...

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Autores principales: Faizy, Tobias Djamsched, Thaler, Christian, Kumar, Dushyant, Sedlacik, Jan, Broocks, Gabriel, Grosser, Malte, Stellmann, Jan-Patrick, Heesen, Christoph, Fiehler, Jens, Siemonsen, Susanne
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4798764/
https://www.ncbi.nlm.nih.gov/pubmed/26990645
http://dx.doi.org/10.1371/journal.pone.0151496
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author Faizy, Tobias Djamsched
Thaler, Christian
Kumar, Dushyant
Sedlacik, Jan
Broocks, Gabriel
Grosser, Malte
Stellmann, Jan-Patrick
Heesen, Christoph
Fiehler, Jens
Siemonsen, Susanne
author_facet Faizy, Tobias Djamsched
Thaler, Christian
Kumar, Dushyant
Sedlacik, Jan
Broocks, Gabriel
Grosser, Malte
Stellmann, Jan-Patrick
Heesen, Christoph
Fiehler, Jens
Siemonsen, Susanne
author_sort Faizy, Tobias Djamsched
collection PubMed
description PURPOSE: To assess neuroprotection and remyelination in Multiple Sclerosis (MS), we applied a more robust myelin water imaging (MWI) processing technique, including spatial priors into image reconstruction, which allows for lower SNR, less averages and shorter acquisition times. We sought to evaluate this technique in MS-patients and healthy controls (HC). MATERIALS AND METHODS: Seventeen MS-patients and 14 age-matched HCs received a 3T Magnetic Resonance Imaging (MRI) examination including MWI (8 slices, 12 minutes acquisition time), T2w and T1mprage pre and post gadolinium (GD) administration. Black holes (BH), contrast enhancing lesions (CEL) and T2 lesions were marked and registered to MWI. Additionally, regions of interest (ROI) were defined in the frontal, parietal and occipital normal appearing white matter (NAWM)/white matter (WM), the corticospinal tract (CST), the splenium (SCC) and genu (GCC) of the corpus callosum in patients and HCs. Mean values of myelin water fraction (MWF) were determined for each ROI. RESULTS: Significant differences (p≤0.05) of the MWF were found in all three different MS-lesion types (BH, CEL, T2 lesions), compared to the WM of HCs. The mean MWF values among the different lesion types were significantly differing from each other. Comparing MS-patients vs. HCs, we found a significant (p≤0.05) difference of the MWF in all measured ROIs except of GCC and SCC. The mean reduction of MWF in the NAWM of MS-patients compared to HCs was 37%. No age, sex, disability score and disease duration dependency was found for the NAWM MWF. CONCLUSION: MWF measures were in line with previous studies and lesions were clearly visible in MWI. MWI allows for quantitative assessment of NAWM and lesions in MS, which could be used as an additional sensitive imaging endpoint for larger MS studies. Measurements of the MWF also differ between patients and healthy controls.
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spelling pubmed-47987642016-03-23 Heterogeneity of Multiple Sclerosis Lesions in Multislice Myelin Water Imaging Faizy, Tobias Djamsched Thaler, Christian Kumar, Dushyant Sedlacik, Jan Broocks, Gabriel Grosser, Malte Stellmann, Jan-Patrick Heesen, Christoph Fiehler, Jens Siemonsen, Susanne PLoS One Research Article PURPOSE: To assess neuroprotection and remyelination in Multiple Sclerosis (MS), we applied a more robust myelin water imaging (MWI) processing technique, including spatial priors into image reconstruction, which allows for lower SNR, less averages and shorter acquisition times. We sought to evaluate this technique in MS-patients and healthy controls (HC). MATERIALS AND METHODS: Seventeen MS-patients and 14 age-matched HCs received a 3T Magnetic Resonance Imaging (MRI) examination including MWI (8 slices, 12 minutes acquisition time), T2w and T1mprage pre and post gadolinium (GD) administration. Black holes (BH), contrast enhancing lesions (CEL) and T2 lesions were marked and registered to MWI. Additionally, regions of interest (ROI) were defined in the frontal, parietal and occipital normal appearing white matter (NAWM)/white matter (WM), the corticospinal tract (CST), the splenium (SCC) and genu (GCC) of the corpus callosum in patients and HCs. Mean values of myelin water fraction (MWF) were determined for each ROI. RESULTS: Significant differences (p≤0.05) of the MWF were found in all three different MS-lesion types (BH, CEL, T2 lesions), compared to the WM of HCs. The mean MWF values among the different lesion types were significantly differing from each other. Comparing MS-patients vs. HCs, we found a significant (p≤0.05) difference of the MWF in all measured ROIs except of GCC and SCC. The mean reduction of MWF in the NAWM of MS-patients compared to HCs was 37%. No age, sex, disability score and disease duration dependency was found for the NAWM MWF. CONCLUSION: MWF measures were in line with previous studies and lesions were clearly visible in MWI. MWI allows for quantitative assessment of NAWM and lesions in MS, which could be used as an additional sensitive imaging endpoint for larger MS studies. Measurements of the MWF also differ between patients and healthy controls. Public Library of Science 2016-03-18 /pmc/articles/PMC4798764/ /pubmed/26990645 http://dx.doi.org/10.1371/journal.pone.0151496 Text en © 2016 Faizy et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Faizy, Tobias Djamsched
Thaler, Christian
Kumar, Dushyant
Sedlacik, Jan
Broocks, Gabriel
Grosser, Malte
Stellmann, Jan-Patrick
Heesen, Christoph
Fiehler, Jens
Siemonsen, Susanne
Heterogeneity of Multiple Sclerosis Lesions in Multislice Myelin Water Imaging
title Heterogeneity of Multiple Sclerosis Lesions in Multislice Myelin Water Imaging
title_full Heterogeneity of Multiple Sclerosis Lesions in Multislice Myelin Water Imaging
title_fullStr Heterogeneity of Multiple Sclerosis Lesions in Multislice Myelin Water Imaging
title_full_unstemmed Heterogeneity of Multiple Sclerosis Lesions in Multislice Myelin Water Imaging
title_short Heterogeneity of Multiple Sclerosis Lesions in Multislice Myelin Water Imaging
title_sort heterogeneity of multiple sclerosis lesions in multislice myelin water imaging
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4798764/
https://www.ncbi.nlm.nih.gov/pubmed/26990645
http://dx.doi.org/10.1371/journal.pone.0151496
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