Cargando…

Age-Related Measurements of the Myelin Water Fraction derived from 3D multi-echo GRASE reflect Myelin Content of the Cerebral White Matter

Myelin Water Fraction (MWF) measurements derived from quantitative Myelin Water Imaging (MWI) may detect demyelinating changes of the cerebral white matter (WM) microstructure. Here, we investigated age-related alterations of the MWF in normal aging brains of healthy volunteers utilizing two fast an...

Descripción completa

Detalles Bibliográficos
Autores principales: Faizy, Tobias D., Kumar, Dushyant, Broocks, Gabriel, Thaler, Christian, Flottmann, Fabian, Leischner, Hannes, Kutzner, Daniel, Hewera, Simon, Dotzauer, Dominik, Stellmann, Jan-Patrick, Reddy, Ravinder, Fiehler, Jens, Sedlacik, Jan, Gellißen, Susanne
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6177453/
https://www.ncbi.nlm.nih.gov/pubmed/30301904
http://dx.doi.org/10.1038/s41598-018-33112-8
_version_ 1783361861326995456
author Faizy, Tobias D.
Kumar, Dushyant
Broocks, Gabriel
Thaler, Christian
Flottmann, Fabian
Leischner, Hannes
Kutzner, Daniel
Hewera, Simon
Dotzauer, Dominik
Stellmann, Jan-Patrick
Reddy, Ravinder
Fiehler, Jens
Sedlacik, Jan
Gellißen, Susanne
author_facet Faizy, Tobias D.
Kumar, Dushyant
Broocks, Gabriel
Thaler, Christian
Flottmann, Fabian
Leischner, Hannes
Kutzner, Daniel
Hewera, Simon
Dotzauer, Dominik
Stellmann, Jan-Patrick
Reddy, Ravinder
Fiehler, Jens
Sedlacik, Jan
Gellißen, Susanne
author_sort Faizy, Tobias D.
collection PubMed
description Myelin Water Fraction (MWF) measurements derived from quantitative Myelin Water Imaging (MWI) may detect demyelinating changes of the cerebral white matter (WM) microstructure. Here, we investigated age-related alterations of the MWF in normal aging brains of healthy volunteers utilizing two fast and clinically feasible 3D gradient and spin echo (GRASE) MWI sequences with 3 mm and 5 mm isotropic voxel size. In 45 healthy subjects (age range: 18–79 years), distinct regions of interest (ROI) were defined in the cerebral WM including corticospinal tracts. For the 3 mm sequence, significant correlations of the mean MWF with age were found for most ROIs (r < −0.8 for WM ROIs; r = −0.55 for splenium of corpus callosum; r = −0.75 for genu of corpus callosum; p < 0.001 for all ROIs). Similar correlations with age were found for the ROIs of the 5 mm sequence. No significant correlations were found for the corticospinal tract and the occipital WM (p > 0.05). Mean MWF values obtained from the 3 mm and 5 mm sequences were strongly comparable. The applied 3D GRASE MWI sequences were found to be sensitive for age-dependent myelin changes of the cerebral WM microstructure. The reported MWF values might be of substantial use as reference for further investigations in patient studies.
format Online
Article
Text
id pubmed-6177453
institution National Center for Biotechnology Information
language English
publishDate 2018
publisher Nature Publishing Group UK
record_format MEDLINE/PubMed
spelling pubmed-61774532018-10-12 Age-Related Measurements of the Myelin Water Fraction derived from 3D multi-echo GRASE reflect Myelin Content of the Cerebral White Matter Faizy, Tobias D. Kumar, Dushyant Broocks, Gabriel Thaler, Christian Flottmann, Fabian Leischner, Hannes Kutzner, Daniel Hewera, Simon Dotzauer, Dominik Stellmann, Jan-Patrick Reddy, Ravinder Fiehler, Jens Sedlacik, Jan Gellißen, Susanne Sci Rep Article Myelin Water Fraction (MWF) measurements derived from quantitative Myelin Water Imaging (MWI) may detect demyelinating changes of the cerebral white matter (WM) microstructure. Here, we investigated age-related alterations of the MWF in normal aging brains of healthy volunteers utilizing two fast and clinically feasible 3D gradient and spin echo (GRASE) MWI sequences with 3 mm and 5 mm isotropic voxel size. In 45 healthy subjects (age range: 18–79 years), distinct regions of interest (ROI) were defined in the cerebral WM including corticospinal tracts. For the 3 mm sequence, significant correlations of the mean MWF with age were found for most ROIs (r < −0.8 for WM ROIs; r = −0.55 for splenium of corpus callosum; r = −0.75 for genu of corpus callosum; p < 0.001 for all ROIs). Similar correlations with age were found for the ROIs of the 5 mm sequence. No significant correlations were found for the corticospinal tract and the occipital WM (p > 0.05). Mean MWF values obtained from the 3 mm and 5 mm sequences were strongly comparable. The applied 3D GRASE MWI sequences were found to be sensitive for age-dependent myelin changes of the cerebral WM microstructure. The reported MWF values might be of substantial use as reference for further investigations in patient studies. Nature Publishing Group UK 2018-10-09 /pmc/articles/PMC6177453/ /pubmed/30301904 http://dx.doi.org/10.1038/s41598-018-33112-8 Text en © The Author(s) 2018 Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/.
spellingShingle Article
Faizy, Tobias D.
Kumar, Dushyant
Broocks, Gabriel
Thaler, Christian
Flottmann, Fabian
Leischner, Hannes
Kutzner, Daniel
Hewera, Simon
Dotzauer, Dominik
Stellmann, Jan-Patrick
Reddy, Ravinder
Fiehler, Jens
Sedlacik, Jan
Gellißen, Susanne
Age-Related Measurements of the Myelin Water Fraction derived from 3D multi-echo GRASE reflect Myelin Content of the Cerebral White Matter
title Age-Related Measurements of the Myelin Water Fraction derived from 3D multi-echo GRASE reflect Myelin Content of the Cerebral White Matter
title_full Age-Related Measurements of the Myelin Water Fraction derived from 3D multi-echo GRASE reflect Myelin Content of the Cerebral White Matter
title_fullStr Age-Related Measurements of the Myelin Water Fraction derived from 3D multi-echo GRASE reflect Myelin Content of the Cerebral White Matter
title_full_unstemmed Age-Related Measurements of the Myelin Water Fraction derived from 3D multi-echo GRASE reflect Myelin Content of the Cerebral White Matter
title_short Age-Related Measurements of the Myelin Water Fraction derived from 3D multi-echo GRASE reflect Myelin Content of the Cerebral White Matter
title_sort age-related measurements of the myelin water fraction derived from 3d multi-echo grase reflect myelin content of the cerebral white matter
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6177453/
https://www.ncbi.nlm.nih.gov/pubmed/30301904
http://dx.doi.org/10.1038/s41598-018-33112-8
work_keys_str_mv AT faizytobiasd agerelatedmeasurementsofthemyelinwaterfractionderivedfrom3dmultiechograsereflectmyelincontentofthecerebralwhitematter
AT kumardushyant agerelatedmeasurementsofthemyelinwaterfractionderivedfrom3dmultiechograsereflectmyelincontentofthecerebralwhitematter
AT broocksgabriel agerelatedmeasurementsofthemyelinwaterfractionderivedfrom3dmultiechograsereflectmyelincontentofthecerebralwhitematter
AT thalerchristian agerelatedmeasurementsofthemyelinwaterfractionderivedfrom3dmultiechograsereflectmyelincontentofthecerebralwhitematter
AT flottmannfabian agerelatedmeasurementsofthemyelinwaterfractionderivedfrom3dmultiechograsereflectmyelincontentofthecerebralwhitematter
AT leischnerhannes agerelatedmeasurementsofthemyelinwaterfractionderivedfrom3dmultiechograsereflectmyelincontentofthecerebralwhitematter
AT kutznerdaniel agerelatedmeasurementsofthemyelinwaterfractionderivedfrom3dmultiechograsereflectmyelincontentofthecerebralwhitematter
AT hewerasimon agerelatedmeasurementsofthemyelinwaterfractionderivedfrom3dmultiechograsereflectmyelincontentofthecerebralwhitematter
AT dotzauerdominik agerelatedmeasurementsofthemyelinwaterfractionderivedfrom3dmultiechograsereflectmyelincontentofthecerebralwhitematter
AT stellmannjanpatrick agerelatedmeasurementsofthemyelinwaterfractionderivedfrom3dmultiechograsereflectmyelincontentofthecerebralwhitematter
AT reddyravinder agerelatedmeasurementsofthemyelinwaterfractionderivedfrom3dmultiechograsereflectmyelincontentofthecerebralwhitematter
AT fiehlerjens agerelatedmeasurementsofthemyelinwaterfractionderivedfrom3dmultiechograsereflectmyelincontentofthecerebralwhitematter
AT sedlacikjan agerelatedmeasurementsofthemyelinwaterfractionderivedfrom3dmultiechograsereflectmyelincontentofthecerebralwhitematter
AT gellißensusanne agerelatedmeasurementsofthemyelinwaterfractionderivedfrom3dmultiechograsereflectmyelincontentofthecerebralwhitematter