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Characterizing the microstructural basis of “unidentified bright objects” in neurofibromatosis type 1: A combined in vivo multicomponent T2 relaxation and multi-shell diffusion MRI analysis

INTRODUCTION: The histopathological basis of “unidentified bright objects” (UBOs) (hyperintense regions seen on T2-weighted magnetic resonance (MR) brain scans in neurofibromatosis-1 (NF1)) remains unclear. New in vivo MRI-based techniques (multi-exponential T2 relaxation (MET2) and diffusion MR ima...

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Autores principales: Billiet, Thibo, Mädler, Burkhard, D'Arco, Felice, Peeters, Ronald, Deprez, Sabine, Plasschaert, Ellen, Leemans, Alexander, Zhang, Hui, den Bergh, Bea Van, Vandenbulcke, Mathieu, Legius, Eric, Sunaert, Stefan, Emsell, Louise
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4053637/
https://www.ncbi.nlm.nih.gov/pubmed/24936416
http://dx.doi.org/10.1016/j.nicl.2014.04.005
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author Billiet, Thibo
Mädler, Burkhard
D'Arco, Felice
Peeters, Ronald
Deprez, Sabine
Plasschaert, Ellen
Leemans, Alexander
Zhang, Hui
den Bergh, Bea Van
Vandenbulcke, Mathieu
Legius, Eric
Sunaert, Stefan
Emsell, Louise
author_facet Billiet, Thibo
Mädler, Burkhard
D'Arco, Felice
Peeters, Ronald
Deprez, Sabine
Plasschaert, Ellen
Leemans, Alexander
Zhang, Hui
den Bergh, Bea Van
Vandenbulcke, Mathieu
Legius, Eric
Sunaert, Stefan
Emsell, Louise
author_sort Billiet, Thibo
collection PubMed
description INTRODUCTION: The histopathological basis of “unidentified bright objects” (UBOs) (hyperintense regions seen on T2-weighted magnetic resonance (MR) brain scans in neurofibromatosis-1 (NF1)) remains unclear. New in vivo MRI-based techniques (multi-exponential T2 relaxation (MET2) and diffusion MR imaging (dMRI)) provide measures relating to microstructural change. We combined these methods and present previously unreported data on in vivo UBO microstructure in NF1. METHODS: 3-Tesla dMRI data were acquired on 17 NF1 patients, covering 30 white matter UBOs. Diffusion tensor, kurtosis and neurite orientation and dispersion density imaging parameters were calculated within UBO sites and in contralateral normal appearing white matter (cNAWM). Analysis of MET2 parameters was performed on 24 UBO–cNAWM pairs. RESULTS: No significant alterations in the myelin water fraction and intra- and extracellular (IE) water fraction were found. Mean T2 time of IE water was significantly higher in UBOs. UBOs furthermore showed increased axial, radial and mean diffusivity, and decreased fractional anisotropy, mean kurtosis and neurite density index compared to cNAWM. Neurite orientation dispersion and isotropic fluid fraction were unaltered. CONCLUSION: Our results suggest that demyelination and axonal degeneration are unlikely to be present in UBOs, which appear to be mainly caused by a shift towards a higher T2-value of the intra- and extracellular water pool. This may arise from altered microstructural compartmentalization, and an increase in ‘extracellular-like’, intracellular water, possibly due to intramyelinic edema. These findings confirm the added value of combining dMRI and MET2 to characterize the microstructural basis of T2 hyperintensities in vivo.
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spelling pubmed-40536372014-06-16 Characterizing the microstructural basis of “unidentified bright objects” in neurofibromatosis type 1: A combined in vivo multicomponent T2 relaxation and multi-shell diffusion MRI analysis Billiet, Thibo Mädler, Burkhard D'Arco, Felice Peeters, Ronald Deprez, Sabine Plasschaert, Ellen Leemans, Alexander Zhang, Hui den Bergh, Bea Van Vandenbulcke, Mathieu Legius, Eric Sunaert, Stefan Emsell, Louise Neuroimage Clin Article INTRODUCTION: The histopathological basis of “unidentified bright objects” (UBOs) (hyperintense regions seen on T2-weighted magnetic resonance (MR) brain scans in neurofibromatosis-1 (NF1)) remains unclear. New in vivo MRI-based techniques (multi-exponential T2 relaxation (MET2) and diffusion MR imaging (dMRI)) provide measures relating to microstructural change. We combined these methods and present previously unreported data on in vivo UBO microstructure in NF1. METHODS: 3-Tesla dMRI data were acquired on 17 NF1 patients, covering 30 white matter UBOs. Diffusion tensor, kurtosis and neurite orientation and dispersion density imaging parameters were calculated within UBO sites and in contralateral normal appearing white matter (cNAWM). Analysis of MET2 parameters was performed on 24 UBO–cNAWM pairs. RESULTS: No significant alterations in the myelin water fraction and intra- and extracellular (IE) water fraction were found. Mean T2 time of IE water was significantly higher in UBOs. UBOs furthermore showed increased axial, radial and mean diffusivity, and decreased fractional anisotropy, mean kurtosis and neurite density index compared to cNAWM. Neurite orientation dispersion and isotropic fluid fraction were unaltered. CONCLUSION: Our results suggest that demyelination and axonal degeneration are unlikely to be present in UBOs, which appear to be mainly caused by a shift towards a higher T2-value of the intra- and extracellular water pool. This may arise from altered microstructural compartmentalization, and an increase in ‘extracellular-like’, intracellular water, possibly due to intramyelinic edema. These findings confirm the added value of combining dMRI and MET2 to characterize the microstructural basis of T2 hyperintensities in vivo. Elsevier 2014-04-13 /pmc/articles/PMC4053637/ /pubmed/24936416 http://dx.doi.org/10.1016/j.nicl.2014.04.005 Text en © 2014 The Authors http://creativecommons.org/licenses/by-nc-nd/3.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/3.0/).
spellingShingle Article
Billiet, Thibo
Mädler, Burkhard
D'Arco, Felice
Peeters, Ronald
Deprez, Sabine
Plasschaert, Ellen
Leemans, Alexander
Zhang, Hui
den Bergh, Bea Van
Vandenbulcke, Mathieu
Legius, Eric
Sunaert, Stefan
Emsell, Louise
Characterizing the microstructural basis of “unidentified bright objects” in neurofibromatosis type 1: A combined in vivo multicomponent T2 relaxation and multi-shell diffusion MRI analysis
title Characterizing the microstructural basis of “unidentified bright objects” in neurofibromatosis type 1: A combined in vivo multicomponent T2 relaxation and multi-shell diffusion MRI analysis
title_full Characterizing the microstructural basis of “unidentified bright objects” in neurofibromatosis type 1: A combined in vivo multicomponent T2 relaxation and multi-shell diffusion MRI analysis
title_fullStr Characterizing the microstructural basis of “unidentified bright objects” in neurofibromatosis type 1: A combined in vivo multicomponent T2 relaxation and multi-shell diffusion MRI analysis
title_full_unstemmed Characterizing the microstructural basis of “unidentified bright objects” in neurofibromatosis type 1: A combined in vivo multicomponent T2 relaxation and multi-shell diffusion MRI analysis
title_short Characterizing the microstructural basis of “unidentified bright objects” in neurofibromatosis type 1: A combined in vivo multicomponent T2 relaxation and multi-shell diffusion MRI analysis
title_sort characterizing the microstructural basis of “unidentified bright objects” in neurofibromatosis type 1: a combined in vivo multicomponent t2 relaxation and multi-shell diffusion mri analysis
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4053637/
https://www.ncbi.nlm.nih.gov/pubmed/24936416
http://dx.doi.org/10.1016/j.nicl.2014.04.005
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