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Diffusion tensor imaging profiles reveal specific neural tract distortion in normal pressure hydrocephalus

BACKGROUND: The pathogenesis of normal pressure hydrocephalus (NPH) remains unclear which limits both early diagnosis and prognostication. The responsiveness to intervention of differing, complex and concurrent injury patterns on imaging have not been well-characterized. We used diffusion tensor ima...

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Autores principales: Keong, Nicole C., Pena, Alonso, Price, Stephen J., Czosnyka, Marek, Czosnyka, Zofia, DeVito, Elise E., Housden, Charlotte R., Sahakian, Barbara J., Pickard, John D.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5560677/
https://www.ncbi.nlm.nih.gov/pubmed/28817574
http://dx.doi.org/10.1371/journal.pone.0181624
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author Keong, Nicole C.
Pena, Alonso
Price, Stephen J.
Czosnyka, Marek
Czosnyka, Zofia
DeVito, Elise E.
Housden, Charlotte R.
Sahakian, Barbara J.
Pickard, John D.
author_facet Keong, Nicole C.
Pena, Alonso
Price, Stephen J.
Czosnyka, Marek
Czosnyka, Zofia
DeVito, Elise E.
Housden, Charlotte R.
Sahakian, Barbara J.
Pickard, John D.
author_sort Keong, Nicole C.
collection PubMed
description BACKGROUND: The pathogenesis of normal pressure hydrocephalus (NPH) remains unclear which limits both early diagnosis and prognostication. The responsiveness to intervention of differing, complex and concurrent injury patterns on imaging have not been well-characterized. We used diffusion tensor imaging (DTI) to explore the topography and reversibility of white matter injury in NPH pre- and early after shunting. METHODS: Twenty-five participants (sixteen NPH patients and nine healthy controls) underwent DTI, pre-operatively and at two weeks post-intervention in patients. We interrogated 40 datasets to generate a full panel of DTI measures and corroborated findings with plots of isotropy (p) vs. anisotropy (q). RESULTS: Concurrent examination of DTI measures revealed distinct profiles for NPH patients vs. controls. PQ plots demonstrated that patterns of injury occupied discrete white matter districts. DTI profiles for different white matter tracts showed changes consistent with i) predominant transependymal diffusion with stretch/ compression, ii) oedema with or without stretch/ compression and iii) predominant stretch/ compression. Findings were specific to individual tracts and dependent upon their proximity to the ventricles. At two weeks post-intervention, there was a 6·7% drop in axial diffusivity (p = 0·022) in the posterior limb of the internal capsule, compatible with improvement in stretch/ compression, that preceded any discernible changes in clinical outcome. On PQ plots, the trajectories of the posterior limb of the internal capsule and inferior longitudinal fasciculus suggested attempted ‘round trips’. i.e. return to normality. CONCLUSION: DTI profiling with p:q correlation may offer a non-invasive biomarker of the characteristics of potentially reversible white matter injury.
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spelling pubmed-55606772017-08-25 Diffusion tensor imaging profiles reveal specific neural tract distortion in normal pressure hydrocephalus Keong, Nicole C. Pena, Alonso Price, Stephen J. Czosnyka, Marek Czosnyka, Zofia DeVito, Elise E. Housden, Charlotte R. Sahakian, Barbara J. Pickard, John D. PLoS One Research Article BACKGROUND: The pathogenesis of normal pressure hydrocephalus (NPH) remains unclear which limits both early diagnosis and prognostication. The responsiveness to intervention of differing, complex and concurrent injury patterns on imaging have not been well-characterized. We used diffusion tensor imaging (DTI) to explore the topography and reversibility of white matter injury in NPH pre- and early after shunting. METHODS: Twenty-five participants (sixteen NPH patients and nine healthy controls) underwent DTI, pre-operatively and at two weeks post-intervention in patients. We interrogated 40 datasets to generate a full panel of DTI measures and corroborated findings with plots of isotropy (p) vs. anisotropy (q). RESULTS: Concurrent examination of DTI measures revealed distinct profiles for NPH patients vs. controls. PQ plots demonstrated that patterns of injury occupied discrete white matter districts. DTI profiles for different white matter tracts showed changes consistent with i) predominant transependymal diffusion with stretch/ compression, ii) oedema with or without stretch/ compression and iii) predominant stretch/ compression. Findings were specific to individual tracts and dependent upon their proximity to the ventricles. At two weeks post-intervention, there was a 6·7% drop in axial diffusivity (p = 0·022) in the posterior limb of the internal capsule, compatible with improvement in stretch/ compression, that preceded any discernible changes in clinical outcome. On PQ plots, the trajectories of the posterior limb of the internal capsule and inferior longitudinal fasciculus suggested attempted ‘round trips’. i.e. return to normality. CONCLUSION: DTI profiling with p:q correlation may offer a non-invasive biomarker of the characteristics of potentially reversible white matter injury. Public Library of Science 2017-08-17 /pmc/articles/PMC5560677/ /pubmed/28817574 http://dx.doi.org/10.1371/journal.pone.0181624 Text en © 2017 Keong 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
Keong, Nicole C.
Pena, Alonso
Price, Stephen J.
Czosnyka, Marek
Czosnyka, Zofia
DeVito, Elise E.
Housden, Charlotte R.
Sahakian, Barbara J.
Pickard, John D.
Diffusion tensor imaging profiles reveal specific neural tract distortion in normal pressure hydrocephalus
title Diffusion tensor imaging profiles reveal specific neural tract distortion in normal pressure hydrocephalus
title_full Diffusion tensor imaging profiles reveal specific neural tract distortion in normal pressure hydrocephalus
title_fullStr Diffusion tensor imaging profiles reveal specific neural tract distortion in normal pressure hydrocephalus
title_full_unstemmed Diffusion tensor imaging profiles reveal specific neural tract distortion in normal pressure hydrocephalus
title_short Diffusion tensor imaging profiles reveal specific neural tract distortion in normal pressure hydrocephalus
title_sort diffusion tensor imaging profiles reveal specific neural tract distortion in normal pressure hydrocephalus
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5560677/
https://www.ncbi.nlm.nih.gov/pubmed/28817574
http://dx.doi.org/10.1371/journal.pone.0181624
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