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Multi-parametric structural magnetic resonance imaging in relation to cognitive dysfunction in long-standing multiple sclerosis

Authors :
Frederik Barkhof
Mike P. Wattjes
Martijn D. Steenwijk
Bernard M. J. Uitdehaag
Marita Daams
Jeroen J. G. Geurts
Menno M. Schoonheim
Joep Killestein
Prejaas Tewarie
Lisanne J. Balk
Radiology and nuclear medicine
Amsterdam Neuroscience - Neuroinfection & -inflammation
Anatomy and neurosciences
Neurology
Source :
Daams, M, Steenwijk, M D, Schoonheim, M M, Wattjes, M P, Balk, L J, Tewarie, P K, Killestein, J, Uitdehaag, B M J, Geurts, J J G & Barkhof, F 2016, ' Multi-parametric structural magnetic resonance imaging in relation to cognitive dysfunction in long-standing multiple sclerosis ', Multiple Sclerosis, vol. 22, no. 5, pp. 608-619 . https://doi.org/10.1177/1352458515596598, Multiple Sclerosis, 22(5), 608-619. SAGE Publications Ltd
Publication Year :
2016

Abstract

Background: Cognitive deficits are common in multiple sclerosis. Most previous studies investigating the imaging substrate of cognitive deficits in multiple sclerosis included patients with relatively short disease durations and were limited to one modality/brain region. Objective: To identify the strongest neuroimaging predictors for cognitive dysfunction in a large cohort of patients with long-standing multiple sclerosis. Methods: Extensive neuropsychological testing and multimodal 3.0T MRI was performed in 202 patients with multiple sclerosis and 52 controls. Cognitive scores were compared between groups using Z-scores. Whole-brain, white matter, grey matter, deep grey matter and lesion volumes; cortical thickness, (juxta)cortical and cerebellar lesions; and extent and severity of diffuse white matter damage were measured. Stepwise linear regression was used to identify the strongest predictors for cognitive dysfunction. Results: All cognitive domains were affected in patients. Patients showed extensive atrophy, focal pathology and damage in up to 75% of the investigated white matter. Associations between imaging markers and average cognition were two times stronger in cognitively impaired patients than in cognitively preserved patients. The final model for average cognition consisted of deep grey matter DGMV volume and fractional anisotropy severity (adjusted R²=0.490; pConclusion: From all imaging markers, deep grey matter atrophy and diffuse white matter damage emerged as the strongest predictors for cognitive dysfunction in long-standing multiple sclerosis.

Details

Language :
English
ISSN :
13524585
Database :
OpenAIRE
Journal :
Daams, M, Steenwijk, M D, Schoonheim, M M, Wattjes, M P, Balk, L J, Tewarie, P K, Killestein, J, Uitdehaag, B M J, Geurts, J J G & Barkhof, F 2016, ' Multi-parametric structural magnetic resonance imaging in relation to cognitive dysfunction in long-standing multiple sclerosis ', Multiple Sclerosis, vol. 22, no. 5, pp. 608-619 . https://doi.org/10.1177/1352458515596598, Multiple Sclerosis, 22(5), 608-619. SAGE Publications Ltd
Accession number :
edsair.doi.dedup.....cd72a51ad3b416250a5c4543453dde92
Full Text :
https://doi.org/10.1177/1352458515596598