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Research ArticleBrain

Subcortical Volumetric Reductions in Adult Niemann-Pick Disease Type C: A Cross-Sectional Study

M. Walterfang, B. Patenaude, L.A. Abel, H. Kluenemann, E.A. Bowman, M.C. Fahey, P. Desmond, W. Kelso and D. Velakoulis
American Journal of Neuroradiology July 2013, 34 (7) 1334-1340; DOI: https://doi.org/10.3174/ajnr.A3356
M. Walterfang
aFrom the Melbourne Neuropsychiatry Centre (M.W., E.A.B., D.V.)
dNeuropsychiatry Unit (M.W., D.V.)
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B. Patenaude
gDepartment of Psychiatry and Behavioral Sciences (B.P.), Stanford University, Stanford, California
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L.A. Abel
bDepartments of Optometry and Vision Sciences (E.A.B., L.A.A.)
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H. Kluenemann
hDepartment of Psychiatry (H.K.), School of Medicine, Regensburg Universität, Regensburg, Germany
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E.A. Bowman
aFrom the Melbourne Neuropsychiatry Centre (M.W., E.A.B., D.V.)
bDepartments of Optometry and Vision Sciences (E.A.B., L.A.A.)
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M.C. Fahey
iDepartment of Pediatrics (M.C.F.), Monash University, Melbourne, Australia.
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P. Desmond
cRadiology (P.D.), University of Melbourne, Melbourne, Australia
eDepartment of Radiology (P.D.)
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W. Kelso
fNeuropsychiatry Unit (W.K.), Royal Melbourne Hospital, Melbourne, Australia
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D. Velakoulis
aFrom the Melbourne Neuropsychiatry Centre (M.W., E.A.B., D.V.)
dNeuropsychiatry Unit (M.W., D.V.)
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Abstract

BACKGROUND AND PURPOSE: Voxel-based analysis has suggested that deep gray matter rather than cortical regions is initially affected in adult Niemann-Pick type C. We sought to examine a range of deep gray matter structures in adults with NPC and relate these to clinical variables.

MATERIALS AND METHODS: Ten adult patients with NPC (18–49 years of age) were compared with 27 age- and sex-matched controls, and subcortical structures were automatically segmented from normalized T1-weighted MR images. Absolute volumes (in cubic millimeters) were generated for a range of deep gray matter structures and were compared between groups and correlated with illness variables.

RESULTS: Most structures were smaller in patients with NPC compared with controls. The thalamus, hippocampus, and striatum showed the greatest and most significant reductions, and left hippocampal volume correlated with symptom score and cognition. Vertex analysis of the thalamus, hippocampus, and caudate implicated regions involved in memory, executive function, and motor control.

CONCLUSIONS: Thalamic and hippocampal reductions may underpin the memory and executive deficits seen in adult NPC. Volume losses in other subcortical regions may also be involved in the characteristic range of motor, psychiatric, and cognitive deficits seen in the disease.

ABBREVIATIONS:

ICV
intracranial volume
NFT
neurofibrillary tangle
NPC
Niemann-Pick disease type C
NUCOG
Neuropsychiatry Unit Cognitive Assessment Tool
VBM
voxel-based morphometry
  • © 2013 by American Journal of Neuroradiology
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American Journal of Neuroradiology: 34 (7)
American Journal of Neuroradiology
Vol. 34, Issue 7
1 Jul 2013
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Cite this article
M. Walterfang, B. Patenaude, L.A. Abel, H. Kluenemann, E.A. Bowman, M.C. Fahey, P. Desmond, W. Kelso, D. Velakoulis
Subcortical Volumetric Reductions in Adult Niemann-Pick Disease Type C: A Cross-Sectional Study
American Journal of Neuroradiology Jul 2013, 34 (7) 1334-1340; DOI: 10.3174/ajnr.A3356

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Subcortical Volumetric Reductions in Adult Niemann-Pick Disease Type C: A Cross-Sectional Study
M. Walterfang, B. Patenaude, L.A. Abel, H. Kluenemann, E.A. Bowman, M.C. Fahey, P. Desmond, W. Kelso, D. Velakoulis
American Journal of Neuroradiology Jul 2013, 34 (7) 1334-1340; DOI: 10.3174/ajnr.A3356
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