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Research ArticleBrain
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Macro- and Microstructural Changes in Patients with Spinocerebellar Ataxia Type 6: Assessment of Phylogenetic Subdivisions of the Cerebellum and the Brain Stem

K. Sato, K. Ishigame, S.H. Ying, K. Oishi, M.I. Miller and S. Mori
American Journal of Neuroradiology January 2015, 36 (1) 84-90; DOI: https://doi.org/10.3174/ajnr.A4085
K. Sato
aFrom the Russell H. Morgan Department of Radiology and Radiological Science (K.S., K.I., K.O., S.M.)
fDepartment of Radiology (K.S.), Juntendo University School of Medicine, Tokyo, Japan
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K. Ishigame
aFrom the Russell H. Morgan Department of Radiology and Radiological Science (K.S., K.I., K.O., S.M.)
gDepartment of Radiology (K.I.), University of Yamanashi, Yamanashi, Japan
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S.H. Ying
bDepartments of Radiology (S.H.Y.)
cNeurology (S.H.Y.)
dOphthalmology (S.H.Y.)
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K. Oishi
aFrom the Russell H. Morgan Department of Radiology and Radiological Science (K.S., K.I., K.O., S.M.)
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M.I. Miller
eCenter for Imaging Science (M.I.M.), Johns Hopkins University School of Medicine, Baltimore, Maryland
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S. Mori
aFrom the Russell H. Morgan Department of Radiology and Radiological Science (K.S., K.I., K.O., S.M.)
hF.M. Kirby Research Center for Functional Brain Imaging (S.M.), Kennedy Krieger Institute, Baltimore, Maryland.
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Abstract

BACKGROUND AND PURPOSE: Site-specific degeneration patterns of the infratentorial brain in relation to phylogenetic origins may relate to symptoms in patients with spinocerebellar degeneration, but the patterns are still unclear. We investigated macro- and microstructural changes of the infratentorial brain based on phylogenetic origins and their correlation with symptoms in patients with spinocerebellar ataxia type 6.

MATERIALS AND METHODS: MR images of 9 patients with spinocerebellar ataxia type 6 and 9 age- and sex-matched controls were obtained. We divided the infratentorial brain on the basis of phylogenetic origins and performed an atlas-based analysis. Comparisons of the 2 groups and a correlation analysis assessed with the International Cooperative Ataxia Rating Scale excluding age effects were performed.

RESULTS: A significant decrease of fractional volume and an increase of mean diffusivity were seen in all subdivisions of the cerebellum and in all the cerebellar peduncles except mean diffusivity in the inferior cerebellar peduncle in patients compared with controls (P < .0001 to <.05). The bilateral anterior lobes showed the strongest atrophy. Fractional volume decreased mainly in old regions, whereas mean diffusivity increased mainly in new regions of the cerebellum. Reflecting this tendency, the International Cooperative Ataxia Rating Scale total score showed strong correlations in fractional volume in the right flocculonodular lobe and the bilateral deep structures and in mean diffusivity in the bilateral posterior lobes (r = 0.73 to ±0.87).

CONCLUSIONS: We found characteristic macro- and microstructural changes, depending on phylogenetic regions of the infratentorial brain, that strongly correlated with clinical symptoms in patients with spinocerebellar ataxia type 6.

ABBREVIATIONS:

FA
fractional anisotropy
ICARS
International Cooperative Ataxia Rating Scale
ICP
inferior cerebellar peduncle
LDDMM
large deformation diffeomorphic metric mapping
MCP
middle cerebellar peduncle
MD
mean diffusivity
SCA6
spinocerebellar ataxia type 6
SCP
superior cerebellar peduncle
  • © 2015 by American Journal of Neuroradiology

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American Journal of Neuroradiology: 36 (1)
American Journal of Neuroradiology
Vol. 36, Issue 1
1 Jan 2015
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Cite this article
K. Sato, K. Ishigame, S.H. Ying, K. Oishi, M.I. Miller, S. Mori
Macro- and Microstructural Changes in Patients with Spinocerebellar Ataxia Type 6: Assessment of Phylogenetic Subdivisions of the Cerebellum and the Brain Stem
American Journal of Neuroradiology Jan 2015, 36 (1) 84-90; DOI: 10.3174/ajnr.A4085

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Macro- and Microstructural Changes in Patients with Spinocerebellar Ataxia Type 6: Assessment of Phylogenetic Subdivisions of the Cerebellum and the Brain Stem
K. Sato, K. Ishigame, S.H. Ying, K. Oishi, M.I. Miller, S. Mori
American Journal of Neuroradiology Jan 2015, 36 (1) 84-90; DOI: 10.3174/ajnr.A4085
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