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Research ArticleNeurodegenerative Disorder Imaging

Brainstem Chipmunk Sign: A Diagnostic Imaging Clue across All Subtypes of Alexander Disease

Thaís Armangue, Matthew T. Whitehead, Davide Tonduti, Laura Farina, Ali Reza Tavasoli, Arastoo Vossough, Mariko L. Bennett, Ylenia Vaia, Geneviève Bernard, Ettore Salsano, Saadet Mercimek-Andrews, Amy Waldman and Adeline Vanderver
American Journal of Neuroradiology June 2024, 45 (6) 769-772; DOI: https://doi.org/10.3174/ajnr.A8220
Thaís Armangue
aFrom the Neuroimmunology Program (T.A.), Institut d’Investigacions Biomèdiques August Pi i Sunyer (IDIBAPS)-Hospital Clinic, University of Barcelona, Barcelona, Spain
bNeurology Department (T.A.), Neuroimmunology Unit, Sant Joan de Deu Children’s Hospital, University of Barcelona, Barcelona, Spain
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Matthew T. Whitehead
cDepartment of Radiology (M.T.W., A.Vossough), Children’s Hospital of Philadelphia, Philadelphia, Pennsylvania
dPerelman School of Medicine (M.T.W., A.Vossough, A.W., A.Vanderver), University of Pennsylvania, Philadelphia, Pennsylvania
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Davide Tonduti
eUnit of Pediatric Neurology (D.T., Y.V.), Center for Diagnosis and Treatment of Leukodystrophies, V. Buzzi Children’s Hospital, University of Milan, Milan, Italy
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Laura Farina
fNeuroimaging Laboratory (L.F.), IRCCS Fondazione Santa Lucia, Rome, Italy
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Ali Reza Tavasoli
gDepartment of Neurology (A.R.T.), Children’s Medical Center, Tehran University of Medical Sciences, Tehran, Iran
hDepartment of Neurology (A.R.T.), Barrow Neurological Institute, Phoenix Children’s Hospital, Phoenix, Arizona
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Arastoo Vossough
cDepartment of Radiology (M.T.W., A.Vossough), Children’s Hospital of Philadelphia, Philadelphia, Pennsylvania
dPerelman School of Medicine (M.T.W., A.Vossough, A.W., A.Vanderver), University of Pennsylvania, Philadelphia, Pennsylvania
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Mariko L. Bennett
oDivision of Neurology (M.L.B., Y.V., A.W., A.Vanderver), Children’s Hospital of Philadelphia, Philadelphia, Pennsylvania.
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Ylenia Vaia
eUnit of Pediatric Neurology (D.T., Y.V.), Center for Diagnosis and Treatment of Leukodystrophies, V. Buzzi Children’s Hospital, University of Milan, Milan, Italy
oDivision of Neurology (M.L.B., Y.V., A.W., A.Vanderver), Children’s Hospital of Philadelphia, Philadelphia, Pennsylvania.
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Geneviève Bernard
iDepartments of Neurology and Neurosurgery, Pediatrics, and Human Genetics (G.B.), McGill University, Montreal, Quebec, Canada
jDepartment of Specialized Medicine (G.B.), Division of Medical Genetics, McGill University Health Centre, Montreal, Quebec, Canada
kChild Health and Human Development Program (G.B.), Research Institute of the McGill University Health Centre, Montreal, Quebec, Canada
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Ettore Salsano
lUnit of Rare Neurological Diseases (E.S.), Fondazione IRCCS Istituto Neurologico Carlo Besta, Milan, Italy
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Saadet Mercimek-Andrews
mDepartment of Medical Genetics (S.M.-A.), Faculty of Medicine and Dentistry, University of Alberta, Edmonton, Alberta, Canada
nThe Hospital for Sick Children (S.M.-A.), Toronto, Ontario, Canada
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Amy Waldman
dPerelman School of Medicine (M.T.W., A.Vossough, A.W., A.Vanderver), University of Pennsylvania, Philadelphia, Pennsylvania
oDivision of Neurology (M.L.B., Y.V., A.W., A.Vanderver), Children’s Hospital of Philadelphia, Philadelphia, Pennsylvania.
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Adeline Vanderver
dPerelman School of Medicine (M.T.W., A.Vossough, A.W., A.Vanderver), University of Pennsylvania, Philadelphia, Pennsylvania
oDivision of Neurology (M.L.B., Y.V., A.W., A.Vanderver), Children’s Hospital of Philadelphia, Philadelphia, Pennsylvania.
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Abstract

BACKGROUND AND PURPOSE: While classic brain MR imaging features of Alexander disease have been well-documented, lesional patterns can overlap with other leukodystrophies, especially in the early stages of the disease or in milder phenotypes. We aimed to assess the utility of a new neuroimaging sign to help increase the diagnostic specificity of Alexander disease.

MATERIALS AND METHODS: A peculiar bilateral symmetric hyperintense signal on T2-weighted images affecting the medulla oblongata was identified in an index patient with type I Alexander disease. Subsequently, 5 observers performed a systematic MR imaging review for this pattern by examining 55 subjects with Alexander disease and 74 subjects with other leukodystrophies. Interobserver agreement was assessed by the κ index. Sensitivity, specificity, and receiver operating characteristic curves were determined.

RESULTS: The identified pattern was present in 87% of subjects with Alexander disease and 14% of those without Alexander disease leukodystrophy (P < .001), 3 with vanishing white matter, 4 with adult polyglucosan body disease, and 3 others. It was found equally in both type I and type II Alexander disease (28/32, 88% versus 18/21, 86%; P = .851) and in subjects with unusual disease features (2/2). Sensitivity (87.3%; 95% CI, 76.0%–93.7%), specificity (86.5%; 95% CI, 76.9%–92.5%), and interobserver agreement (κ index = 0.82) were high.

CONCLUSIONS: The identified pattern in the medulla oblongata, called the chipmunk sign due to its resemblance to the face of this rodent, is extremely common in subjects with Alexander disease and represents a diagnostic tool that can aid in early diagnosis, especially in subjects with otherwise atypical MR imaging findings and/or clinical features.

ABBREVIATIONS:

APBD
adult polyglucosan body disease
ADLD
adult-onset autosomal dominant leukodystrophy
AxD
Alexander disease
GFAP
glial fibrillary acidic protein
ION
inferior olivary nucleus
IQR
interquartile range
VWM
vanishing white matter
  • © 2024 by American Journal of Neuroradiology
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American Journal of Neuroradiology: 45 (6)
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Cite this article
Thaís Armangue, Matthew T. Whitehead, Davide Tonduti, Laura Farina, Ali Reza Tavasoli, Arastoo Vossough, Mariko L. Bennett, Ylenia Vaia, Geneviève Bernard, Ettore Salsano, Saadet Mercimek-Andrews, Amy Waldman, Adeline Vanderver
Brainstem Chipmunk Sign: A Diagnostic Imaging Clue across All Subtypes of Alexander Disease
American Journal of Neuroradiology Jun 2024, 45 (6) 769-772; DOI: 10.3174/ajnr.A8220

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Brainstem Chipmunk Sign in Alexander Disease
Thaís Armangue, Matthew T. Whitehead, Davide Tonduti, Laura Farina, Ali Reza Tavasoli, Arastoo Vossough, Mariko L. Bennett, Ylenia Vaia, Geneviève Bernard, Ettore Salsano, Saadet Mercimek-Andrews, Amy Waldman, Adeline Vanderver
American Journal of Neuroradiology Jun 2024, 45 (6) 769-772; DOI: 10.3174/ajnr.A8220
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