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Research ArticlePediatric Neuroimaging
Open Access

Involvement of the Thalamus, Hippocampus, and Brainstem in Hypsarrhythmia of West Syndrome: Simultaneous Recordings of Electroencephalography and fMRI Study

Y. Maki, J. Natsume, Y. Ito, Y. Okai, E. Bagarinao, H. Yamamoto, S. Ogaya, T. Takeuchi, T. Fukasawa, F. Sawamura, T. Mitsumatsu, S. Maesawa, R. Saito, Y. Takahashi and H. Kidokoro
American Journal of Neuroradiology October 2022, 43 (10) 1502-1507; DOI: https://doi.org/10.3174/ajnr.A7646
Y. Maki
aFrom the Departments of Pediatrics (Y.M., J.N., Y.I., Y.O., H.Y., F.S., T.M., Y.T., H.K.)
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J. Natsume
aFrom the Departments of Pediatrics (Y.M., J.N., Y.I., Y.O., H.Y., F.S., T.M., Y.T., H.K.)
bDevelopmental Disability Medicine (J.N.)
dBrain and Mind Research Center (J.N., Y.I., Y.O., E.B., H.Y., S.M., H.K.), Nagoya University, Nagoya, Japan
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Y. Ito
aFrom the Departments of Pediatrics (Y.M., J.N., Y.I., Y.O., H.Y., F.S., T.M., Y.T., H.K.)
dBrain and Mind Research Center (J.N., Y.I., Y.O., E.B., H.Y., S.M., H.K.), Nagoya University, Nagoya, Japan
eDepartment of Pediatrics (Y.I.), Aichi Prefectural Mikawa Aoitori Medical and Rehabilitation Center, Okazaki, Japan
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Y. Okai
aFrom the Departments of Pediatrics (Y.M., J.N., Y.I., Y.O., H.Y., F.S., T.M., Y.T., H.K.)
dBrain and Mind Research Center (J.N., Y.I., Y.O., E.B., H.Y., S.M., H.K.), Nagoya University, Nagoya, Japan
fDepartment of Pediatric Neurology (Y.O.), Toyota Municipal Child Development Center, Toyota, Japan
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E. Bagarinao
dBrain and Mind Research Center (J.N., Y.I., Y.O., E.B., H.Y., S.M., H.K.), Nagoya University, Nagoya, Japan
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H. Yamamoto
aFrom the Departments of Pediatrics (Y.M., J.N., Y.I., Y.O., H.Y., F.S., T.M., Y.T., H.K.)
dBrain and Mind Research Center (J.N., Y.I., Y.O., E.B., H.Y., S.M., H.K.), Nagoya University, Nagoya, Japan
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S. Ogaya
gDepartment of Pediatric Neurology (S.O.), Aichi Developmental Disability Center Central Hospital, Kasugai, Japan
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T. Takeuchi
hDepartment of Pediatrics (T.T.), Japanese Red Cross Nagoya First Hospital,
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T. Fukasawa
iNagoya, Japan; and Department of Pediatrics (T.F.), Anjo Kosei Hospital, Anjo, Japan
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F. Sawamura
aFrom the Departments of Pediatrics (Y.M., J.N., Y.I., Y.O., H.Y., F.S., T.M., Y.T., H.K.)
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T. Mitsumatsu
aFrom the Departments of Pediatrics (Y.M., J.N., Y.I., Y.O., H.Y., F.S., T.M., Y.T., H.K.)
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S. Maesawa
cNeurosurgery (S.M., R.S.), Nagoya University Graduate School of Medicine, Nagoya, Japan
dBrain and Mind Research Center (J.N., Y.I., Y.O., E.B., H.Y., S.M., H.K.), Nagoya University, Nagoya, Japan
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R. Saito
cNeurosurgery (S.M., R.S.), Nagoya University Graduate School of Medicine, Nagoya, Japan
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Y. Takahashi
aFrom the Departments of Pediatrics (Y.M., J.N., Y.I., Y.O., H.Y., F.S., T.M., Y.T., H.K.)
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H. Kidokoro
aFrom the Departments of Pediatrics (Y.M., J.N., Y.I., Y.O., H.Y., F.S., T.M., Y.T., H.K.)
dBrain and Mind Research Center (J.N., Y.I., Y.O., E.B., H.Y., S.M., H.K.), Nagoya University, Nagoya, Japan
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Abstract

BACKGROUND AND PURPOSE: West syndrome is a developmental and epileptic encephalopathy characterized by epileptic spasms, neurodevelopmental regression, and a specific EEG pattern called hypsarrhythmia. Our aim was to investigate the brain activities related to hypsarrhythmia at onset and focal epileptiform discharges in the remote period in children with West syndrome using simultaneous electroencephalography and fMRI recordings.

MATERIALS AND METHODS: Fourteen children with West syndrome underwent simultaneous electroencephalography and fMRI at the onset of West syndrome. Statistically significant blood oxygen level–dependent responses related to hypsarrhythmia were analyzed using an event-related design of 4 hemodynamic response functions with peaks at 3, 5, 7, and 9 seconds after the onset of each event. Six of 14 children had focal epileptiform discharges after treatment and underwent simultaneous electroencephalography and fMRI from 12 to 25 months of age.

RESULTS: At onset, positive blood oxygen level–dependent responses were seen in the brainstem (14/14 patients), thalami (13/14), basal ganglia (13/14), and hippocampi (13/14), in addition to multiple cerebral cortices. Group analysis using hemodynamic response functions with peaks at 3, 5, and 7 seconds showed positive blood oxygen level–dependent responses in the brainstem, thalamus, and hippocampus, while positive blood oxygen level–dependent responses in multiple cerebral cortices were seen using hemodynamic response functions with peaks at 5 and 7 seconds. In the remote period, 3 of 6 children had focal epileptiform discharge–related positive blood oxygen level–dependent responses in the thalamus, hippocampus, and brainstem.

CONCLUSIONS: Positive blood oxygen level–dependent responses with hypsarrhythmia appeared in the brainstem, thalamus, and hippocampus on earlier hemodynamic response functions than the cerebral cortices, suggesting the propagation of epileptogenic activities from the deep brain structures to the neocortices. Activation of the hippocampus, thalamus, and brainstem was still seen in half of the patients with focal epileptiform discharges after adrenocorticotropic hormone therapy.

ABBREVIATIONS:

ACTH
adrenocorticotropic hormone
BOLD
blood oxygen level–dependent
ED
epileptiform discharge
EEG-fMRI
simultaneous recordings of electroencephalography and fMRI
HRF
hemodynamic response function
MNI
Montreal Neurological Institute
WS
West syndrome
  • © 2022 by American Journal of Neuroradiology

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Y. Maki, J. Natsume, Y. Ito, Y. Okai, E. Bagarinao, H. Yamamoto, S. Ogaya, T. Takeuchi, T. Fukasawa, F. Sawamura, T. Mitsumatsu, S. Maesawa, R. Saito, Y. Takahashi, H. Kidokoro
Involvement of the Thalamus, Hippocampus, and Brainstem in Hypsarrhythmia of West Syndrome: Simultaneous Recordings of Electroencephalography and fMRI Study
American Journal of Neuroradiology Oct 2022, 43 (10) 1502-1507; DOI: 10.3174/ajnr.A7646

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Thalamus, Hippocampus & Brainstem in West Syndrome
Y. Maki, J. Natsume, Y. Ito, Y. Okai, E. Bagarinao, H. Yamamoto, S. Ogaya, T. Takeuchi, T. Fukasawa, F. Sawamura, T. Mitsumatsu, S. Maesawa, R. Saito, Y. Takahashi, H. Kidokoro
American Journal of Neuroradiology Oct 2022, 43 (10) 1502-1507; DOI: 10.3174/ajnr.A7646
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