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Research ArticleBrain
Open Access

Reversible Changes in Brain Glucose Metabolism Following Thyroid Function Normalization in Hyperthyroidism

Q. Miao, S. Zhang, Y.H. Guan, H.Y. Ye, Z.Y. Zhang, Q.Y. Zhang, R.D. Xue, M.F. Zeng, C.T. Zuo and Y.M. Li
American Journal of Neuroradiology June 2011, 32 (6) 1034-1042; DOI: https://doi.org/10.3174/ajnr.A2449
Q. Miao
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S. Zhang
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Y.H. Guan
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H.Y. Ye
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Z.Y. Zhang
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Q.Y. Zhang
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R.D. Xue
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M.F. Zeng
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C.T. Zuo
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Y.M. Li
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Abstract

BACKGROUND AND PURPOSE: Patients with hyperthyroidism frequently present with regional cerebral metabolic changes, but the consequences of endocrine-induced brain changes after thyroid function normalization are unclear. We hypothesized that the changes of regional cerebral glucose metabolism are related to thyroid hormone levels in patients with hyperthyroid, and some of these changes can be reversed with antithyroid therapy.

MATERIALS AND METHODS: Relative regional cerebral glucose metabolism was compared between 10 new-onset untreated patients with hyperthyroidism and 20 healthy control participants by using brain FDG-PET scans. Levels of emotional distress were evaluated by using the SAS and SDS. Patients were treated with methimazole. A follow-up PET scan was performed to assess metabolic changes of the brain when thyroid functions normalized.

RESULTS: Compared with controls, patients exhibited lower activity in the limbic system, frontal lobes, and temporal lobes before antithyroid treatment. There were positive correlations between scores of depression and regional metabolism in the cingulate and paracentral lobule. The severity of depression and anxiety covaried negatively with pretreatment activity in the inferior temporal and inferior parietal gyri respectively. Compared with the hyperthyroid status, patients with normalized thyroid functions showed an increased metabolism in the left parahippocampal, fusiform, and right superior frontal gyri. The decrease in both FT3 and FT4 was associated with increased activity in the left parahippocampal and right superior frontal gyri.

CONCLUSIONS: The changes of regional cerebral glucose metabolism are related to thyroid hormone levels in patients with hyperthyroidism, and some cerebral hypometabolism can be improved after antithyroid therapy.

Abbreviations

BA
Brodmann area
β value
standardized coefficients
FDG
fluorodeoxyglucose
18F-FDG
fluorine 18 fluorodeoxyglucose
FDR
false discovery rate
FT3
free triiodothyronine
FT4
free thyroxine
GLUT-1
glucose transporter protein type 1
MNI
Montreal Neurological Institute
MRS
MR spectroscopy
PET
positron-emission tomography
SAS
Self-Rating Anxiety Scale
SDS
Self-Rating Depression Scale
SPECT
single-photon emission tomography
SPM
statistical parametric mapping
SPSS
Statistical Package for the Social Sciences
T1
before antithyroid therapy
T2
after antithyroid therapy
TRAb
anti-thyroid stimulating hormone receptor antibody
TSH
thyrotropin
VOI
volume of interest
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American Journal of Neuroradiology: 32 (6)
American Journal of Neuroradiology
Vol. 32, Issue 6
1 Jun 2011
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Cite this article
Q. Miao, S. Zhang, Y.H. Guan, H.Y. Ye, Z.Y. Zhang, Q.Y. Zhang, R.D. Xue, M.F. Zeng, C.T. Zuo, Y.M. Li
Reversible Changes in Brain Glucose Metabolism Following Thyroid Function Normalization in Hyperthyroidism
American Journal of Neuroradiology Jun 2011, 32 (6) 1034-1042; DOI: 10.3174/ajnr.A2449

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Reversible Changes in Brain Glucose Metabolism Following Thyroid Function Normalization in Hyperthyroidism
Q. Miao, S. Zhang, Y.H. Guan, H.Y. Ye, Z.Y. Zhang, Q.Y. Zhang, R.D. Xue, M.F. Zeng, C.T. Zuo, Y.M. Li
American Journal of Neuroradiology Jun 2011, 32 (6) 1034-1042; DOI: 10.3174/ajnr.A2449
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