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Semi-quantitative Assessment Using [18F]FDG Tracer in Patients with Severe Brain Injury
Published on: November 9, 2018
Exploring brain metabolism and cognitive impairment in childhood-onset systemic lupus using fluorodeoxyglucose
Flávia Patrícia Sena Teixeira Santos1, Gilda Aparecida Ferreira2, Alexei Manso Machado3
1Division of Rheumatology, Hospital das Clínicas da Universidade Federal de Minas Gerais (UFMG), Belo Horizonte, Brazil.
Objectives:
As biochemical and functional abnormalities often precede structural changes in disease, fluorine-18 fluorodeoxyglucose positron emission tomography (PET) may allow early detection of cerebral involvement in neuropsychiatric lupus. This study evaluated the correlation between cerebral glucose metabolism, assessed by fluorodeoxyglucose PET, and cognitive impairment in young adults with childhood-onset systemic lupus.
Methods:
Twenty-one patients with childhood-onset systemic lupus underwent clinical and neuropsychological assessment, followed by fluorodeoxyglucose PET brain imaging. Scans were compared with those of 22 healthy female controls. Images were non-rigidly registered to a standardized template, allowing voxel-wise analysis using adjusted t-tests. Associations between metabolism and cognitive performance were analysed using Pearson and Spearman correlation coefficients and Student's t-tests.
Results:
Hypometabolism was observed in the cerebellum, parietal, occipital, limbic, and frontal lobes, while hypermetabolism was observed in the sublobar region, temporal lobe, and areas of the limbic and frontal lobes. Memory deficits correlated with hypermetabolism in the left hemisphere, Brodmann area 13; attention impairments with hypermetabolism in area 20 and hypometabolism in areas 7 and 18; and executive dysfunction with hypometabolism, particularly in the left hemisphere.
Conclusions:
Fluorodeoxyglucose PET may assist in identifying early functional brain abnormalities related to cognitive dysfunction in childhood-onset systemic lupus.
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