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Detection of structural abnormalities of cortical and subcortical gray matter in patients with MRI-negative refractory epilepsy using neurite orientation dispersion and density imaging
Institution:1. Instituto de Neurobiología, Universidad Nacional Autónoma de México, 3001, Boulevard Juriquilla, Querétaro, Querétaro 76230, Mexico;2. Centro Estatal de Salud Mental, Servicios de Salud del Estado de Querétaro, 105, Av. 5 de Febrero Sur, Virreyes, Querétaro 76170, Mexico;3. Clínica de Epilepsia, Servicio de Neurología, Hospital Central “Ignacio Morones Prieto”, 2395, Av. Venustiano Carranza, San Luis Potosí 78290, Mexico;4. Facultad de Medicina, Universidad Autónoma de San Luis Potosí, 2405, Avenida Venustiano Carranza, Los Filtros, San Luis Potosí 78210, Mexico;5. Clínica de Epilepsia, Hospital General de México ¨Dr. Eduardo Liceaga¨, 148, Doctor Balmis, Doctores, Ciudad de México 06720, Mexico;6. Unidad de Neurocirugía Funcional, Estereotaxia y Radiocirugía, Hospital General de México ¨Dr. Eduardo Liceaga¨, 148, Doctor Balmis, Doctores, Ciudad de México 06720, Mexico;2. Department of Radiology, Juntendo University, Bunkyo-ku, Tokyo, Japan;3. Team for Neuroimaging Research, Tokyo Metropolitan Institute of Gerontology, Itabashi-ku, Tokyo, Japan
Abstract:PurposeNODDI (Neurite Orientation Dispersion and Density Imaging) and DTI (Diffusion tensor imaging) may be useful in identifying abnormal regions in patients with MRI-negative refractory epilepsy. The aim of this study was to determine whether NODDI and DTI maps including neurite density (ND), orientation dispersion index (ODI), mean diffusivity (MD) and fractional anisotropy (FA) can detect structural abnormalities in cortical and subcortical gray matter (GM) in these patients. The correlation between these parameters and clinical characteristics of the disease was also investigated.MethodsNODDI and DTI maps of 17 patients were obtained and checked visually. Region of interest (ROI) was drawn on suspected areas and contralateral regions in cortex. Contrast-to-noise ratio (CNR) was determined for each region. Furthermore volumetric data and mean values of ND, ODI, FA and MD of subcortical GM structures were calculated in both of the patients and controls. Finally, the correlations of these parameters in the subcortical with age of onset and duration of epilepsy were investigated.ResultsCortical abnormalities on ODI images were observed in eight patients qualitatively. CNR of ODI was significantly greater than FA and MD. The subcortical changes including decrease of FA and ND and increase of ODI in left nucleus accumbens and increase of the volume in right amygdala were detected in the patients.ConclusionsThe results revealed that NODDI can improve detection of microstructural changes in cortical and subcortical GM in patients with MRI negative epilepsy.
Keywords:NODDI  DTI  MRI negative refractory epilepsy  Cortical and subcortical gray matter
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