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C Citrin

Publications and source records attributed to C Citrin.

5 recordsLinked to original sources

EEG and neuroimaging localization in partial epilepsy.

We have studied cortical localization provided by surface and sphenoidal electroencephalograms (EEGs) and that of computed tomography (CT), magnetic resonance imaging (MR) and single photon emission tomography (SPECT) in 58 patients with partial epilepsy. Each patient had EEG, MR and SPECT during a hospitalization period of 1-2 weeks. CT scans were obtained either during the same period or had been performed in the preceding year. EEG evaluation consisted of 3-5 days of continuous monitoring including video-telemetry and ambulatory recording as well as conventional EEGs with special electrode placements. Additionally 33 of 58 patients (55%) who were potential surgical candidates had sphenoidal recordings. All patients had an abnormal EEG which showed evidence of epileptic hyperexcitability. EEG abnormality was localized in 43 patients (74%). Neuroimaging studies were focally abnormal in 38 patients (66%); 12 CT (21%), 29 MR (50%) and 24 SPECT (41%). Thirty four of 43 patients with localized EEG had at least 1 focally abnormal neuroimaging study (79%), whereas 4 of 15 (27%) patients with non-localized EEG did so. Twenty-eight of 29 patients with focal MR (97%), 11 of 12 patients with focal CT (92%) and 20 of 24 patients with focal SPECT (83%) had a concordant focal EEG. EEG and neuroimaging localization agreed in all 15 patients in whom both MR and SPECT disclosed a concordant focal abnormality. This study demonstrates a significant (P less than 0.005) correlation between surface/sphenoid EEG and neuroimaging localization in partial epilepsy.

Adolescent↗

Evaluation of MR in spinal dysraphism with lipoma: comparison with metrizamide computed tomography.

Magnetic resonance (MR) imaging and metrizamide computed tomography (CT) were performed on three patients with spinal dysraphism with lipoma. Sagittal MR images were superior to metrizamide CT reformatted sagittal images in demonstrating anatomic relationships of the spinal cord, filum terminale and lipoma. In the axial plane, CT proved superior to MR. In all cases, the T1 weighted images with exceptional spatial resolution and excellent fat discrimination were more helpful than T2 weighted images. Although both MR and CT are useful in the initial evaluation of these disorders, subsequent evaluation employing only MR is probably adequate. Promising developments in surface coil imaging may eventually replace CT.

Adolescent↗

Magnetic resonance imaging in partial complex epilepsy.

The yield of magnetic resonance (MR) imaging was investigated in 30 patients with partial complex epilepsy, and the results were compared with those of computed tomography (CT). Magnetic resonance imaging and CT disclosed focal cerebral abnormalities in 13 (43%) and eight (26%) patients, respectively. Two additional focal temporal lesions were identified by double-dose CT scanning, increasing the yield of CT to 33%. Magnetic resonance images were abnormal in all patients with focally abnormal CT scans, and in four patients (50%) they defined the extent of the temporolimbic lesions better than did the CT scans. Two of these patients had gliomas. In addition, MR images were focally abnormal in 85% of the patients in whom scalp electroencephalograms showed focal ictal discharges. These data indicate that MR imaging is more informative than CT in partial complex epilepsy.

Adolescent↗