Quantitative epileptiform burden and electroencephalography background features predict post-traumatic epilepsy.

Chen, Yilun; Li, Songlu; Ge, Wendong; Jing, Jin; Chen, Hsin Yi; Doherty, Daniel; Herman, Alison; Kaleem, Safa et al. · J Neurol Neurosurg Psychiatry · 2023

case_control · Level III

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Abstract

Post-traumatic epilepsy (PTE) is a severe complication of traumatic brain injury (TBI). Electroencephalography aids early post-traumatic seizure diagnosis, but its optimal utility for PTE prediction remains unknown. We aim to evaluate the contribution of quantitative electroencephalograms to predict first-year PTE (PTE<sub>1</sub>). We performed a multicentre, retrospective case-control study of patients with TBI. 63 PTE<sub>1</sub> patients were matched with 63 non-PTE<sub>1</sub> patients by admission Glasgow Coma Scale score, age and sex. We evaluated the association of quantitative electroencephalography features with PTE<sub>1</sub> using logistic regressions and examined their predictive value relative to TBI mechanism and CT abnormalities. In the matched cohort (n=126), greater epileptiform burden, suppression burden and beta variability were associated with 4.6 times higher PTE<sub>1</sub> risk based on multivariable logistic regression analysis (area under the receiver operating characteristic curve, AUC (95% CI) 0.69 (0.60 to 0.78)). Among 116 (92%) patients with available CT reports, adding quantitative electroencephalography features to a combined mechanism and CT model improved performance (AUC (95% CI), 0.71 (0.61 to 0.80) vs 0.61 (0.51 to 0.72)). Epileptiform and spectral characteristics enhance covariates identified on TBI admission and CT abnormalities in PTE<sub>1</sub> prediction. Future trials should incorporate quantitative electroencephalography features to validate this enhancement of PTE risk stratification models.

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