Electrophysiologic Dynamics of Depression and Antidepressant Response in Epilepsy
Electrophysiologic Dynamics of Depression and Antidepressant Response in Epilepsy
This study aims to identify electrophysiologic biomarkers associated with antidepressant response to ketamine in adults with epilepsy undergoing clinically indicated stereo-electroencephalography (sEEG) monitoring who have at least mild depressive symptoms.
Participants will receive a single subanesthetic intravenous ketamine infusion (0.5 mg/kg over 40 minutes) during their Epilepsy Monitoring Unit admission. Intracranial neural recordings and behavioral assessments will be collected before and approximately 24 hours after infusion to examine changes in neural circuits associated with rumination and anhedonia.
Depressive symptoms are common among individuals with epilepsy and are associated with reduced quality of life and poorer clinical outcomes. Although neuromodulation therapies have shown promise for treatment-resistant depression, the development of objective biomarkers to guide treatment remains a major challenge. Patients undergoing clinically indicated stereo-electroencephalography (sEEG) monitoring for epilepsy provide a unique opportunity to study human brain circuits with high spatial and temporal resolution.
This prospective, single-site, open-label, within-subject mechanistic clinical trial will enroll adults with epilepsy undergoing inpatient sEEG monitoring who have at least mild depressive symptoms at baseline. Participants will receive a single intravenous ketamine infusion (0.5 mg/kg over 40 minutes) while hospitalized in the Epilepsy Monitoring Unit. Research assessments will be completed before infusion and approximately 24 hours afterward.
The study examines candidate intracranial electrophysiologic measures of prefrontal-posterior midline connectivity and local cortical excitability, drawn from regions implicated in mood-relevant circuits. Behavioral and symptom measures include a task-based measure of thought content and a validated self-report measure of hedonic capacity. Investigators will test whether ketamine-induced neural changes correspond to changes in these behavioral and symptom measures. Additional exploratory analyses will examine whether acute effects during infusion predict delayed responses observed 24 hours later.
All research procedures occur during routine clinical epilepsy monitoring, and no research-driven intracranial stimulation, surgery, imaging, or biospecimen collection is performed.
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Exclusion Criteria:
carl.hacker@emory.edu404-778-5770
carl.hacker@emory.edu404-778-5770