Finding studies
Finding studies
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Lead
University of Chicago
The purpose of this pilot study is to investigate hippocampal network dysfunction associated with mesial temporal lobe epilepsy (MTLE) and to examine whether network-targeted transcranial magnetic stimulation (TMS) can affect hippocampal connectivity, cognitive performance, and epileptic activity observed in adult subjects with MTLE. Subjects will be recruited through the University of Chicago Medicine Comprehensive Epilepsy Center and other local epilepsy centers. Subjects will complete up to 8 experimental sessions (1 baseline experiment/assessment, up to 5 TMS sessions, up to 2 post-treatment experiments/assessments), spread over a two-month period. During the baseline and post-treatment sessions, subjects will undergo electroencephalography (EEG) and functional magnetic resonance imaging (fMRI). EEG will be utilized to examine interictal epileptiform discharge (IED) frequency at rest as well as task-related neural activity recorded from non-invasive scalp EEG electrodes at locations conforming to the International 10-20 positioning system with additional anterior temporal electrodes. MRI scanning procedures will take approximately 45 minutes and include native anatomical (MP-RAGE) as well as functional (EPI) sequences to assess hippocampal network function and task-related activity. During both, the EEG and MRI procedures, subjects will perform a memory task. One month following the baseline session, subjects will return to the lab for up to 5 TMS intervention sessions. During the one-month period preceding TMS, subjects will complete a daily seizure diary to track baseline seizure frequency prior to the intervention. TMS parameters are determined based on the allowable dosage of TMS delivery, calculated based on published standards for experimental TMS protocols, and in accordance with standard operating procedures for TMS. Subjects will receive brief (\~2 to 40s) trains of repetitive TMS with long (\>10s) inter-train intervals. Each train of repetitive TMS will include between 20 and 40 individual pulses delivered at frequencies hypothesized to have different effects on memory (e.g., in the theta range). Individual pulse intensity will be calibrated using the motor-threshold method. Post-treatment sessions will once again comprise EEG and fMRI procedures as described above. Following the post-treatment sessions, subjects will continue to complete a daily seizure diary for the next 30 days to track any changes to seizures following treatment. Pre- and post-stimulation data will be compared to assess effects of the intervention on memory performance, hippocampal network function, and epileptic activity.
Age
18–any
Sex
ALL
Healthy volunteers
Not accepted
