An Early Phase 1 interventional study of UNEEG SubQ device, seizure forecasts, nasal diazepam and Preventative Medication (PM) in Focal Epilepsy, Generalized Seizure and Drug Refractory Epilepsy, sponsored by Mayo Clinic. Recruiting at 3 sites in United States. Open to participants aged 18 Years to 75 Years. Per ClinicalTrials.gov, last updated 2026-09-25.
Sponsored by Mayo Clinic · Early Phase 1, Interventional, and Device feasibility
Mayo Clinic is conducting a research study to test a new approach to managing seizures in people with epilepsy whose seizures have not been fully controlled with regular medications. The study uses a small sensor placed just under the skin (not inside the brain) that continuously records electrical brain activity. This information is used to train a personalized computer algorithm that learns your individual seizure patterns and forecasts when a seizure is more likely to occur. If you are eligible and choose to participate, you would receive advance warning of elevated seizure risk, allowing you to take a fast-acting medication before a seizure happens. This medication would be in addition to the regular medicines prescribed by your doctor. The goal of the study is to understand whether this kind of forecasting system is safe, comfortable to live with, and capable of helping people gain more control over their seizures with a minimum amount of additional medication.
Participation involves a minor surgical procedure to implant a small electrode under the skin above your ear that records your brain's electrical signals continuously over time. You would also wear a smart watch during the study. For the first six months, the system collects data to personalize your seizure forecast model and would not give you an alert. In the second six months, we would calculate your daily seizure risk and you would receive alerts on days when your risk is elevated. On these higher seizure risk days you would take a prescribed fast-acting nasal spray medication. The study is open to adults who continue to have 2 or more seizures per month in spite of having tried at least two antiseizure medications in the past, and whose seizures have shown involvement of the temporal lobe. All study-related procedures, devices, and study medication are provided at no cost to participants. Participants receive financial compensation for their time, and travel expenses to and from Mayo Clinic Rochester are reimbursed for anyone traveling more than 100 miles. If you are interested in learning more, please contact our research coordinator by email at Laivell.Jeffrey@mayo.edu.
For most people with epilepsy, seizures do not appear to happen on a predictable schedule, but recent research shows that seizure risk may actually rise and fall in patterns over time, similar to other body rhythms. Right now, most people with drug-resistant epilepsy (epilepsy that has not responded well to medications) take antiseizure medication every day, whether or not their seizure risk is high that day, which means they deal with side effects every day even though seizures happen only sometimes. This study tests using a small implanted sensor and a wearable device to predict when a person's seizure risk is elevated, and then giving a fast-acting medication in advance, before a seizure happens. The goal is to find out whether this approach is safe and workable in everyday life.
This study will enroll adults with drug-resistant epilepsy that involves the temporal lobe, at Mayo Clinic in Rochester, Minnesota, Jacksonville, Florida, and Phoenix, Arizona.
Each participant has a small device called the UNEEG SubQ placed just under the scalp, in a minor surgical procedure. This device does not go into the brain itself. It sits under the skin and continuously records the brain's electrical activity. Participants also wear an smart watch to track heart rate and movement, and they keep a daily seizure diary on a smartphone.
The study takes place over about 12 months for each participant, in three parts.
Part 1, the first three months: The device and watch collect data in the background. No warnings or predictions are shown to the participant during this time. This information is used to build a personalized computer model that learns each person's individual patterns of seizure risk. For four weeks during this period, participants take a scheduled dose of VALTOCO (a nasal spray form of the medication diazepam) once a week, which helps the research team see how the medication affects the recorded brain activity.
Part 2, the next three months: The personalized computer model starts making daily predictions about seizure risk, but these predictions are reviewed only by the research team and are not shown to the participant yet. This lets the team check how accurate the predictions are before relying on them. As in Part 1, participants take one scheduled weekly dose of VALTOCO during a four week period.
Part 3, the final six months: Starting at a mid-study visit, participants begin receiving the daily predictions on their smartphone. On days when the model predicts a higher chance of seizures, the participant (or a caregiver) receives an alert and is asked to use VALTOCO nasal spray at that time, before a seizure occurs, rather than waiting for one to happen. To help keep the medication use safe, participants cannot use VALTOCO more than 10 times in a month, and the system will not allow the medication to be used on two days in a row.
At the end of the study, the implanted device is removed in a simple outpatient procedure and all study equipment is returned.
The main goal is to find out whether this forecast-guided approach to using rescue medication is safe and practical to use in daily life.
As additional goals, the study will also look at whether participants' quality of life and the impact epilepsy has on their daily life improve during the study, using standard questionnaires, and whether the rate of seizures during the final six month part of the study is lower than each participant's own personal baseline rate measured earlier in the study.
This study is conducted with authorization from the U.S. Food and Drug Administration under Investigational New Drug application number 170383, which allows the research team to study VALTOCO for this new, investigational use. The study is supported by a grant from the National Institutes of Health (UG3NS123066).
Subjects enrolled in this study must have epilepsy involving the temporal lobe and will have undergone video-EEG monitoring within the past 3 years, and will have met the following criteria:
Focal epilepsy, including complex partial, and secondarily generalized seizures, including:
Exclusion Criteria:
All study subjects will be implanted with the UNEEG SubQ device and will receive forecasts of daily seizure risk.
Device: UNEEG SubQ device, seizure forecasts, nasal diazepam · Drug: Preventative Medication (PM)
Subjects will be implanted with the UNEEG SubQ device in the neurosurgical operating suite. Electrodes will be placed over the temporal lobe of the hemisphere established as the origin of seizures by previous EEG monitoring. Only one UNEEG device will be placed, and only the seizure onset hemisphere will be covered. Subjects will have individualized seizure forecast models created, and will take a supplemental antiseizure medicine during periods of elevated seizure risk.
Subjects will take nasal diazepam in response to pre-seizure alerts to evaluate the potential for this medication to prevent seizures.
Safety and Adverse Events
VALTOCO discontinuation rate due to TEAE below 10% of subjects
Time frame: 12 months
Safety- cardiorespiratory events
no observed drug-related serious cardiorespiratory events
Time frame: 12 months
Feasibility outcome
greater than 75% data collection adherence (18 hours/day) with the UNEEG and Apple Watch systems on average during the prospective forecasting portion of the study for over 90% of participants
Time frame: 12 months
Preseizure alert feasibility
greater than 80% of pre-seizure alerts resulting in VALTOCO administration within 90 minutes in over 90% of participants
Time frame: 12 months
Reduction in seizure rates during the prospective phase of the trial compared to baseline
For each subject, we will compare detected seizure rates during the Training and Validation phases (baseline) to rates during the prospective forecast-triggered VALTOCO phase, and report the per-subject change.
Time frame: 12 months
Quality of Life Inventory and seizure related impact scores
Change in quality of life in the prospective phase of the trial compared to baseline: Measures determined from the QUOLIE-31
Time frame: Baseline, 6 months, 12 months
Seizure related severity score
Change in seizure severity score in the prospective phase of the trial compared to baseline: Measures determined from the SERIAS (Foster, Conquest et al. 2025) neuropsychometric test
Time frame: Baseline, 6months, 12months
Plan to share: No
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