Clinical trials
Electrodes, Implanted clinical trials
Below are recruiting electrodes, implanted clinical trials, each written for real people, not researchers. We’re tracking 27 recruiting studies, each written for real people, not researchers, below.
Recruiting studies
- NCT07690995Recruiting
Testing a new software to guide cochlear implant surgery
This trial tests a new software called OTOGUIDE that helps doctors monitor the insertion of a cochlear implant electrode during surgery. It may help make the procedure more precise and safer for patients.
Innsbruck, TyrolAges 18 years+ - NCT06842940Recruiting
Predicting best lead placement during pacemaker or ICD surgery
This study tests whether a measurement called 'slew rate' can help doctors find the best spot to attach the leads (wires) from a pacemaker or ICD to your heart. It may lead to more stable and effective placement during your procedure.
FidenzaAges 18–100 - NCT07190092Recruiting
Brain stimulation for post-stroke muscle stiffness and movement
This study tests a new type of brain stimulation (deep anterior cerebellar stimulation) to see if it can reduce muscle stiffness and improve movement in people who had a stroke 9–36 months ago and still have tightness or weakness that hasn't gotten better with therapy.
BydgoszczAges 18 years+ - NCT04653012Recruiting
Testing brain-activity recordings in people with drug-resistant epilepsy
This study looks at brain activity using electrodes placed inside the brain in people with focal, drug-resistant epilepsy before surgery. It may help doctors better map where seizures start and improve planning for treatment.
ParisAges 18 years+ - NCT05335187Recruiting
Electrode test during epilepsy surgery planning
This study tests a new “hybrid” type of electrodes placed inside the brain to better map where seizures start in people with difficult (drug-resistant) focal epilepsy. It may help doctors plan safer and more effective surgery, though it involves an invasive brain monitoring procedure.
Bern, Canton of BernAges 18 years+ - NCT04708717Recruiting
Testing brain training for people with cochlear implants
This study focuses on people who already use cochlear implants and tests a way to improve how the brain processes sound timing. If you’re an adult cochlear implant user, you may be able to join and help researchers understand what works best for hearing.
Los Angeles, CaliforniaAges 18 years+ - NCT05505513Recruiting
Test micro-electrode nerve implants for hand signal feedback
This study looks at whether tiny implanted sensors in a nerve can record brain/nerve signals and use them to provide feedback for people with a transradial arm amputation. If it works, it could help improve control or awareness with a prosthetic hand or related devices.
Salt Lake City, UtahAges 18–65 - NCT03260400Recruiting
Muscle and nerve implants to improve bionic arm control
This study tests a new approach that uses small nerve and muscle grafts along with temporary electrodes to help people with an above-wrist arm amputation get better control of a bionic arm. If it works, it could make prosthetics feel more natural and easier to use.
Ann Arbor, MichiganAges 22–75 - NCT07518927Enrolling by invitation
Brain Mapping Study Using Ultrasound and Implanted Electrodes
This research study uses focused ultrasound waves combined with brain electrodes (already implanted for your epilepsy or psychiatric treatment) to map how your brain responds. The goal is to better understand brain function and potentially improve future treatments.
Philadelphia, PennsylvaniaAges 21–75 - NCT04097184Recruiting
tDCS brain stimulation for motor conversion symptoms
This study tests whether a noninvasive brain stimulation method (tDCS placed on the side front brain area) can improve symptoms in people with motor conversion disorder. It aims to see if symptoms improve over a 6-month follow-up period.
Nîmes, GardAges 18–65 - NCT06855901Recruiting
Home EEG monitoring for rare epilepsy
This study tests using a small, home-based EEG device to monitor brain activity over several weeks in people with hard-to-control seizures, rare epilepsies, or developmental and epileptic encephalopathies. The goal is to see if this method can better track seizures and improve care.
Roma, ItalyAges 12 years+ - NCT07228286RecruitingEarly Phase 1
Using brain stimulation to help restore consciousness
This trial tests whether electrical stimulation of a deep brain area can improve awareness in people who have been in a coma-like state for at least 3 months after a brain injury. It aims to help those who have limited or no ability to communicate or use objects.
Boston, MassachusettsAges 18–55 - NCT00859794Enrolling by invitation
Study brain and movement functions in people with difficult epilepsy
This study looks at how the brain and body coordination work in people with epilepsy whose seizures do not fully respond to seizure medicines. Some participants may be people who are being evaluated for a possible epilepsy surgery because tests suggest they could benefit.
Great Neck, New YorkAges 5 years+ - NCT05327387Recruiting
Brain stimulation study using implanted electrodes
This study tests a model-based way of using electrical brain stimulation in people who are having surgery for drug-resistant epilepsy or brain tumors. It uses implanted electrodes to measure brain activity and may help improve how stimulation is planned during surgical care.
Los Angeles, CaliforniaAges 18 years+ - NCT03136302Recruiting
Tracking brain signals during deep brain stimulation
This study compares two ways of measuring brain activity—MRI-based brain mapping and electrical brain testing—during deep brain stimulation. It may help doctors better target stimulation to improve symptoms like movement problems or long-lasting pain.
Halifax, Nova ScotiaAges Any age - NCT06275282Recruiting
Nerve surgery for better leg prosthetic control
This trial tests a new nerve surgery technique to help people with above-knee leg amputations have better control of their prosthetic leg. The goal is to improve how well the prosthesis responds to your movements.
Ann Arbor, MichiganAges 18–75 - NCT05867173Recruiting
Testing how cochlear implant wiring affects hearing perception
This study looks at how the connection between cochlear implant electrodes and nerve signals changes what you hear. It may help scientists improve how cochlear implants “map” sounds to your brain.
Boston, MassachusettsAges 3 months+ - NCT06725836Recruiting
Spinal cord stimulation study for spinal cord injury
This study tests how spinal cord stimulation affects brain activity in people with spinal cord injuries. It aims to understand the physiological effects using EEG (a brainwave test).
Vladivostok, Primorskiy (Maritime) KrayAges Any age - NCT06611748Recruiting
Hand function restoration after spinal cord injury
This trial tests a device to help people with cervical spinal cord injury improve hand function. It's for those with certain levels of paralysis and some residual arm strength.
Cleveland, OhioAges 18 years+ - NCT05810220Recruiting
Study how cochlear and auditory brain implants process sound
This study looks at how well sound signals are processed in people who use cochlear implants or auditory brainstem implants. Researchers may learn more about hearing and how the devices work, using lab-based listening tasks and brain/signal measurements.
New York, New YorkAges 2–90 - NCT06951594Recruiting
Robotic vs. manual cochlear implant electrode insertion
This trial compares a robotic-assisted method to the standard manual method for inserting the electrode array during cochlear implant surgery. The goal is to see which approach leads to better hearing outcomes.
Iowa City, IowaAges 18–80 - NCT05101161Recruiting
Neurofeedback delivered through implanted brain stimulation
This study tests a brain “feedback” approach using electrodes already placed as part of standard medical care. It aims to see whether this method is safe and helpful for people undergoing deep brain stimulation after surgery.
Zurich, Canton of ZurichAges 18 years+ - NCT05203302Recruiting
Testing new computer coding ideas for cochlear implant users
This study is developing and testing new “coding strategies” for children who have cochlear implants and for people with normal hearing. It may help improve how hearing input is processed or used, and could lead to better support for cochlear implant users.
New York, New YorkAges 6–80 - NCT06936449Recruiting
Long-term follow-up of a cochlear implant that releases medicine
This study is checking how well a cochlear implant that slowly releases a medicine (dexamethasone) to reduce swelling works over a long time. It is for people who already took part in the main study for this implant.
Englewood, ColoradoAges 18 years+
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Common questions
- Are there clinical trials for electrodes, implanted?
- Yes. Clin2 currently lists 27 recruiting electrodes, implanted studies from the U.S. registry, each rewritten for real people, not researchers, so you can see what it’s testing and who it’s for.
- How do I know if I qualify for a electrodes, implanted trial?
- Each study lists its eligibility criteria — rules about age, diagnosis, and prior treatments. On every Clin2 trial page we explain these in words written for real people and offer a short, optional pre-screen for a fit read. The study team makes the final decision.
- Does it cost anything to join a electrodes, implanted trial?
- Using Clin2 is always free. Many trials cover the cost of the study treatment and related visits; some reimburse travel. The study team explains exactly what’s covered before you decide.
Related conditions
Clin2 helps you find and understand clinical trials and does not provide medical advice. Study data comes from ClinicalTrials.gov. Talk with your doctor about whether a specific trial is right for you.