Depression Clinical Trial
Official title:
Mechanism Study of tDCS on Human Electrophysiological Network Via SEEG
Transcranial direct current stimulation(tDCS) is a non-invasive Neuromodulation method.The weak direct current produced by tDCS can be transmitted through the skull and induce biphase, polarization-related changes in the cortex. Related clinical studies have found that tDCS has a corresponding therapeutic effect on neurological and psychiatric diseases such as stroke rehabilitation, depression, pain, epilepsy, etc. Stereotactic electroencephalography(sEEG) implants a set of deep electrodes into the brain that use stereotactic localization to detect electrical activity, locate epileptic foci and functional areas, and detect changes in electrical fields caused by tDCS in the deep brain. This direct measurement technology will provide validation and optimization for the electric field simulation method based on finite element analysis (FEM), also complement the latest indirect current density intensity measurement technology based on MRI phase measurement, providing support for the targeting and personalized treatment of tDCS technology. In order to achieve this goal and study the mechanism and function of tDCS better , this project aims to realize the clinical use of sEEG to measure the electric field information generated by tDCS in the human brain in vivo.
| Status | Recruiting |
| Enrollment | 4 |
| Est. completion date | December 31, 2020 |
| Est. primary completion date | November 30, 2020 |
| Accepts healthy volunteers | No |
| Gender | All |
| Age group | 18 Years to 70 Years |
| Eligibility | Inclusion Criteria: - SEEG is required for preoperative evaluation in patients with focal refractory epilepsy, consent and sign the informed consent for treatment. Exclusion Criteria: - (1) history of major depression or mental disorder and medication history causing symptoms of mental disorder, - (2) patients with severe cognitive impairment (MMSE score<17), - (3) craniocerebral surgery history, - (4) severe head skin disease (including but not limited to purpura, blisters, rash, eczema) or open head injury/laceration, - (5) existing known risk factors of tDCS: A. use of implanted electronic devices (such as pacemakers) or metal implants (such as stents), B. a history of injury to unfixed metal in any part of the body (including metal objects in the eye), C. pregnant woman;D. cancer patients, patients in critical condition or patients with important organ failure, E. severe allergy to the electrode patch, local skin injury or inflammation, and hyperalgesia in the stimulation area, F. scalp injury that may cause poor application of tDCS. |
| Country | Name | City | State |
|---|---|---|---|
| China | SAHZhejiangU | Hangzhou | Zhejiang |
| Lead Sponsor | Collaborator |
|---|---|
| Second Affiliated Hospital, School of Medicine, Zhejiang University | Qiushi Academy for Advanced Studies, Zhejiang University |
China,
| Type | Measure | Description | Time frame | Safety issue |
|---|---|---|---|---|
| Primary | Voltage difference | Voltage difference between stimulation electrodes. | intraoperative | |
| Primary | Stimulus current | Stimulus current between stimulation electrodes. | intraoperative | |
| Primary | sEEG voltage | Respectively, 2 to 4 sEEG electrodes with distance of more than 2 cm were selected along the sagittal plane direction and coronal plane direction, and the voltage of each channel on the electrode was recorded. | intraoperative |
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