Multi-brain-region electrode optimization method for transcranial electrical stimulation
The invention discloses a multi-brain-region electrode optimization method for transcranial electrical stimulation, and the method comprises the steps: firstly constructing a head simulation model, solving an electric field transfer matrix of each electrode through a finite element, and then respect...
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Main Authors | , , , , , , |
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Format | Patent |
Language | Chinese English |
Published |
14.03.2023
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Subjects | |
Online Access | Get full text |
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Summary: | The invention discloses a multi-brain-region electrode optimization method for transcranial electrical stimulation, and the method comprises the steps: firstly constructing a head simulation model, solving an electric field transfer matrix of each electrode through a finite element, and then respectively selecting a target region needing to be optimized and one or more brain region targets needing to inhibit the electric field intensity. According to the method, the electric field of a target region is optimized, meanwhile, the electric field intensity of a specific brain region nearby the target region is restrained, the number of used electrodes, the current magnitude of a single electrode and the total electrode current are restrained, and finally the optimization effect is evaluated through electric field simulation and calculation of the electric field intensity of a stimulation brain region and the electric field intensity of a restraining brain region. According to the electrode optimization method pro |
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Bibliography: | Application Number: CN202211489080 |