Development of a Multimodal Transcranial Electrical Stimulation System with Integrated Four-Channel EEG Recordings
In order to improve the effect of transcranial electrical stimulation treatment and realize personalized treatment for patients with varying severity levels, this paper designed an integrated four-channel EEG recording multimodal transcranial electrical stimulation system. This system can conduct re...
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| Format: | Article |
| Language: | zho |
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Editorial Office of Chinese Journal of Medical Instrumentation
2025-05-01
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| Series: | Zhongguo yiliao qixie zazhi |
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| Online Access: | https://zgylqxzz.xml-journal.net/article/doi/10.12455/j.issn.1671-7104.240419 |
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| author | Yan HANG Chaoyang WANG Qi YIN Yanan LIU Lin HUANG Jilun YE Xu ZHANG |
| author_facet | Yan HANG Chaoyang WANG Qi YIN Yanan LIU Lin HUANG Jilun YE Xu ZHANG |
| author_sort | Yan HANG |
| collection | DOAJ |
| description | In order to improve the effect of transcranial electrical stimulation treatment and realize personalized treatment for patients with varying severity levels, this paper designed an integrated four-channel EEG recording multimodal transcranial electrical stimulation system. This system can conduct real-time monitoring on EEG and related characteristic analysis before stimulation, in stimulation, and after stimulation. This enables physicians and researchers to resolve real-time brain states, evaluate transcranial electrical stimulation effect, and then artificially adjust the stimulation parameters. After relevant testing and verification, the system can select four stimulation modes: TACS, TDCS, TPCS and TRNS, which can output the constant stimulation current of 0.03 mA accuracy in the range of ±2 mA and the stimulation frequency of low frequency of 0~4 kHz (precision of 0.01 Hz) and high frequency 50~100 kHz, which can obtain more accurate EEG signals under stimulation interference, demonstrating a good market application prospect. |
| format | Article |
| id | doaj-art-73cb8799641548feaf6b28f9db2a3e93 |
| institution | Kabale University |
| issn | 1671-7104 |
| language | zho |
| publishDate | 2025-05-01 |
| publisher | Editorial Office of Chinese Journal of Medical Instrumentation |
| record_format | Article |
| series | Zhongguo yiliao qixie zazhi |
| spelling | doaj-art-73cb8799641548feaf6b28f9db2a3e932025-08-20T03:47:19ZzhoEditorial Office of Chinese Journal of Medical InstrumentationZhongguo yiliao qixie zazhi1671-71042025-05-0149331332210.12455/j.issn.1671-7104.2404192024-0419Development of a Multimodal Transcranial Electrical Stimulation System with Integrated Four-Channel EEG RecordingsYan HANG0Chaoyang WANG1Qi YIN2Yanan LIU3Lin HUANG4Jilun YE5Xu ZHANG6School of Biomedical Engineering, Health Center, Shenzhen University, Shenzhen, 518055School of Biomedical Engineering, Health Center, Shenzhen University, Shenzhen, 518055School of Biomedical Engineering, Health Center, Shenzhen University, Shenzhen, 518055School of Biomedical Engineering, Health Center, Shenzhen University, Shenzhen, 518055School of Biomedical Engineering, Health Center, Shenzhen University, Shenzhen, 518055School of Biomedical Engineering, Health Center, Shenzhen University, Shenzhen, 518055School of Biomedical Engineering, Health Center, Shenzhen University, Shenzhen, 518055In order to improve the effect of transcranial electrical stimulation treatment and realize personalized treatment for patients with varying severity levels, this paper designed an integrated four-channel EEG recording multimodal transcranial electrical stimulation system. This system can conduct real-time monitoring on EEG and related characteristic analysis before stimulation, in stimulation, and after stimulation. This enables physicians and researchers to resolve real-time brain states, evaluate transcranial electrical stimulation effect, and then artificially adjust the stimulation parameters. After relevant testing and verification, the system can select four stimulation modes: TACS, TDCS, TPCS and TRNS, which can output the constant stimulation current of 0.03 mA accuracy in the range of ±2 mA and the stimulation frequency of low frequency of 0~4 kHz (precision of 0.01 Hz) and high frequency 50~100 kHz, which can obtain more accurate EEG signals under stimulation interference, demonstrating a good market application prospect.https://zgylqxzz.xml-journal.net/article/doi/10.12455/j.issn.1671-7104.240419multi-channel eeg acquisitiontranscranial electrical stimulation (tes)multi-modehigh-accuracyneurodiagnosis treatment |
| spellingShingle | Yan HANG Chaoyang WANG Qi YIN Yanan LIU Lin HUANG Jilun YE Xu ZHANG Development of a Multimodal Transcranial Electrical Stimulation System with Integrated Four-Channel EEG Recordings Zhongguo yiliao qixie zazhi multi-channel eeg acquisition transcranial electrical stimulation (tes) multi-mode high-accuracy neurodiagnosis treatment |
| title | Development of a Multimodal Transcranial Electrical Stimulation System with Integrated Four-Channel EEG Recordings |
| title_full | Development of a Multimodal Transcranial Electrical Stimulation System with Integrated Four-Channel EEG Recordings |
| title_fullStr | Development of a Multimodal Transcranial Electrical Stimulation System with Integrated Four-Channel EEG Recordings |
| title_full_unstemmed | Development of a Multimodal Transcranial Electrical Stimulation System with Integrated Four-Channel EEG Recordings |
| title_short | Development of a Multimodal Transcranial Electrical Stimulation System with Integrated Four-Channel EEG Recordings |
| title_sort | development of a multimodal transcranial electrical stimulation system with integrated four channel eeg recordings |
| topic | multi-channel eeg acquisition transcranial electrical stimulation (tes) multi-mode high-accuracy neurodiagnosis treatment |
| url | https://zgylqxzz.xml-journal.net/article/doi/10.12455/j.issn.1671-7104.240419 |
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