Applying tDCS over the dominant Hemisphere to observe event-related Desynchronization
This thesis is submitted in partial fulfillment of the requirements for the degree of Bachelor of Science in Computer Science, 2019.
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| Dil: | English |
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Brac University
2020
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| Online Erişim: | http://hdl.handle.net/10361/13834 |
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10361-138342022-01-26T10:13:22Z Applying tDCS over the dominant Hemisphere to observe event-related Desynchronization Khan, Akif Ahmed Bastob, Abu Wakkas Ahmed, Bushra Reza, Abdullah Al Parvez, Mohammad Zavid Department of Computer Science and Engineering, Brac University EEG tDCS Neurofeedback Cognitive Load Index Time-Frequency distribution features Band extraction Brain stimulation Brain--Diseases--Diagnosis Electroencephalography This thesis is submitted in partial fulfillment of the requirements for the degree of Bachelor of Science in Computer Science, 2019. Cataloged from PDF version of thesis. Includes bibliographical references (pages 33-37). Although keeping us alive is arguably the most important function of the human brain, the human brain is responsible for a host of functions|including processing of environmental stimuli. Electroencephalography (EEG) is a psychophysiological technique used to measure electro-cortical activity in the brain. It is a noninvasive technique that provides a direct measure of the brain's electrical activity through placement of electrodes on the scalp which is quite precise and instantaneous. A set of probes or electrodes are placed on the scalp which receive EEG signals or brain waves. Using EEG signals we may analyze the mechanisms behind language, cognition, sensory functions, and brain oscillations. After gathering the eeg signals, it can be used as a neurofeedback - a process by which eeg signals are again applied to the brain with the same electrodes. By applying neurofeedback of some speci c pattern or feature we can enhance those features and reduce the other features. Transcarnial Direct Current Stimulation (tDCs) is also another non-invasive method of neuromodulation which is used to constatly apply a small amount of electric current on the head with the use of electrodes. With adequate amount of training with neurofeedback, tdcs individuals may learn to control their own brain waves and thus changing their state of self at will. We have initiated a system where we use EEG-based neurofeedback and tDCs on the left hemisphere of the brain and observe Event-related desynchronization occuring on the right hemisphere. After applying ve-fold cross validation method of classi cation we acquired an accuracy of 86.67% for anodal stimulation and 88.33% for cathodal stimulation. Akif Ahmed Khan Abu Wakkas Bastob Bushra Ahmed Abdullah Al Reza B. Computer Science 2020-03-08T05:22:49Z 2020-03-08T05:22:49Z 2019 2019-12 Thesis ID 15301100 ID 15301071 ID 19341010 ID 15101060 http://hdl.handle.net/10361/13834 en Brac University theses are protected by copyright. They may be viewed from this source for any purpose, but reproduction or distribution in any format is prohibited without written permission. 37 pages application/pdf Brac University |
| institution |
Brac University |
| collection |
Institutional Repository |
| language |
English |
| topic |
EEG tDCS Neurofeedback Cognitive Load Index Time-Frequency distribution features Band extraction Brain stimulation Brain--Diseases--Diagnosis Electroencephalography |
| spellingShingle |
EEG tDCS Neurofeedback Cognitive Load Index Time-Frequency distribution features Band extraction Brain stimulation Brain--Diseases--Diagnosis Electroencephalography Khan, Akif Ahmed Bastob, Abu Wakkas Ahmed, Bushra Reza, Abdullah Al Applying tDCS over the dominant Hemisphere to observe event-related Desynchronization |
| description |
This thesis is submitted in partial fulfillment of the requirements for the degree of Bachelor of Science in Computer Science, 2019. |
| author2 |
Parvez, Mohammad Zavid |
| author_facet |
Parvez, Mohammad Zavid Khan, Akif Ahmed Bastob, Abu Wakkas Ahmed, Bushra Reza, Abdullah Al |
| format |
Thesis |
| author |
Khan, Akif Ahmed Bastob, Abu Wakkas Ahmed, Bushra Reza, Abdullah Al |
| author_sort |
Khan, Akif Ahmed |
| title |
Applying tDCS over the dominant Hemisphere to observe event-related Desynchronization |
| title_short |
Applying tDCS over the dominant Hemisphere to observe event-related Desynchronization |
| title_full |
Applying tDCS over the dominant Hemisphere to observe event-related Desynchronization |
| title_fullStr |
Applying tDCS over the dominant Hemisphere to observe event-related Desynchronization |
| title_full_unstemmed |
Applying tDCS over the dominant Hemisphere to observe event-related Desynchronization |
| title_sort |
applying tdcs over the dominant hemisphere to observe event-related desynchronization |
| publisher |
Brac University |
| publishDate |
2020 |
| url |
http://hdl.handle.net/10361/13834 |
| work_keys_str_mv |
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| _version_ |
1814308226507735040 |