脑电成像评估tDCS治疗后认知改善

Mudassar Ayub, Kaleem Ullah, Muhammad Jawad Khan, Hassan Farooq, A. Khan
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引用次数: 0

摘要

大脑是人体最重要的器官。脑损伤的影响是广泛的,包括认知、疲劳、睡眠问题、头痛、头晕、自我意识受损、临床抑郁、注意力和注意力问题、癫痫、决策困难等等。本文的目的是研究无创神经调节技术经颅直流电刺激(tDCS)在利用脑电图(EEG)记录的脑小电压变化估计脑认知状态改善方面的有效性。将事件相关去同步(ERDs)方法应用于10名被试刺激前后的运动想象期(MIP)和休息期(RP)脑电数据。使用公共空间模式(CSP)进行特征提取,并使用线性判别分析(LDA)对这些特征进行机器学习模型分类。结果表明,在所有通道中,6个受试者在阳极刺激后与刺激前相比,与事件相关的对侧erd振荡活动减少。进一步将LDA应用于CSP,证明刺激后运动意象期(MIP)和休息期(RP)的分类准确率高于刺激前运动意象期(MIP)和休息期(RP)。
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Cognitive Improvement Estimation using EEG Imaging after tDCS Therapy
Brain is the most important organ in the human body. The effects of brain impairment are wide ranging and include cognition, fatigue, sleep issues, headaches, dizziness, impaired self-awareness, clinical depression, attention and concentration problems, epilepsy, struggle in making decisions and many more. The objective of this paper is to the efficacy of noninvasive neuro modulatory technique Transcranial direct current stimulation (tDCS) in the estimation of brain cognitive state improvement using changes in small electrical brain voltages recorded by Electroencephalogram (EEG). Event related De synchronization (ERDs) is applied to the Motor Imagery Period (MIP) and Rest Period (RP) of pre stimulation and post stimulation EEG data of ten subjects. Common Spatial Pattern (CSP) is used for feature extraction and Linear Discrimination Analysis (LDA) a machine learning model is applied on these features for classification. The results suggest a decrease of contralateral ERDs oscillatory activity related to an event as per the hypothesis in anodal post stimulation than pre stimulation across all channels for six subjects. Further LDA applied on CSP proved that the classification accuracy between Motor imagery period (MIP) and the Rest period (RP) after the stimulation therapy is higher than the Pre stimulation Motor Imagery period (MIP) and Rest period (RP).
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