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Analysing Vibrotactually Stimulated EEG Signals to Comprehend Object Shapes

机译:分析振动刺激的脑电图信号来理解对象形状

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Tactile feedback has the capability of reducing the workload on the visual channel, during visual feedback in brain-computer interfaces (BCIs). It is requisite to analyse the brain signals corresponding to the tactile stimulations. This work is aimed at analysing the brain signals while the users are vibrotactually stimulated. The brain signals are acquired non-invasively by electroencephalography (EEG), while brushless coin-type vibration motors are actuated in particular patterns to convey the object shape information on subjects' skin surface in form of vibrations. The acquired EEG signals are pre-processed to eliminate the effect of various types of noises and to extract the EEG signals corresponding to relevant frequency bands. Adaptive autoregressive (AAR) parameters are extracted from the pre-processed EEG signals and are finally classified by Naive Bayesian $(NB)$ approach, in order to recognize the vibratotactually stimulated object shapes from brain signals. In addition to the classifier output, subjects' verbal responses about the object shape they perceived are also noted for validation. Three successive sessions of shape recognition from vibrotactile pattern show an improvement in EEG classification accuracy from 63.75% to 74.37%, and also depicted learning of the stimulus from subjects' psychological response which is observed to increase from 75% to 95%. This observation substantiates the learning of vibrotactile stimulation in user over the sessions which in turn increases the system efficacy.
机译:触觉反馈具有减少视觉上的信道的工作量,在脑计算机接口的视觉反馈(景气)中的能力。这是必要的分析相对应的触觉刺激的大脑信号。这项工作的目的是当用户vibrotactually刺激分析大脑信号。大脑信号获取非侵入通过脑电图(EEG),而无刷硬币式振动电机以特定的图案致动以传达关于受试者的皮肤表面上的物体形状信息在振动的形式。所获取的EEG信号被预处理以消除各种类型的噪声的影响,并提取对应于相关的频带中的EEG信号。自适应自回归(AAR)参数从处理前的EEG信号提取并通过朴素贝叶斯$(NB)$方法中,为了从大脑信号识别vibratotactually刺激对象的形状最终分类。除了分类器输出,受试者的关于他们所感知的对象形状口头响应还注意到以进行验证。从振动触觉图案形状识别的三个连续的会话显示在EEG分类精度的提高,从63.75%至74.37%,和从受试者的被观察到增加从75%至95%的心理反应的刺激还描绘学习。这一观察结果证实了在用户振动触觉刺激的学习过这反过来又增加了系统效能的会话。

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