A novel electrooculogram-based human computer interface and its application as a virtual keyboard

A. B. Usakli, S. Gurkan
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引用次数: 8

Abstract

In this study, the design strategy of a novel electrooculugram (EOG) based human computer interface (HCI) and its application are presented. Due to eye movements electric potentials are generated accross the cornea and retina. This electrical potentials are the source of the EOG signal. To establish a new channel of communication between patients having motor neuron problems and their envioriment is important to make their life easy. Using EOG for HCI is more efficient than electroencephalogram based methods for patients who are still able to move their eyes. The novel system is microcontroller based and has 85 dB over-all common mode rejection ratio, 0.6 µV(p-p) input-referred noise and 176 Hz sampling rate. The subject can write a 5 letter word in 25 seconds. Nearest neighborhood method is used for classification and its performance is 92%.
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一种新的基于电眼图的人机界面及其作为虚拟键盘的应用
本文介绍了一种新型的基于电图的人机界面的设计策略及其应用。由于眼球运动,电势在角膜和视网膜上产生。这些电位就是EOG信号的来源。在有运动神经元问题的患者和他们的环境之间建立一个新的沟通渠道对于使他们的生活更轻松是重要的。对于仍然能够移动眼睛的患者,使用EOG进行HCI比基于脑电图的方法更有效。该新型系统基于微控制器,总体共模抑制比为85 dB,输入参考噪声为0.6µV(p-p),采样率为176 Hz。受试者能在25秒内写出一个5个字母的单词。采用最近邻法进行分类,其准确率为92%。
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