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A Visual Keyboard System Using Hybrid Dual Frequency SSVEP Based Brain Computer Interface with VOG Integration

机译:一种使用vog集成的混合双频SSVEP基础脑电脑接口的视觉键盘系统

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The focus of this paper is to increase the number of targets and classification rate in the SSVEP-BCI visual keyboard system. The dual frequency steady state visual evoked potential (SSVEP) and video-oculography (VOG) based hybrid system has been developed in this study. The visual stimuli (targets) were designed using dual frequency SSVEP method. This method could create more targets through a suitable combination of limited number of frequencies. The keyboard screen was divided into three sections (left, middle and right), and each section visual stimuli/keys were designed with a unique set of frequencies. The webcam based video-oculography was used to detect the direction of the eye gaze. This selection reduces the issue of misclassification of SSVEP frequencies. Extended multivariate synchronization index (EMSI) method is used for SSVEP frequency recognition. Both online and offline experiments were conducted on 10 subjects and an average online detection accuracy of 94.987% was obtained with the information transfer rate (ITR) of 82.786 bits/minutes.
机译:本文的重点是增加SSVEP-BCI视觉键盘系统中的目标和分类率的数量。本研究开发了双频稳态视觉诱发电位(SSVEP)和视频眼图(VOG)的混合系统。使用双频SSVEP方法设计了视觉刺激(目标)。该方法可以通过有限数量的频率组合来创建更多目标。键盘屏幕分为三个部分(左,中等和右侧),每个部分视觉刺激/键都设计有一组独特的频率。基于网络摄像头的视频眼图用于检测眼睛凝视的方向。此选择减少了SSVEP频率错误分类问题。扩展多变量同步索引(EMSI)方法用于SSVEP频率识别。在线和离线实验都是在10个受试者进行的,并且使用82.786位/分钟的信息转移率(ITR)获得了94.987%的平均在线检测精度。

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