Analysis of visual stimulus parameters for SSVEP based brain computer interfaces

Berrenur Saylam, Ozan Caglayan, R. Arslan
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Abstract

Brain computer interface (BCI) is a system which allows communication between human and machine. BCI systems that control wheelchairs, robotic arms etc. by means of brain activity are being developed to facilitate the daily life of people who can not use their limbs due to damage in motor neurons. In this study, the color, distance and frequency of the visual stimuli are investigated to find out the most prominent brain responses for Steady State Visual Evoked Potential (SSVEP) based BCI systems. 7 stimulation frequencies (15,17,19,21,24,27 and 30Hz) and 3 different colors (white, red, green) were used from 35-60-150 cm distances in order to generate visual stimuli. As a result of examination of 504 EEG segments produced by recording 20 seconds of EEG data for each parameter from 8 subjects using Emotiv EEG headset, 15-24Hz frequency band, 60cm distance and red color were found to be the optimum stimulus parameters.
基于SSVEP的脑机接口视觉刺激参数分析
脑机接口(BCI)是人与机器之间进行通信的系统。通过大脑活动控制轮椅、机械臂等的脑机接口系统正在被开发,以方便由于运动神经元受损而无法使用肢体的人们的日常生活。在本研究中,研究了视觉刺激的颜色、距离和频率,以找出基于稳态视觉诱发电位(SSVEP)的BCI系统中最突出的脑反应。在35-60-150 cm的距离上使用7种刺激频率(15、17、19、21、24、27和30Hz)和3种不同的颜色(白、红、绿)来产生视觉刺激。Emotiv EEG头戴设备对8名受试者各参数记录20秒脑电数据产生的504个脑电片段进行检测,发现15-24Hz频带、60cm距离和红色为最优刺激参数。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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