利用右额回脑电图进行脑机接口的基础研究

T. Yamanoi, H. Toyoshima, T. Yamazaki, Shin-ichi Ohnishi, M. Sugeno, Elie Sanchez
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摘要

为了开发一个脑机接口,作者研究了人类在识别表示方向意义的字符和符号时的大脑活动。作者记录了受试者在CRT上看到四种汉字(目前在日语中使用的汉字)和箭头时的脑电图(eeg)。分别表示向上、向下、向左、向右的方向。受试者被要求默读。无论方向如何,反应时间几乎相等。对每种刺激类型和刺激方向的脑电图进行平均,得到事件相关电位(ERPs)。等效电流偶极子源定位(ECDL)方法已应用于这些erp。在这两种情况下,直到他们的潜伏期为250毫秒时才观察到大的差异,之后ECDs被定位到与空间感知工作记忆相关的区域。考虑到这些事实,作者精确地研究了400ms延迟后的单次试验脑电图,并确定了四种类型箭头的有效采样延迟:↑,↓,←和→。通过判别分析,每个受试者和每个试验的判别率均为100%。这些结果显示了在四种类型的控制中使用脑电图作为脑机接口的可能性。
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Fundamental research for brain machine interface by use of EEG from right frontal gyrus
In order to develop a brain machine interface, the authors have investigated the brain activity during human recognition of characters and symbols representing directional meaning. The authors have recorded electroencephalograms (EEGs) from subjects viewing four types of Kanji (Chinese characters being used currently in the Japanese language) and arrows that were presented on a CRT. Each denoted direction for upward, downward, leftward and rightward, respectively. Subjects were asked to read them silently. Regardless of the directions, the reaction time was almost equal. EEGs were averaged for each stimulus type and direction, and event related potentials (ERPs) were obtained. The equivalent current dipole source localization (ECDL) method has been applied to these ERPs. In both cases, no large difference was observed until 250 ms at their latencies, and after that ECDs were localized to areas related to the working memory for the spatial perception. Taking into account these facts, the authors have investigated a single trial EEGs precisely after the latency at 400ms, and have determined effective sampling latencies for the discriminant analysis on four types of arrows: ↑, ↓, ← and →. By a discriminant analysis, the results of discriminant rate are 100% for each subject and for each trial. These results show the possibility of using EEGs for a brain machine interface in four type controls.
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