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一种通过直接控制鼠标和键盘来使用任意Windows应用程序的脑机接口(BCI)系统。

A Brain-Computer Interface (BCI) system to use arbitrary Windows applications by directly controlling mouse and keyboard.

作者信息

Spuler Martin

出版信息

Annu Int Conf IEEE Eng Med Biol Soc. 2015 Aug;2015:1087-90. doi: 10.1109/EMBC.2015.7318554.

Abstract

A Brain-Computer Interface (BCI) allows to control a computer by brain activity only, without the need for muscle control. In this paper, we present an EEG-based BCI system based on code-modulated visual evoked potentials (c-VEPs) that enables the user to work with arbitrary Windows applications. Other BCI systems, like the P300 speller or BCI-based browsers, allow control of one dedicated application designed for use with a BCI. In contrast, the system presented in this paper does not consist of one dedicated application, but enables the user to control mouse cursor and keyboard input on the level of the operating system, thereby making it possible to use arbitrary applications. As the c-VEP BCI method was shown to enable very fast communication speeds (writing more than 20 error-free characters per minute), the presented system is the next step in replacing the traditional mouse and keyboard and enabling complete brain-based control of a computer.

摘要

脑机接口(BCI)允许仅通过大脑活动来控制计算机,而无需肌肉控制。在本文中,我们展示了一种基于脑电图(EEG)的脑机接口系统,该系统基于编码调制视觉诱发电位(c-VEP),使用户能够使用任意Windows应用程序。其他脑机接口系统,如P300拼写器或基于脑机接口的浏览器,允许控制一个专为与脑机接口配合使用而设计的专用应用程序。相比之下,本文介绍的系统并非由一个专用应用程序组成,而是使用户能够在操作系统层面控制鼠标光标和键盘输入,从而可以使用任意应用程序。由于c-VEP脑机接口方法已被证明能够实现非常快的通信速度(每分钟写入超过20个无错误字符),因此所展示的系统是朝着取代传统鼠标和键盘以及实现基于大脑的计算机完全控制迈出的下一步。

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