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Analogue mouse pointer control via an online steady state visual evoked potential (SSVEP) brain-computer interface

机译:通过在线稳态视觉诱发电位(SSVEP)脑机接口进行模拟鼠标指针控制

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摘要

The steady state visual evoked protocol has recently become a popular paradigm in brain-computer interface (BCI) applications. Typically (regardless of function) these applications offer the user a binary selection of targets that perform correspondingly discrete actions. Such discrete control systems are appropriate for applications that are inherently isolated in nature, such as selecting numbers from a keypad to be dialled or letters from an alphabet to be spelled. However motivation exists for users to employ proportional control methods in intrinsically analogue tasks such as the movement of a mouse pointer. This paper introduces an online BCI in which control of a mouse pointer is directly proportional to a user's intent. Performance is measured over a series of pointer movement tasks and compared to the traditional discrete output approach. Analogue control allowed subjects to move the pointer faster to the cued target location compared to discrete output but suffers more undesired movements overall. Best performance is achieved when combining the threshold to movement of traditional discrete techniques with the range of movement offered by proportional control.
机译:稳态视觉诱发协议最近已成为脑机接口(BCI)应用程序中的一种流行范例。通常,这些应用程序(不考虑功能)为用户提供执行相应离散操作的目标的二进制选择。这种离散控制系统适用于本质上固有隔离的应用程序,例如从要拨打的键盘中选择数字或从要拼写的字母中选择字母。然而,存在用户在固有模拟任务(例如鼠标指针的移动)中采用比例控制方法的动机。本文介绍了一种在线BCI,其中鼠标指针的控制与用户的意图成正比。性能是通过一系列指针移动任务来衡量的,并与传统的离散输出方法进行了比较。与离散输出相比,模拟控制允许对象将指针更快地移动到提示的目标位置,但总体上会遭受更多不希望的移动。当将传统离散技术的运动阈值与比例控制提供的运动范围相结合时,可获得最佳性能。

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  • 来源
    《Journal of neural engineering》 |2011年第2期|p.174-179|共6页
  • 作者单位

    Brain-Computer Interface Group, School of Computer Science and Electronic Engineering,University of Essex, Wivenhoe Park, Colchester, CO4 3SQ, Essex, UK;

    Brain-Computer Interface Group, School of Computer Science and Electronic Engineering,University of Essex, Wivenhoe Park, Colchester, CO4 3SQ, Essex, UK;

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