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Using Motor Imagery to Control Brain-Computer Interfaces for Communication

机译:使用运动图像控制用于交流的脑机接口

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Brain-computer interfaces (BCI) as assistive devices are designed to provide access to communication, navigation, locomotion and environmental interaction to individuals with severe motor impairment. In the present paper, we discuss two approaches to communication using a non-invasive BCI via recording of neurological activity related to motor imagery. The first approach uses modulations of the sensorimotor rhythm related to limb movement imagery to continuously modify the output of an artificial speech synthesizer. The second approach detects event-related changes to neurological activity during single trial motor imagery attempts to control a commercial augmentative and alternative communication device. These two approaches represent two extremes for BCI-based communication ranging from simple, "button-click" operation of a speech generating communication device to continuous modulation of an acoustic output speech synthesizer. The goal of developing along a continuum is to facilitate adoption and use of communication BCIs to a heterogeneous target user population.
机译:作为辅助设备的脑机接口(BCI)旨在为患有严重运动障碍的个人提供通信,导航,运动和环境互动的途径。在本文中,我们讨论了通过记录与运动图像有关的神经活动使用无创BCI进行交流的两种方法。第一种方法使用与肢体运动图像有关的感觉运动节律的调制来连续修改人工语音合成器的输出。第二种方法是在单次尝试运动图像尝试控制商业增效性和替代性通讯设备的过程中,检测与神经活动相关的事件相关变化。这两种方法代表了基于BCI的通信的两个极端,范围从语音生成通信设备的简单“按钮单击”操作到声音输出语音合成器的连续调制。沿连续性发展的目标是促进针对不同目标用户群的通信BCI的采用和使用。

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