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Control or No-Control? Reducing the gap between Brain-Computer Interface and classical input devices

机译:控制或无控制?降低脑电脑接口和经典输入设备之间的差距

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In order to improve Brain Computer Interface usability for real life context, they should be able to adapt their speed to the user's current psychophysical state and to understand from the ongoing EEG when he/she intends to suspend the control. In this work we evaluated an asynchronous classifier which provides these feature with 20 healthy subjects, who were engaged in an environmental control task or in a spelling task. We also demonstrated how the proposed classifier can improve communication efficiency with respect to classical synchronous classifiers.
机译:为了提高大脑计算机界面的实际环境的可用性,他们应该能够将他们的速度适应用户当前的心理物理状态,并在他/她打算暂停控制时从正在进行的脑电图中理解。在这项工作中,我们评估了一个异步分类器,它提供了20个具有20个健康科目的这些功能,谁从事环境控制任务或拼写任务。我们还证明了所提出的分类器如何如何相对于古典同步分类器提高通信效率。

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