首页> 外文期刊>Medical and Biological Engineering and Computing: Journal of the International Federation for Medical and Biological Engineering >Temporal and spatial complexity measures for electroencephalogram based brain-computer interfacing.
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Temporal and spatial complexity measures for electroencephalogram based brain-computer interfacing.

机译:基于脑电图的脑电接口的时间和空间复杂性度量。

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摘要

There has been much interest recently in the concept of using information from the motor cortex region of the brain, recorded using non-invasive scalp electrodes, to construct a crude interface with a computer. It is known that movements of the limbs, for example, are accompanied by desynchronisations and synchronisations within the scalp-recorded electroencephalogram (EEG). These event-related desynchronisations and synchronisations (ERD and ERS), however, appear to be present when volition to move a limb occurs, even when actual movement of the limb does not in fact take place. The determination and classification of the ERD/S offers many exciting possibilities for the control of peripheral devices via computer analysis. To date most effort has concentrated on the analysis of the changes in absolute frequency content of signals recorded from the motor cortex. The authors present results which tackle the issues of both the interpretation of changes in signals with time and across channels with simple methods which monitor the temporal and spatial 'complexity' of the data. Results are shown on synthetic and real data sets.
机译:最近人们对使用来自大脑的运动皮层区域的信息(使用无创头皮电极记录的信息)构建与计算机的粗略接口的概念产生了浓厚兴趣。众所周知,例如,肢体的运动伴随着头皮记录的脑电图(EEG)内的失步和同步。但是,当发生移动肢体的意愿时,即使实际上并未发生肢体的实际运动,这些与事件相关的失步和同步(ERD和ERS)也似乎存在。 ERD / S的确定和分类为通过计算机分析控制外围设备提供了许多令人兴奋的可能性。迄今为止,大多数工作都集中在分析从运动皮层记录的信号的绝对频率含量变化上。作者们提出了解决这些问题的方法,这些结果通过监视数据时间和空间“复杂性”的简单方法解决了信号随时间和跨通道变化的解释。结果显示在综合和真实数据集上。

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