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首页> 外文期刊>Journal of neural engineering >Influence of P300 latency jitter on event related potential-based brain-computer interface performance
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Influence of P300 latency jitter on event related potential-based brain-computer interface performance

机译:P300延迟抖动对与事件相关的基于电势的脑机接口性能的影响

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摘要

Objective. Several ERP-based brain-computer interfaces (BCIs) that can be controlled even without eye movements (covert attention) have been recently proposed. However, when compared to similar systems based on overt attention, they displayed significantly lower accuracy. In the current interpretation, this is ascribed to the absence of the contribution of short-latency visual evoked potentials (VEPs) in the tasks performed in the covert attention modality. This study aims to investigate if this decrement (ⅰ) is fully explained by the lack of VEP contribution to the classification accuracy; (ⅱ) correlates with lower temporal stability of the single-trial P300 potentials elicited in the covert attention modality. Approach. We evaluated the latency jitter of P300 evoked potentials in three BCI interfaces exploiting either overt or covert attention modalities in 20 healthy subjects. The effect of attention modality on the P300 jitter, and the relative contribution of VEPs and P300 jitter to the classification accuracy have been analyzed. Main results. The P300 jitter is higher when the BCI is controlled in covert attention. Classification accuracy negatively correlates with jitter. Even disregarding short-latency VEPs, overt-attention BCI yields better accuracy than covert. When the latency jitter is compensated offline, the difference between accuracies is not significant. Significance. The lower temporal stability of the P300 evoked potential generated during the tasks performed in covert attention modality should be regarded as the main contributing explanation of lower accuracy of covert-attention ERP-based BCIs.
机译:目的。最近已经提出了几种基于ERP的脑机接口(BCI),即使没有眼球运动(注意力不集中)也可以对其进行控制。但是,与基于公开注意的类似系统相比,它们显示的准确性明显较低。在当前的解释中,这归因于在隐蔽注意力模式中执行的任务中没有短时视觉诱发电位(VEP)的贡献。这项研究的目的是调查是否由于缺乏VEP对分类准确性的影响而完全解释了这种减量(ⅰ); (ⅱ)与秘密注意方式中引发的单次P300电位的较低时间稳定性相关。方法。我们评估了三个BCI界面中P300诱发电位的潜伏期抖动,这些延迟利用了20位健康受试者的公开或秘密注意方式。分析了注意方式对P300抖动的影响,以及VEP和P300抖动对分类精度的相对影响。主要结果。秘密控制BCI时,P300抖动较高。分类精度与抖动负相关。即使不考虑短等待时间的VEP,公开关注的BCI也比隐秘的BCI产生更好的准确性。当延迟抖动被离线补偿时,精度之间的差异并不明显。意义。在以秘密注意方式执行的任务中,P300诱发电位的时间稳定性较低,应被认为是基于秘密注意的基于ERP的BCI准确性较低的主要原因。

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  • 来源
    《Journal of neural engineering》 |2014年第3期|035008.1-035008.11|共11页
  • 作者单位

    Neuroelectrical Imaging and BCI Lab, Fondazione Santa Lucia IRCCS, Rome, Italy,Department of Computer, Control, and Management Engineering, Sapienza University of Rome, Italy;

    Neuroelectrical Imaging and BCI Lab, Fondazione Santa Lucia IRCCS, Rome, Italy,Department of Computer, Control, and Management Engineering, Sapienza University of Rome, Italy;

    Neuroelectrical Imaging and BCI Lab, Fondazione Santa Lucia IRCCS, Rome, Italy,Department of Computer, Control, and Management Engineering, Sapienza University of Rome, Italy;

    Department of Computer, Control, and Management Engineering, Sapienza University of Rome, Italy;

    Neuroelectrical Imaging and BCI Lab, Fondazione Santa Lucia IRCCS, Rome, Italy;

    Neuroelectrical Imaging and BCI Lab, Fondazione Santa Lucia IRCCS, Rome, Italy,Department of Computer, Control, and Management Engineering, Sapienza University of Rome, Italy;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    P300 latency jitter; brain-computer interface; covert attention; wavelet analysis; single epoch;

    机译:P300延迟抖动;脑机接口;暗中关注小波分析单时代;

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