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A Brain-Computer-Interface for the Detection and Modulation of Gamma Band Activity

机译:脑计算机接口用于检测和调制伽马谱带活动。

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摘要

Gamma band oscillations in the human brain (around 40 Hz) play a functional role in information processing, and a real-time assessment of gamma band activity could be used to evaluate the functional relevance more directly. Therefore, we developed a source based Brain-Computer-Interface (BCI) with an online detection of gamma band activity in a selective brain region in the visual cortex. The BCI incorporates modules for online detection of various artifacts (including microsaccades) and the artifacts were continuously fed back to the volunteer. We examined the efficiency of the source-based BCI for Neurofeedback training of gamma- and alpha-band (8–12 Hz) oscillations and compared the specificity for the spatial and frequency domain. Our results demonstrated that volunteers learned to selectively switch between modulating alpha- or gamma-band oscillations and benefited from online artifact information. The analyses revealed a high level of accuracy with respect to frequency and topography for the gamma-band modulations. Thus, the developed BCI can be used to manipulate the fast oscillatory activity with a high level of specificity. These selective modulations can be used to assess the relevance of fast neural oscillations for information processing in a more direct way, i.e., by the adaptive presentation of stimuli within well-described brain states.
机译:人脑中的伽马能带振荡(约40 Hz)在信息处理中发挥功能作用,并且可以实时评估伽马能带活动来更直接地评估功能相关性。因此,我们开发了一种基于源的脑机接口(BCI),可以在线检测视觉皮层中选择性大脑区域中的γ带活动。 BCI包含用于在线检测各种文物(包括微扫视)的模块,这些文物不断反馈给志愿者。我们检查了基于源BCI的神经反馈训练的伽马和α波段(8–12 Hz)振荡的效率,并比较了空间和频域的特异性。我们的结果表明,志愿者学会了在调制α或γ波段振荡之间进行选择性切换,并受益于在线工件信息。分析表明,对于伽马波段调制,频率和形貌具有很高的准确性。因此,开发的BCI可用于以高水平的特异性操纵快速振荡活动。这些选择性调制可用于以更直接的方式,即通过在充分描述的大脑状态内自适应地呈现刺激,来评估快速神经振荡与信息处理的相关性。

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