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A 3-D immersive environment for characterizing EEG signatures of target detection

机译:用于表征目标检测的EEG签名的3-D沉浸式环境

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Visual target detection is one of the most studied paradigms in human electrophysiology. Electroencephalo-graphic (EEG) correlates of target detection include the well-characterized N1, P2, and P300. In almost all cases the experimental paradigms used for studying visual target detection are extremely well-controlled — very simple stimuli are presented so as to minimize eye movements, and scenarios involve minimal active participation by the subject. However, to characterize these EEG correlates for real-world scenarios, where the target or the subject may be moving and the two may interact, a more flexible paradigm is required. The environment must be immersive and interactive, and the system must enable synchronization between events in the world, the behavior of the subject, and simultaneously recorded EEG signals. We have developed a hardware/software system that enables us to precisely control the appearance of objects in a 3D virtual environment, which subjects can navigate while the system tracks their eyes and records their EEG activity. We are using this environment to investigate a set of questions which focus on the relationship between the visibility, salience, and affect of the target; the agency and eye movements of the subject; and the resulting EEG signatures of detection. In this paper, we describe the design of our system and present some preliminary results regarding the EEG signatures of target detection.
机译:视觉目标检测是人类电生理学中研究最多的范例之一。目标检测的脑电图(EEG)相关性包括特征明确的N1,P2和P300。在几乎所有情况下,用于研究视觉目标检测的实验范式都得到了很好的控制-提出了非常简单的刺激以最大程度地减少眼球运动,并且场景所涉及的对象的主动参与最少。然而,为了表征这些现实环境中的脑电图相关性,其中目标或主体可能正在移动并且两者可能相互作用,因此需要更灵活的范式。环境必须是身临其境且具有交互性的,并且系统必须在世界上的事件,对象的行为以及同时记录的EEG信号之间实现同步。我们已经开发了一种硬件/软件系统,使我们能够精确地控制3D虚拟环境中对象的外观,当系统跟踪他们的眼睛并记录他们的EEG活动时,受试者可以进行导航。我们正在使用这种环境来研究一系列问题,这些问题着重于目标的可见性,显着性和影响之间的关系。主体的代理和眼睛运动;以及检测到的由此产生的EEG签名。在本文中,我们描述了系统的设计并提出了有关目标检测的脑电信号特征的一些初步结果。

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