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Human Brain Imaging During Controlled and Natural Viewing

机译:受控和自然观察期间的人脑成像

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Assorted technologies such as; EEG, MEG, fMRI, BEM, MRI, TMS and BCI are being integrated to understand how human visual cortical areas interact during controlled laboratory and natural viewing conditions. Our focus is on the problem of separating signals from the spatially close early visual areas. The solution involves taking advantage of known functional anatomy to guide stimulus selection and employing principles of spatial and temporal response properties that simplify analysis. The method also unifies MEG and EEG recordings and provides a means for improving existing boundary element head models. In going beyond carefully controlled stimuli, in natural viewing with scanning eye movements, assessing brain states with BCI is a most challenging task. Frequent eye movements contribute artifacts to the recordings. A linear regression method is introduced that is shown to effectively characterize these frequent artifacts and could be used to remove them. In free viewing, saccadic landings initiate visual processing epochs and could be used to trigger strictly time based analysis methods. However, temporal instabilities indicate frequency based analysis would be an important adjunct. The class of Cauchy filter functions is introduced that have narrow time and frequency properties well matched to the EEG/MEG spectrum for avoiding channel leakage.
机译:什锦技术如; EEG,MEG,FMRI,BEM,MRI,TMS和BCI正在集成,以了解人类视觉皮质区域在受控实验室和自然观看条件下的互动。我们的重点是在空间关闭早期视觉区域分离信号的问题。该解决方案涉及利用已知的功能解剖学来引导刺激选择和使用简化分析的空间和时间响应性的原理。该方法还统一了MEG和EEG录制,并提供了一种改进现有边界元件头模型的手段。在超越仔细控制的刺激方面,通过扫描眼球运动的自然观察,用BCI评估大脑状态是最具挑战性的任务。频繁的眼睛运动会导致录音的文物。引入了线性回归方法,其示出了有效地表征了这些频繁的伪像并且可用于移除它们。在免费观看中,扫视登陆启动视觉处理时期,可用于触发严格的基于时间的分析方法。然而,时间不稳定性表明基于频率的分析将是一个重要的附件。引入了Cauchy滤波器功能的阶段,其具有窄的时间和频率性能,与EEG / MEG频谱相匹配,以避免通道泄漏。

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