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在接近阈限视觉呈现之前,脑电图幅度谱可区分地预测检测/遗漏和短-长反应时间结果。

EEG amplitude spectra before near threshold visual presentations differentially predict detection/omission and short-long reaction time outcomes.

机构信息

Department of Psychology, Université du Québec à Montréal, Canada.

出版信息

Int J Psychophysiol. 2013 Jul;89(1):88-98. doi: 10.1016/j.ijpsycho.2013.05.016. Epub 2013 Jun 5.

Abstract

Performance in simple stimulus detection manifests as both probability of detection and speed of signaling detected stimuli. These two dimensions of performance across trials were examined with respect to brain states just prior to stimulus delivery, using near threshold stimuli targeting the magnocellular or the parvocellular visual streams in an attempt to isolate differential perceptual preparation. The EEG amplitude of 12 university students was analyzed in spectral bands from 2 to 50 Hz at 9 bilateral channel pairs in a window covering -450 ms to +50 ms relative to stimulus onset. A hierarchical statistical procedure was applied to control false positive results. EEG power in the 2, 4, 8 and 10 Hz bands was found significantly lower at the F7-F8 channel pair both before detected compared to omitted stimuli and before the fastest compared to slowest reaction time quartiles, with no stimulus type effect. In addition, the 22 and 24 Hz band activity was lower prior to better performance frontally (F3-F4, F7-F8) in reaction time but not in detection, while it was larger centro-parietally (CP1-CP2, P3-P4) in detection but not in reaction times. Spectral analysis thus shows stimulus detection and response speed to depend partly on common and partly on distinct pre-stimulus brain states.

摘要

简单刺激检测的表现体现在检测概率和检测到的刺激信号的速度上。这两个方面的表现跨越了试验,通过使用接近阈值的刺激来针对大细胞或小细胞视觉流,试图分离出不同的感知准备。对 12 名大学生的脑电图振幅进行了分析,在频谱带从 2 到 50 Hz 之间,在 9 个双侧通道对上进行了分析,窗口覆盖刺激开始前的 -450 毫秒到+50 毫秒。采用分层统计程序来控制假阳性结果。在 F7-F8 通道对上,在检测到的刺激与遗漏的刺激相比,在最快的反应时间四分位数与最慢的反应时间四分位数相比,2、4、8 和 10 Hz 频带的脑电图功率显著降低,没有刺激类型的影响。此外,在反应时间方面,22 和 24 Hz 频段的活动在前额(F3-F4,F7-F8)的表现更好,但在检测中则不然,而在检测中则更大(CP1-CP2,P3-P4),但在反应时间中则不然。因此,频谱分析表明,刺激检测和反应速度部分取决于共同的和部分不同的预刺激大脑状态。

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