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感知认知任务期间的脑电图同步:所有频率下广泛的相位同步。

EEG synchrony during a perceptual-cognitive task: widespread phase synchrony at all frequencies.

作者信息

Pockett Susan, Bold Gary E J, Freeman Walter J

机构信息

Department of Physics, University of Auckland, Private Bag 92019, Auckland, New Zealand.

出版信息

Clin Neurophysiol. 2009 Apr;120(4):695-708. doi: 10.1016/j.clinph.2008.12.044. Epub 2009 Feb 27.

Abstract

OBJECTIVES

(1) To examine the validity of comparing the phase of broad-band signals. (2) To measure phase synchrony over the whole head, at a variety of frequencies.

METHODS

The concept of broad band phase is investigated (a) by visual comparison of the time series of two channels of filtered data with the time series of the spatial analytic phase difference (SAPD) between the two channels and (b) using artificial sinusoids. Phase synchrony is then measured in 64-channel EEG recorded while human subjects performed a perceptual-cognitive task, by calculation of analytic phase differences between each channel and a frontal synchrony reference channel. The number of channels in synchrony with the reference channel at a series of frequency passbands is compared for data acquired using a common recording reference, the same data re-referenced to an average reference and artificial noise.

RESULTS

Analytic phase is shown to represent the resultant of the phasor angles of all the narrow band signals incorporated in a composite waveform. Episodic global phase synchrony is identified in background EEG, in all passbands from theta to epsilon. Many of the episodes of widespread synchrony occur in both common-referenced and average-referenced data, but some common-reference episodes are not seen in average-referenced data. In both forms of data, synchrony is about equally widespread in all subjects at lower passbands, but more widespread in some subjects than others at higher passbands.

CONCLUSIONS

(1) It is valid to measure the analytic phase of broad band EEG signals. (2) Non-local phase synchrony is intermittently present in all frequency bands from theta to epsilon, not only during and after external stimuli, but also in background EEG. (3) In some subjects synchrony is more widespread in gamma and epsilon bands than in beta, alpha or delta bands, but in others the reverse is true. (4) Some of the episodes of synchrony seen in common referenced data may be artifacts of a sudden decrease in power at the recording electrodes in comparison with the common reference electrode. However, most of the episodes of synchrony in common-referenced data cannot be explained in this fashion. (5) Episodes of widespread synchrony are not established instantaneously. During the establishment of most episodes of '40 Hz' synchrony, the number of channels in synchrony peaks after about 100 ms.

SIGNIFICANCE

If long-range phase synchrony really is a hallmark of consciousness, it should be present most of the time the subject is conscious. Our results confirm this prediction, and suggest that consciousness may involve not only gamma frequencies, but the whole range from theta to epsilon. The mechanism of synchrony establishment at the scalp as shown by the present method is relatively slow and thus more likely to involve chemical synapses than gap junctions, electric fields or quantum non-locality.

摘要

目的

(1)检验比较宽带信号相位的有效性。(2)测量全脑在各种频率下的相位同步性。

方法

通过以下方式研究宽带相位的概念:(a)将两个滤波后数据通道的时间序列与这两个通道之间的空间解析相位差(SAPD)的时间序列进行视觉比较;(b)使用人工正弦波。然后,在人类受试者执行感知认知任务时记录的64导脑电图中,通过计算每个通道与一个额叶同步参考通道之间的解析相位差来测量相位同步性。比较使用公共记录参考、重新参考到平均参考的相同数据以及人工噪声获取的数据在一系列频率通带中与参考通道同步的通道数量。

结果

解析相位显示为复合波形中所有窄带信号的相量角的合成结果。在背景脑电图中,从θ波到ε波的所有通带中都识别出了间歇性的全脑相位同步。许多广泛同步的发作在公共参考数据和平均参考数据中都出现,但一些公共参考发作在平均参考数据中未出现。在两种数据形式中,同步在较低通带中在所有受试者中分布大致相同,但在较高通带中,一些受试者的同步比其他受试者更广泛。

结论

(1)测量宽带脑电图信号的解析相位是有效的。(2)非局部相位同步在从θ波到ε波的所有频段中间歇性存在,不仅在外部刺激期间和之后,而且在背景脑电图中也是如此。(3)在一些受试者中,γ波和ε波频段的同步比β波、α波或δ波频段更广泛,但在其他受试者中情况相反。(4)在公共参考数据中看到的一些同步发作可能是记录电极处功率相对于公共参考电极突然下降的伪迹。然而,公共参考数据中的大多数同步发作无法以这种方式解释。(5)广泛同步的发作不是瞬间建立的。在大多数“40赫兹”同步发作的建立过程中,同步通道的数量在大约100毫秒后达到峰值。

意义

如果远程相位同步真的是意识的标志,那么它应该在受试者有意识的大部分时间里都存在。我们的结果证实了这一预测,并表明意识可能不仅涉及γ频率,还涉及从θ波到ε波的整个范围。本方法所示的头皮同步建立机制相对较慢,因此更可能涉及化学突触而不是缝隙连接、电场或量子非局域性。

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