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个体的阿尔法频率似乎与早期视觉反应的潜伏期无关。

Individual alpha frequency appears unrelated to the latency of early visual responses.

作者信息

Morrow Audrey, Dou Wei, Samaha Jason

机构信息

Department of Psychology, University of California, Santa Cruz, Santa Cruz, CA, United States.

出版信息

Front Neurosci. 2023 Apr 11;17:1118910. doi: 10.3389/fnins.2023.1118910. eCollection 2023.

Abstract

A large body of work has linked neural oscillations in the alpha-band (8-13 Hz) to visual perceptual outcomes. In particular, studies have found that alpha phase prior to stimulus onset predicts stimulus detection, and sensory responses and that the frequency of alpha can predict temporal properties of perception. These findings have bolstered the idea that alpha-band oscillations reflect rhythmic sampling of visual information, however the mechanisms of this are unclear. Recently two contrasting hypotheses have been proposed. According to the account, alpha oscillations impose phasic inhibition on perceptual processing and primarily modulate the amplitude or strength of visual responses and thus the likelihood of stimulus detection. On the other hand, the account proposes that alpha activity discretizes perceptual inputs thereby reorganizing the timing (not only the strength) of perceptual and neural processes. In this paper, we sought neural evidence for the discrete perception account by assessing the correlation between individual alpha frequencies (IAF) and the latency of early visual evoked event-related potential (ERP) components. If alpha cycles were responsible for shifting neural events in time, then we may expect higher alpha frequencies to be associated with earlier afferent visual ERPs. Participants viewed large checkerboard stimuli presented to either the upper or lower visual field that were designed to elicit a large C1 ERP response (thought to index feedforward primary visual cortex activation). We found no reliable correlation between IAF and the C1 latency, or subsequent ERP component latencies, suggesting that the timing of these visual-evoked potentials was not modulated by alpha frequency. Our results thus fail to find evidence for discrete perception at the level of early visual responses but leave open the possibility of rhythmic perception.

摘要

大量研究工作已将阿尔法波段(8 - 13赫兹)的神经振荡与视觉感知结果联系起来。具体而言,研究发现刺激开始前的阿尔法相位可预测刺激检测、感觉反应,且阿尔法频率能预测感知的时间特性。这些发现支持了阿尔法波段振荡反映视觉信息节律性采样的观点,然而其机制尚不清楚。最近提出了两种截然不同的假说。根据一种观点,阿尔法振荡对感知处理施加阶段性抑制,主要调节视觉反应的幅度或强度,进而影响刺激检测的可能性。另一方面,另一种观点认为阿尔法活动使感知输入离散化,从而重新组织感知和神经过程的时间(不仅是强度)。在本文中,我们通过评估个体阿尔法频率(IAF)与早期视觉诱发事件相关电位(ERP)成分的潜伏期之间的相关性,来寻找支持离散感知观点的神经证据。如果阿尔法周期负责在时间上移动神经事件,那么我们可能预期较高的阿尔法频率与更早的传入视觉ERP相关。参与者观看呈现于上视野或下视野的大棋盘格刺激,这些刺激旨在引发较大的C1 ERP反应(被认为可指示前馈初级视觉皮层激活)。我们发现IAF与C1潜伏期或后续ERP成分潜伏期之间不存在可靠的相关性,这表明这些视觉诱发电位的时间并未受阿尔法频率调制。因此,我们的结果未能在早期视觉反应层面找到离散感知的证据,但并未排除节律性感知的可能性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6a21/10126513/9e41e56dc6b0/fnins-17-1118910-g001.jpg

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