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个体阿尔法频率预测视触同时知觉。

Individual Alpha Frequency Predicts Perceived Visuotactile Simultaneity.

机构信息

University of Chieti-Pescara.

University of Delaware.

出版信息

J Cogn Neurosci. 2020 Jan;32(1):1-11. doi: 10.1162/jocn_a_01464. Epub 2019 Sep 3.

Abstract

Temporal encoding is a key feature in multisensory processing that leads to the integration versus segregation of perceived events over time. Whether or not two events presented at different offsets are perceived as simultaneous varies widely across the general population. Such tolerance to temporal delays is known as the temporal binding window (TBW). It has been recently suggested that individual oscillatory alpha frequency (IAF) peak may represent the electrophysiological correlate of TBW, with IAF also showing a wide variability in the general population (8-12 Hz). In our work, we directly tested this hypothesis by measuring each individual's TBW during a visuotactile simultaneity judgment task while concurrently recording their electrophysiological activity. We found that the individual's TBW significantly correlated with their left parietal IAF, such that faster IAF accounted for narrower TBW. Furthermore, we found that higher prestimulus alpha power measured over the same left parietal regions accounted for more veridical responses of non-simultaneity, which may be explained either by accuracy in perceptual simultaneity or, alternatively, in line with recent proposals by a shift in response bias from more conservative (high alpha power) to more liberal (low alpha power). We propose that the length of an alpha cycle constrains the temporal resolution within which perceptual processes take place.

摘要

时间编码是多感觉处理中的一个关键特征,它导致了感知事件在时间上的整合或分离。在不同的时间间隔呈现的两个事件是否被感知为同时发生,在普通人群中差异很大。这种对时间延迟的容忍度被称为时间绑定窗口(TBW)。最近有人提出,个体的振荡 alpha 频率(IAF)峰值可能代表 TBW 的电生理相关物,IAF 在普通人群中也表现出很大的可变性(8-12 Hz)。在我们的工作中,我们通过在进行视触同时判断任务的同时记录个体的电生理活动,直接测试了这一假设。我们发现,个体的 TBW 与他们的左顶叶 IAF 显著相关,即更快的 IAF 对应于更窄的 TBW。此外,我们发现,在同一左顶叶区域测量的更高的刺激前 alpha 功率与非同时性的更真实反应相关,这可能是由于感知同时性的准确性,或者,根据最近的建议,从更保守(高 alpha 功率)到更自由(低 alpha 功率)的反应偏差的转变来解释。我们提出,alpha 周期的长度限制了感知过程发生的时间分辨率。

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