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顶叶 α-TMS 因果调节时间顺序判断:视觉中离散时间窗口的证据。

Occipital alpha-TMS causally modulates temporal order judgements: Evidence for discrete temporal windows in vision.

机构信息

Université de Toulouse, UPS, Centre de Recherche Cerveau et Cognition, 31052 Toulouse, France; CerCo, CNRS UMR 5549, 31052 Toulouse, France.

Médicine Physique et de réadaption, CHU Rangueil, 31062 Toulouse, France.

出版信息

Neuroimage. 2021 Aug 15;237:118173. doi: 10.1016/j.neuroimage.2021.118173. Epub 2021 May 15.

Abstract

Recent advances in neuroscience have challenged the view of conscious visual perception as a continuous process. Behavioral performance, reaction times and some visual illusions all undergo periodic fluctuations that can be traced back to oscillatory activity in the brain. These findings have given rise to the idea of a discrete sampling mechanism in the visual system. In this study we seek to investigate the causal relationship between occipital alpha oscillations and Temporal Order Judgements using neural entrainment via rhythmic TMS in 18 human subjects (9 females). We find that certain phases of the entrained oscillation facilitate temporal order perception of two visual stimuli, whereas others hinder it. Our findings support the idea that the visual system periodically compresses information into discrete packages within which temporal order information is lost. SIGNIFICANCE STATEMENT: Neural entrainment via TMS serves as a valuable tool to interfere with cortical rhythms and observe changes in perception. Here, using α-rhythmic TMS-pulses, we demonstrate the effect of the phase of entrained oscillations on performance in a temporal order judgment task. In extension of previous work, we 1. causally influenced brain rhythms far more directly using TMS, and 2. showed that previous results on discrete perception cannot simply be explained by rhythmic fluctuations in visibility. Our findings support the idea that the temporal organization of visual processing is discrete rather than continuous, and is causally modulated by cortical rhythms. To our knowledge, this is the first study providing causal evidence via TMS for an endogenous periodic modulation of time perception.

摘要

神经科学的最新进展挑战了意识视觉感知是一个连续过程的观点。行为表现、反应时间和一些视觉错觉都经历周期性波动,这些波动可以追溯到大脑中的振荡活动。这些发现引发了视觉系统中存在离散采样机制的想法。在这项研究中,我们试图通过在 18 名人类受试者(9 名女性)中使用节律性 TMS 进行神经同步来研究枕叶α 振荡与时间顺序判断之间的因果关系。我们发现,同步振荡的某些相位有助于两个视觉刺激的时间顺序感知,而其他相位则会阻碍它。我们的发现支持这样一种观点,即视觉系统周期性地将信息压缩成离散的数据包,在这些数据包中,时间顺序信息会丢失。

意义陈述

TMS 通过神经同步可作为一种有价值的工具,用于干扰皮质节律并观察感知变化。在这里,我们使用α 节律 TMS 脉冲,演示了同步振荡相位对时间顺序判断任务中表现的影响。在以前工作的基础上,我们 1. 更直接地通过 TMS 对大脑节律产生因果影响,2. 表明以前关于离散感知的结果不能简单地用可见度的节律波动来解释。我们的发现支持这样一种观点,即视觉处理的时间组织是离散的而不是连续的,并且受到皮质节律的因果调节。据我们所知,这是第一项通过 TMS 为时间感知的内源性周期性调制提供因果证据的研究。

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