在视觉触觉刺激的非同时判断中,单感觉区和多感觉区之间的功能连通性更强。

IF 2.8 2区 心理学 Q2 NEUROSCIENCES
M K Huntley, A Nguyen, M A Albrecht, W Marinovic
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引用次数: 0

摘要

多感觉整合是一种自动过程,发生在大脑的单感觉和多感觉区域。虽然多感觉整合通常通过同时性判断任务来量化,该任务测量了多感觉整合的时间绑定窗口,但对与该任务相关的神经过程知之甚少。在26名参与者中,我们使用脑电图测量了同时性判断任务中顶叶-枕叶、顶叶-中央和中央-枕叶区域之间的功能连通性。我们的目的是比较与同时和非同时感知相关的连接模式,这对于计算时间绑定窗口很重要。我们的研究结果表明,当个体将视触觉刺激视为非同时刺激时,在beta频率上的功能连通性在顶叶-枕叶、顶叶-中枢和中央-枕叶区域之间更强。然而,只有顶叶-中央和中央-枕部区域的θ和α频率的连通性更强。在θ和α频率中,更强的连通性可能与检测和编码跨模态刺激之间的时间动态变化有关,而在β频率中,更强的连通性可能与同时刺激的预期违反有关。总的来说,我们的研究结果表明,在刺激呈现期间和之后立即发生的单感觉和多感觉神经区域之间的功能连接对同时性的感知很重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Functional Connectivity Is Stronger Between Unisensory and Multisensory Regions for Nonsimultaneous Judgments of Visual-Tactile Stimuli.

Functional Connectivity Is Stronger Between Unisensory and Multisensory Regions for Nonsimultaneous Judgments of Visual-Tactile Stimuli.

Functional Connectivity Is Stronger Between Unisensory and Multisensory Regions for Nonsimultaneous Judgments of Visual-Tactile Stimuli.

Functional Connectivity Is Stronger Between Unisensory and Multisensory Regions for Nonsimultaneous Judgments of Visual-Tactile Stimuli.

Multisensory integration is an automatic process that occurs across unisensory and multisensory areas of the brain. Although multisensory integration is often quantified using the simultaneity judgment task, which measures the temporal binding window for multisensory integration, little is known about the neural processes associated with the task. In 26 participants, we used electroencephalography to measure functional connectivity between parietal-occipital, parietal-central, and central-occipital regions during the simultaneity judgment task. Our aim was to compare connectivity patterns associated with simultaneous and nonsimultaneous perception, which is important for calculating the temporal binding window. Our results show that functional connectivity in the beta frequency was stronger between parietal-occipital, parietal-central, and central-occipital regions when individuals perceived visual-tactile stimuli as nonsimultaneous than simultaneous. However, connectivity was only stronger in the theta and alpha frequencies for parietal-central and central-occipital regions. Stronger connectivity in the theta and alpha frequencies is likely associated with detecting and encoding changes in temporal dynamics between cross-modal stimuli, and in the beta frequency, stronger connectivity is likely related to a violation of expectancy for simultaneous stimuli. Overall, our findings demonstrate that functional connectivity between unisensory and multisensory neural regions occurring during and immediately following stimulus presentation is important for the perception of simultaneity.

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来源期刊
Psychophysiology
Psychophysiology 医学-神经科学
CiteScore
6.80
自引率
8.10%
发文量
225
审稿时长
2 months
期刊介绍: Founded in 1964, Psychophysiology is the most established journal in the world specifically dedicated to the dissemination of psychophysiological science. The journal continues to play a key role in advancing human neuroscience in its many forms and methodologies (including central and peripheral measures), covering research on the interrelationships between the physiological and psychological aspects of brain and behavior. Typically, studies published in Psychophysiology include psychological independent variables and noninvasive physiological dependent variables (hemodynamic, optical, and electromagnetic brain imaging and/or peripheral measures such as respiratory sinus arrhythmia, electromyography, pupillography, and many others). The majority of studies published in the journal involve human participants, but work using animal models of such phenomena is occasionally published. Psychophysiology welcomes submissions on new theoretical, empirical, and methodological advances in: cognitive, affective, clinical and social neuroscience, psychopathology and psychiatry, health science and behavioral medicine, and biomedical engineering. The journal publishes theoretical papers, evaluative reviews of literature, empirical papers, and methodological papers, with submissions welcome from scientists in any fields mentioned above.
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