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听觉双稳态感知的时间动态与基础瞳孔大小的波动相关。

Temporal dynamics of auditory bistable perception correlated with fluctuation of baseline pupil size.

机构信息

NTT Communication Science Laboratories, NTT Corporation, Atsugi, Japan.

出版信息

Psychophysiology. 2022 Aug;59(8):e14028. doi: 10.1111/psyp.14028. Epub 2022 Feb 28.

Abstract

A dynamic neural network change, accompanied by cognitive shifts such as internal perceptual alternation in bistable stimuli, is reconciled by the discharge of noradrenergic locus coeruleus neurons. Transient pupil dilation as a consequence of the reconciliation with the neural network in bistable perception has been reported to precede the reported perceptual alternation. Here, we found that baseline pupil size, an index of temporal fluctuation of arousal level over a longer range of timescales than that for the transient pupil changes, relates to the frequency of perceptual alternation in auditory bistability. Baseline pupil size was defined as the mean pupil diameter over a period of 1 s prior to the task requirement (i.e., before the observation period for counting the perceptual alternations in Experiment 1 and reporting whether participants experienced the perceptual alternations in Experiment 2). The results showed that the baseline pupil size monotonically increased with an increasing number of perceptual alternations and its occurrence probability. Furthermore, a cross-correlation analysis indicates that baseline pupil size predicted perceptual alternation at least 35 s before the behavioral response and that the overall correspondence between pupil size and perceptual alternation was maintained over a sustained time window of 45 s at minimum. The overall results suggest that variability of baseline pupil size reflects the stochastic dynamics of arousal fluctuation in the brain related to bistable perception.

摘要

一个动态神经网络的变化,伴随着认知的转变,如双稳态刺激中的内部感知交替,被去甲肾上腺素能蓝斑核神经元的放电协调。在双稳态知觉中与神经网络协调一致,会导致瞳孔短暂扩张,据报道,这种扩张先于感知交替。在这里,我们发现,作为觉醒水平在较长时间尺度上的时间波动的指标的基线瞳孔大小,与听觉双稳态中的感知交替频率有关。基线瞳孔大小被定义为任务要求之前的 1 秒内的平均瞳孔直径(即实验 1 中用于计算感知交替的观察期之前和实验 2 中报告参与者是否经历了感知交替的时间)。结果表明,基线瞳孔大小与感知交替的次数及其发生概率呈单调递增关系。此外,交叉相关分析表明,基线瞳孔大小至少在行为反应前 35 秒预测了感知交替,并且瞳孔大小和感知交替之间的整体一致性至少在 45 秒的持续时间窗口内保持。总体结果表明,基线瞳孔大小的可变性反映了与双稳态知觉相关的大脑觉醒波动的随机动力学。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3e65/9541800/7f5961fb9e60/PSYP-59-e14028-g003.jpg

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