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非周期性脑电图预测视觉时间处理的变异性。

Aperiodic EEG Predicts Variability of Visual Temporal Processing.

作者信息

Deodato Michele, Melcher David

机构信息

Psychology Program, Division of Science, New York University Abu Dhabi, Abu Dhabi, United Arab Emirates

Psychology Program, Division of Science, New York University Abu Dhabi, Abu Dhabi, United Arab Emirates.

出版信息

J Neurosci. 2024 Oct 2;44(40):e2308232024. doi: 10.1523/JNEUROSCI.2308-23.2024.

Abstract

The human brain exhibits both oscillatory and aperiodic, or 1/, activity. Although a large body of research has focused on the relationship between brain rhythms and sensory processes, aperiodic activity has often been overlooked as functionally irrelevant. Prompted by recent findings linking aperiodic activity to the balance between neural excitation and inhibition, we investigated its effects on the temporal resolution of perception. We recorded electroencephalography (EEG) from participants (both sexes) during the resting state and a task in which they detected the presence of two flashes separated by variable interstimulus intervals. Two-flash discrimination accuracy typically follows a sigmoid function whose steepness reflects perceptual variability or inconsistent integration/segregation of the stimuli. We found that individual differences in the steepness of the psychometric function correlated with EEG aperiodic exponents over posterior scalp sites. In other words, participants with flatter EEG spectra (i.e., greater neural excitation) exhibited increased sensory noise, resulting in shallower psychometric curves. Our finding suggests that aperiodic EEG is linked to sensory integration processes usually attributed to the rhythmic inhibition of neural oscillations. Overall, this correspondence between aperiodic neural excitation and behavioral measures of sensory noise provides a more comprehensive explanation of the relationship between brain activity and sensory integration and represents an important extension to theories of how the brain samples sensory input over time.

摘要

人类大脑同时表现出振荡性和非周期性,即1/f活动。尽管大量研究聚焦于脑节律与感觉过程之间的关系,但非周期性活动常常被视为功能上无关紧要而被忽视。受近期将非周期性活动与神经兴奋和抑制之间的平衡联系起来的研究结果的启发,我们研究了其对感知时间分辨率的影响。我们在静息状态以及一项任务中记录了参与者(男女皆有)的脑电图(EEG),在该任务中他们要检测由可变刺激间隔分隔的两次闪光的出现情况。双闪光辨别准确率通常遵循一个S形函数,其陡峭程度反映了感知变异性或刺激的不一致整合/分离。我们发现,心理测量函数陡峭程度的个体差异与头皮后部位置的脑电图非周期性指数相关。换句话说,脑电图频谱较平坦(即神经兴奋更强)的参与者表现出感觉噪声增加,导致心理测量曲线更平缓。我们的发现表明,非周期性脑电图与通常归因于神经振荡节律性抑制的感觉整合过程有关。总体而言,非周期性神经兴奋与感觉噪声行为测量之间的这种对应关系为脑活动与感觉整合之间的关系提供了更全面的解释,并代表了对大脑如何随时间对感觉输入进行采样的理论的重要扩展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b308/11450528/93b97f97a2b7/jneuro-44-e2308232024-g001.jpg

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