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The Magnitude of Trial-By-Trial Neural Variability Is Reproducible over Time and across Tasks in Humans

机译:随时间推移和人类各项任务的可重复性神经元变异性的可重现性

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摘要

Numerous studies have shown that neural activity in sensory cortices is remarkably variable over time and across trials even when subjects are presented with an identical repeating stimulus or task. This trial-by-trial neural variability is relatively large in the prestimulus period and considerably smaller (quenched) following stimulus presentation. Previous studies have suggested that the magnitude of neural variability affects behavior such that perceptual performance is better on trials and in individuals where variability quenching is larger. To what degree are neural variability magnitudes of individual subjects flexible or static? Here, we used EEG recordings from adult humans to demonstrate that neural variability magnitudes in visual cortex are remarkably consistent across different tasks and recording sessions. While magnitudes of neural variability differed dramatically across individual subjects, they were surprisingly stable across four tasks with different stimuli, temporal structures, and attentional/cognitive demands as well as across experimental sessions separated by one year. These experiments reveal that, in adults, neural variability magnitudes are mostly solidified individual characteristics that change little with task or time, and are likely to predispose individual subjects to exhibit distinct behavioral capabilities.
机译:大量研究表明,即使在受试者受到相同重复刺激或任务的情况下,感觉皮质的神经活动也会随着时间的推移和整个试验而显着变化。这种试验性神经变异性在刺激前期相对较大,而在刺激呈现后则较小(被猝灭)。先前的研究表明,神经变异性的大小会影响行为,因此在试验和变异性淬灭较大的个体中,感知性能会更好。各个受试者的神经变异性大小在多大程度上是灵活的还是静态的?在这里,我们使用了成人脑电图记录来证明视觉皮层中的神经变异性幅度在不同的任务和记录时段之间非常一致。尽管各个个体的神经变异程度差异很大,但它们在具有不同刺激,时间结构和注意力/认知需求的四个任务之间以及在间隔一年的实验过程中却出奇地稳定。这些实验表明,在成年人中,神经变异性幅度主要是固定的个体特征,随任务或时间而变化不大,并且很可能使个体容易表现出不同的行为能力。

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