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精确的时间安排解释了训练后睡眠依赖性听觉失配负波增强的原因。

Precise timing accounts for posttraining sleep-dependent enhancements of the auditory mismatch negativity.

作者信息

Atienza M, Cantero J L, Quian Quiroga R

机构信息

University Pablo de Olavide, Carretera de Utrera, Seville, Spain.

出版信息

Neuroimage. 2005 Jun;26(2):628-34. doi: 10.1016/j.neuroimage.2005.02.014. Epub 2005 Mar 19.

Abstract

Memory consolidation is a long-lasting dynamic process by which new acquired information is transformed at different analysis levels, from molecules to cognition, without additional practice. Results from a previous study on event-related potentials (ERPs) suggest that part of the neural events promoting changes in the electrophysiological correlates of enhanced automatization in a sound discrimination task occur during sleep. These data were reanalyzed in the present study at the single-trial level, and results indicated that the first night of sleep succeeding training is absolutely required to improve the timing consistency of cortical neural assemblies involved in automatic sound-change detection, as revealed by a significant reduction in the latency-jitter of the MMN response across trials. This change in the regularity of the brain response to previously trained sounds facilitated involuntary switch of attention towards the same sounds when they were task irrelevant, as reflected by the P3a emergence after posttraining sleep. Both responses were, however, prevented in subjects deprived of sleep the night following training in the sound discrimination task. We hypothesize that the reduction in the MMN latency-jitter, which, in turn, triggered an automatic shift of attention, might result from a change in synaptic efficacy and/or neural excitability, rather than from changes in firing synchronization and/or size of representation.

摘要

记忆巩固是一个持久的动态过程,通过这个过程,新获取的信息在从分子到认知的不同分析层面上进行转化,无需额外练习。先前一项关于事件相关电位(ERP)的研究结果表明,在声音辨别任务中,促进自动化增强的电生理相关性变化的部分神经事件发生在睡眠期间。在本研究中,对这些数据进行了单试次水平的重新分析,结果表明,训练后的第一个睡眠夜晚对于改善参与自动声音变化检测的皮质神经集合的时间一致性是绝对必要的,这一点通过跨试次MMN反应潜伏期抖动的显著减少得以体现。大脑对先前训练声音的反应规律性的这种变化,促进了在任务不相关时对相同声音的注意力的非自愿转移,这在训练后睡眠后的P3a出现中得到了反映。然而,在声音辨别任务训练后的夜晚被剥夺睡眠的受试者中,这两种反应都被阻止了。我们假设,MMN潜伏期抖动的减少,进而引发了注意力的自动转移,可能是由于突触效能和/或神经兴奋性的变化,而不是由于放电同步性和/或表征大小的变化。

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