从婴儿期到幼儿期慢振荡-主轴耦合的发展。

Eva-Maria Kurz, Lisa Bastian, Matthias Mölle, Jan Born, Manuela Friedrich
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引用次数: 0

摘要

睡眠已被证明从生命早期起就支持记忆的形成。慢振荡(so)与纺锤波的精确时间耦合已被认为是促进丘脑皮质网络巩固过程的机制。在这里,我们通过比较2-3个月大的婴儿(n = 31)和14-17个月大的幼儿(n = 49)在午睡期间的额叶、中央和顶叶脑电图记录,研究了睡眠纺锤波和SOs的发展及其坐标相互作用。不同年龄组的梭形波和梭形波在地形、振幅和密度上表现出不同的成熟模式。值得注意的是,纺锤体- so共同发生在婴儿中没有超过偶然水平,只有在幼儿中增加到显著水平。在婴儿中,额皮质区域上的慢速SO甚至与纺锤波的显著减少有关,而幼儿中纺锤波的增加与成人形成鲜明对比。这些结果表明,在婴儿早期睡眠期间,丘脑皮质网络的加工过程不成熟,可能会降低这个年龄段依赖睡眠的记忆形成的功效。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Development of slow oscillation-spindle coupling from infancy to toddlerhood.

Sleep has been demonstrated to support memory formation from early life on. The precise temporal coupling of slow oscillations (SOs) with spindles has been suggested as a mechanism facilitating this consolidation process in thalamocortical networks. Here, we investigated the development of sleep spindles and SOs and their coordinate interplay by comparing frontal, central, and parietal electroencephalogram recordings during a nap between infants aged 2-3 months (n = 31) and toddlers aged 14-17 months (n = 49). Spindles and SOs showed quite different maturational patterns between age groups, as to topography, amplitude, and density. Notably, spindle-SO co-occurrence in the infants did not exceed chance levels and was increased to significant levels only in the toddlers. In the infants, the slow SO upstate over frontocortical regions was even associated with a significant decrease in spindles, contrasting with the adult-like increase in spindles seen in toddlers. These results point to an immature processing in thalamocortical networks during sleep in early infancy, possibly diminishing the efficacy of sleep-dependent memory formation at this age.

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