自闭症谱系障碍儿童非快速眼动睡眠阶段睡眠纺锤波的初步研究。

Midori Kawahara, Kuriko Kagitani-Shimono, Kumi Kato-Nishimura, Noboru Ohki, Masaya Tachibana, Takafumi Kato, Masako Taniike, Ikuko Mohri
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摘要

研究目的:睡眠纺锤体在多种神经元网络功能中起着至关重要的作用。纺锤体的起始和终止受丘脑网状核和丘脑皮质网络的调节,纺锤体可以作为大脑组织的指标。我们对睡眠纺锤波的参数进行了初步研究,重点研究了智力/发育商正常的自闭症谱系障碍(ASD)儿童的睡眠阶段时间分布。方法:我们对14名全面智商/发育商(≥75)正常的ASD儿童(4-10岁)和14名儿童社区样本(CS)进行了夜间多导睡眠图检查。根据Rechtschaffen和Kales标准对睡眠阶段进行评分。对这些组和确定的亚组之间的主轴参数进行量化和比较。结果:除了ASD的快速眼动(REM)睡眠持续时间较高外,ASD组和CS组的睡眠参数没有差异。两组之间的纺锤体参数没有显著差异,但ASD组的纺锤体密度分布范围更广。5名ASD儿童在3期的纺锤体密度高于2期。ASD患者3期纺锤体密度与2期纺锤体密度之比(3/2期比值)明显高于CS患者。结论:ASD儿童2期纺锤体密度较低,3期纺锤体密度相对较高,这可能是由于丘脑网状核和丘脑皮质网络成熟度不足导致的纺锤体异常生成。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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A preliminary study of sleep spindles across non-rapid eye movement sleep stages in children with autism spectrum disorder.

Study objectives: Sleep spindles play a crucial role in multiple neuronal network functions. Initiation and termination of spindles are regulated by the thalamic reticular nucleus and thalamocortical network, and the spindle can be an index for brain organization. We conducted a preliminary study of the parameters of sleep spindles, focusing on sleep-stage temporal distribution in children with autism spectrum disorder (ASD) with normal intelligence/developmental quotients.

Methods: We performed overnight polysomnography in 14 children with ASD (4-10 years) with normal full-scale intelligence quotient/developmental quotient (≥75) and 14 community samples (CS) of children. Sleep stages were scored according to the Rechtschaffen and Kales criteria. Spindle parameters were quantified and compared between these groups and the identified subgroups.

Results: Sleep parameters did not differ between the ASD and CS groups, except for a higher rate of rapid eye movement (REM) sleep duration in ASD. Spindle parameters did not significantly differ between the groups, but spindle density was distributed in a broader range in the ASD group. Five children with ASD had a higher spindle density in stage 3 than in stage 2. The ratio of spindle density in stage 3 to that in stage 2 (stage 3/2 ratio) was significantly higher in ASD than in CS cases.

Conclusions: The lower spindle density in stage 2 and relatively higher density in stage 3 in children with ASD may represent an abnormal generation of spindles due to insufficient maturation of the thalamic reticular nucleus and thalamocortical network.

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