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Respiratory-related evoked potentials during sleep in children.

机译:儿童睡眠期间与呼吸有关的诱发电位。

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STUDY OBJECTIVES: The respiratory related evoked potential (RREP) has been previously recorded in children and adults during wakefulness and in adults during sleep. However, there have been no data on RREP during sleep in children. We thus examined children during sleep to determine whether early RREP components would be maintained during all sleep DESIGN AND PARTICIPANTS: Twelve healthy, nonsnoring children, aged 5-12 years, screened by polysomnography and found to have no sleep disorders were assessed during stage 2 sleep, slow wave sleep, and REM sleep. Brief occlusions were presented via an occlusion valve at the inspiratory port of a non-rebreathing valve as interruptions of inspiration. EEG responses were averaged and assessed for the presence of early and late RREP components. RESULTS: Robust early components were seen in the majority of subjects in all sleep stages. Late components were also present, although with some apparent differences compared to those previously reported in adults (using the same recording protocol and an almost identical method of stimulus presentation). Specifically, N350 and N550 were less readily differentiated as separate components, and the N550 did not display the clear anterior-posterior amplitude gradient that is ubiquitous in adults. CONCLUSION: Cortical processing of respiratory-related information persists throughout sleep in children. The pattern of activation in the late components appear to reflect differences in the structure of the developing brain prior to the process of dendritic pruning associated with adolescence.
机译:研究目的:以前在儿童和成人的清醒期间以及在成年人的睡眠期间都记录了与呼吸有关的诱发电位(RREP)。但是,目前尚无有关儿童睡眠期间RREP的数据。因此,我们对儿童进行了检查,以确定是否在所有睡眠过程中都能维持早期RREP组成。设计和参与者:12位健康,不打s的儿童,年龄5-12岁,经多导睡眠图筛查,发现在第二阶段的睡眠中未发现任何睡眠障碍,慢波睡眠和REM睡眠。短暂的阻塞是通过非呼吸阀的吸气口处的阻塞阀引起的,因为吸入中断。对EEG反应进行平均,并评估早期和晚期RREP成分的存在。结果:在所有睡眠阶段的大多数受试者中均观察到了健壮的早期成分。还存在后期成分,尽管与以前在成人中报道的成分相比有一些明显的差异(使用相同的记录方案和几乎相同的刺激表示方法)。具体而言,N350和N550不易区分为单独的组件,并且N550并未显示出成年人普遍存在的清晰的前后振幅梯度。结论:儿童整个睡眠过程中,皮质对呼吸相关信息的处理一直持续。后期成分的激活模式似乎反映了与青春期相关的树突修剪过程之前发育中的大脑结构的差异。

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