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Longitudinal sleep EEG trajectories indicate complex patterns of adolescent brain maturation

机译:纵向睡眠EEG轨迹表示青少年脑成熟的复杂模式

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long-standing evidence indicates that, during adolescence, the human brain undergoes a pervasive reorganization, which appears to be driven by synaptic elimination (13). A prominent electro-physiological manifestation of adolescent brain reorganization is a well-documented decline in the 1-4 Hz (delta) EEG of non-rapid eye movement (NREM) sleep (11, 17, 32, 37). In addition to its potential value as a marker of brain development, the NREM delta decline is a focus of basic sleep research because delta reflects recuperative processes of sleep (2, 11). Although less intensively studied than delta, NREM theta EEG, another major slow-wave component of NREM sleep, is similar to delta in its within-sleep dynamics, response to sleep loss (3, 21) and steep decline across adolescence (7, 22, 27, 30). Previous reports (8, 16), presented longitudinal data from our 9- and 12-yr-old cohorts (C9 and C12), which together span ages 9-18 yr. These data modified our early finding that NREM delta EEG declines linearly across childhood and adolescence, (19). Instead, we found a curvilinear decline that accelerates between ages 12-16.5 yr. In this 4.5-yr period, NREM delta power falls by a remarkable -60% (7), indicating, according to our hypothesis, an extremely high rate of synaptic elimination.
机译:长期证据表明,在青春期期间,人脑经历普遍的重组,这似乎是由突触消除(13)驱动的。青少年脑重组的突出的电生理表现是非快速眼运动(NREM)睡眠(11,17,32,37)的1-4 Hz(Delta)脑电图中有良好记录的下降。除了作为脑发展的标记的潜在价值之外,NREM Delta的下降是基本睡眠研究的焦点,因为Delta反映了睡眠的恢复过程(2,11)。虽然比delta少得多,但NREMθeeg,NREM睡眠的另一个主要慢波分量,类似于其内在睡眠中的Δ类似,响应睡眠损失(3,21)和青春期陡峭的下降(7,22 ,27,30)。以前的报告(8,16)呈现来自我们9岁和12年和12年和C12)的纵向数据,这些数据在一起9-18岁的跨度。这些数据改性我们早期发现NREM Delta EEG在儿童和青春期线性下降(19)。相反,我们发现曲线下降,增加了12-16.5岁之间的速度。在此4.5年的时间内,NREM Delta Power占据了-60%(7),表明,根据我们的假设,突触消除极高的突触率。

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