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Preserved sleep microstructure in blind individuals

机译:盲人保存睡眠微观结构

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The loss of vision, particularly when it occurs early in life, is associated with compensatory cortical plasticity not only in the visual cortical areas, but throughout the entire brain. The absence of visual input to the retina can also induce changes in entrainment of the circadian rhythm, as light is the primary zeitgeber of the master biological clock found in the suprachiasmatic nucleus of the hypothalamus. In addition, a greater number of sleep disturbances is often reported in blind individuals. Here, we examined various electroencephalographic microstructural components of sleep, both during rapid-eye-movement (REM) sleep and non-REM (NREM) sleep, between blind individuals, including both of early and late onset, and normal-sighted controls. During wakefulness, occipital alpha oscillations were lower, or absent in blind individuals. During sleep, differences were observed across electrode derivations between the early and late blind samples, which may reflect altered cortical networking in early blindness. Despite these differences in power spectra density, the electroencephalography microstructure of sleep, including sleep spindles, slow wave activity, and sawtooth waves, remained present in the absence of vision. (c) 2017 Elsevier B.V. All rights reserved.
机译:丧失视力丧失,特别是当它在生命早期发生时,不仅与视觉皮质区域的补偿皮层可塑性有关,而且在整个大脑中有关。没有视觉输入的视觉输入也可以诱导昼夜节律的螺母的变化,因为光是在下丘脑的寄生虫核的母系生物钟的主要典型者。此外,盲人中经常报告更多的睡眠障碍。在这里,我们检查了睡眠中的睡眠中的各种脑电图组件(REM)睡眠和非REM(NREM)睡眠,包括早期和晚期开始,以及正常视力的对照。在清醒中,枕骨α振荡在盲人中较低或缺席。在睡眠期间,在早期和晚期盲目样本之间的电极衍生中观察到差异,这可能反映早期失明的改变的皮质网络。尽管具有这些功率谱密度的差异,但睡眠的脑电图微观结构,包括睡眠主轴,慢波活动和锯齿波,仍然存在于没有视觉的情况下。 (c)2017 Elsevier B.v.保留所有权利。

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