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宫外生活对正常早产儿 aEEG 成熟的影响。

The influence of extrauterine life on the aEEG maturation in normal preterm infants.

机构信息

1st Department of Neonatology, Aristotle University of Thessaloniki, Greece.

出版信息

Early Hum Dev. 2009 Dec;85(12):761-5. doi: 10.1016/j.earlhumdev.2009.10.004. Epub 2009 Nov 17.

Abstract

OBJECTIVE

To study, the maturational changes of the amplitude-integrated electroencephalogram (aEEG) in preterm infants without neurological disorders and especially the influence of the duration of extrauterine life, over this process.

METHODS

96 preterm infants, 25-34weeks' gestational age (GA) at birth, clinically stable and without ultrasonographic evidence of neurological abnormalities, were studied. The aEEG recordings were obtained within 72 h of life and then weekly until discharge. Four aspects of each tracing (continuity, sleep-wake cycling, bandwidth, and lower border), were evaluated by visual analysis, applying pre-established criteria.

RESULTS

We analysed 624 aEEG recordings at postmenstrual age (PMA) of 25-42weeks. With advanced GA the aEEG becomes more continuous (p: 0.022), it displays definite sleep-wake cycles (p: 0.011), and its bandwidth acquires the mature pattern (p: 0.012). A positive significant interaction of GA and PMA in the evolution of aEEG was found regarding continuity (p: 0.002), sleep-wake cycling (p: 0.002), and bandwidth (p: 0.02).

CONCLUSION

The evolution of the aEEG tracing depends on both GA and PMA. The older the infants at birth the more mature the aEEG pattern. At the same PMA, preterm infants of lower GA display an advanced maturation of the aEEG comparing with others of higher GA.

摘要

目的

研究无神经发育障碍的早产儿振幅整合脑电图(aEEG)的成熟变化,特别是宫外生活时间对这一过程的影响。

方法

对 96 例胎龄 25-34 周、出生时临床稳定且无超声神经发育异常证据的早产儿进行研究。在出生后 72 小时内获得 aEEG 记录,并在每周直至出院时进行记录。通过视觉分析,应用预先设定的标准评估每个轨迹的四个方面(连续性、睡眠-觉醒循环、带宽和下边界)。

结果

我们分析了胎龄为 25-42 周的 624 次 aEEG 记录。随着胎龄的增加,aEEG 变得更加连续(p:0.022),显示出明确的睡眠-觉醒循环(p:0.011),其带宽呈现出成熟的模式(p:0.012)。在 aEEG 的连续性(p:0.002)、睡眠-觉醒循环(p:0.002)和带宽(p:0.02)方面,发现胎龄和胎龄校正后年龄之间存在显著的正交互作用。

结论

aEEG 轨迹的演变取决于胎龄和胎龄校正后年龄。出生时婴儿越成熟,aEEG 模式越成熟。在相同的胎龄校正后年龄,胎龄较低的早产儿的 aEEG 成熟度比胎龄较高的早产儿更先进。

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