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首页> 外文期刊>Clinical neurophysiology >High-fidelity recording of brain activity in the extremely preterm babies: feasibility study in the incubator.
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High-fidelity recording of brain activity in the extremely preterm babies: feasibility study in the incubator.

机译:高保真记录极端早产儿的大脑活动:在孵化器中的可行性研究。

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摘要

OBJECTIVE: To develop an electrode cap with high number of electrodes for recording very small preterm babies, to assess the physiological stress imposed by the application of this cap on babies, and to estimate what added information could be potentially obtained with more electrodes in this age group. METHODS: We recruited eleven extremely small preterm babies (conceptional age 25-29 weeks) to record their EEG with a custom-tailored high-density EEG cap (20 channels), coupled with a Full-band EEG amplifier. Physiological stress caused by the cap placement was assessed by recording heart rate and arterial oxygen saturation before and during EEG cap placement, as well as before and during a routine care procedure of the given baby. The quality of novel information obtained with this system was assessed by comparing the full signal to a set of EEG signals where we deliberately distorted and omitted major signal components to make it appear as in the conventional EEG systems. RESULTS: The changes in heart rate or oxygen saturation caused by the cap placement are fully comparable to the changes seen after any normal care procedure in the same baby. Our recordings did also reveal that brain activity in the small premies is highly focal, and often confined to only one or two electrodes. Hence it cannot be pertinently localized with the currently used low number of recording electrodes. Moreover, recordings from babies with focal intracerebral hemorrhages showed that changes after vascular insults are clearly more prominent and hence easier to detect visually from multichannel recordings. CONCLUSIONS: Recording of high-fidelity EEG (high-density caps and FbEEG system) is practical in the incubator environment, and the application of a proper EEG cap is not more stressful to the baby than a routine care procedure. Moreover, these achievable amendments in the recording system seem to disclose major physiological and pathological signal components in the as yet poorly explored patient group. SIGNIFICANCE: Introduction of a technically feasible and physically gentle enough EEG recording system will enable further development of clinical neurophysiological understanding, as well as the design of pertinent brain monitors, which is urgently needed in these patients.
机译:目的:开发一种带有大量电极的电极帽,用于记录非常小的早产婴儿,评估使用该电极帽对婴儿施加的生理压力,并估计在该年龄段使用更多电极可能获得的附加信息组。方法:我们招募了11个极小的早产婴儿(受孕年龄在25-29周之间),以定制的高密度脑电图帽(20个通道)以及一个全频段脑电图放大器来记录他们的脑电图。通过记录心电图和放置EEG之前,期间以及给定婴儿的常规护理程序期间和期间的心率和动脉血氧饱和度,评估由放置帽子引起的生理压力。通过将整个信号与一组EEG信号进行比较,评估了使用该系统获得的新颖信息的质量,在这些信号中,我们故意使主要信号分量失真并省略了这些信号,以使其像常规EEG系统中那样出现。结果:放置帽子引起的心率或血氧饱和度变化完全可与同一名婴儿进行任何常规护理后所见的变化相当。我们的录音的确也揭示了小场所的大脑活动高度集中,并且通常仅限于一两个电极。因此,它不能恰当地定位在当前使用的少量记录电极上。此外,来自局灶性脑出血婴儿的录音显示,血管损伤后的变化明显更为明显,因此更容易从多通道录音中进行视觉检测。结论:在保育箱环境中记录高保真脑电图(高密度瓶盖和FbEEG系统)是可行的,并且使用适当的EEG瓶盖对婴儿的压力并不比常规护理程序更大。此外,在记录系统中这些可实现的修正似乎揭示了尚未开发的患者组中的主要生理和病理信号成分。重要性:引入技术上可行且身体上足够柔和的EEG记录系统将有助于进一步发展临床神经生理学理解,以及相关患者监护仪的设计,这是这些患者迫切需要的。

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