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氙气可降低镇静状态下健康新生猪的振幅整合脑电图(aEEG)背景电压活动,同时维持心血管稳定性。

Xenon depresses aEEG background voltage activity whilst maintaining cardiovascular stability in sedated healthy newborn pigs.

作者信息

Sabir Hemmen, Wood Thomas, Gill Hannah, Liu Xun, Dingley John, Thoresen Marianne

机构信息

School of Clinical Sciences, University of Bristol, St Michael's Hospital, Bristol, United Kingdom; Departments of General Pediatrics, Neonatology and Pediatric Cardiology, University Children's Hospital, Düsseldorf, Heinrich-Heine University Düsseldorf, Germany.

Department of Physiology, Institute of Basic Medical Sciences, University of Oslo, Oslo, Norway.

出版信息

J Neurol Sci. 2016 Apr 15;363:140-4. doi: 10.1016/j.jns.2016.02.051. Epub 2016 Feb 21.

Abstract

BACKGROUND

Changes in electroencephalography (EEG) voltage range are used to monitor the depth of anaesthesia, as well as predict outcome after hypoxia-ischaemia in neonates. Xenon is being investigated as a potential neuroprotectant after hypoxic-ischaemic brain injury, but the effect of Xenon on EEG parameters in children or neonates is not known. This study aimed to examine the effect of 50% inhaled Xenon on background amplitude-integrated EEG (aEEG) activity in sedated healthy newborn pigs.

METHODS

Five healthy newborn pigs, receiving intravenous fentanyl sedation, were ventilated for 24 h with 50%Xenon, 30%O2 and 20%N2 at normothermia. The upper and lower voltage-range of the aEEG was continuously monitored together with cardiovascular parameters throughout a 1 h baseline period with fentanyl sedation only, followed by 24 h of Xenon administration.

RESULTS

The median (IQR) upper and lower aEEG voltage during 1 h baseline was 48.0 μV (46.0-50.0) and 25.0 μV (23.0-26.0), respectively. The median (IQR) aEEG upper and lower voltage ranges were significantly depressed to 21.5 μV (20.0-26.5) and 12.0 μV (12.0-16.5) from 10 min after the onset of 50% Xenon administration (p=0.002). After the initial Xenon induced depression in background aEEG voltage, no further aEEG changes were seen over the following 24h of ventilation with 50% xenon under fentanyl sedation. Mean arterial blood pressure and heart rate remained stable.

CONCLUSION

Mean arterial blood pressure and heart rate were not significantly influenced by 24h Xenon ventilation. 50% Xenon rapidly depresses background aEEG voltage to a steady ~50% lower level in sedated healthy newborn pigs. Therefore, care must be taken when interpreting the background voltage in neonates also receiving Xenon.

摘要

背景

脑电图(EEG)电压范围的变化用于监测麻醉深度,以及预测新生儿缺氧缺血后的预后。氙气正在作为缺氧缺血性脑损伤后的一种潜在神经保护剂进行研究,但氙气对儿童或新生儿脑电图参数的影响尚不清楚。本研究旨在探讨50%吸入氙气对镇静状态下健康新生猪背景振幅整合脑电图(aEEG)活动的影响。

方法

五只接受静脉注射芬太尼镇静的健康新生猪,在正常体温下用50%氙气、30%氧气和20%氮气通气24小时。在仅使用芬太尼镇静的1小时基线期内,持续监测aEEG的上下电压范围以及心血管参数,随后进行24小时的氙气给药。

结果

1小时基线期内aEEG上下电压的中位数(四分位间距)分别为48.0μV(46.0 - 50.0)和25.0μV(23.0 - 26.0)。从50%氙气给药开始10分钟后,aEEG上下电压范围的中位数(四分位间距)显著降低至21.5μV(20.0 - 26.5)和12.0μV(12.0 - 16.5)(p = 0.002)。在最初氙气引起背景aEEG电压降低后,在芬太尼镇静下用50%氙气通气的接下来24小时内,未观察到aEEG有进一步变化。平均动脉血压和心率保持稳定。

结论

24小时氙气通气对平均动脉血压和心率无显著影响。50%氙气可使镇静状态下健康新生猪的背景aEEG电压迅速降低至稳定的约低50%水平。因此,在解读同时接受氙气治疗的新生儿的背景电压时必须谨慎。

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