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微型脑电图的技术与临床分析:一种旨在急诊科记录高质量脑电图的微型无线脑电图设备。

Technical and clinical analysis of microEEG: a miniature wireless EEG device designed to record high-quality EEG in the emergency department.

作者信息

Omurtag Ahmet, Baki Samah G Abdel, Chari Geetha, Cracco Roger Q, Zehtabchi Shahriar, Fenton André A, Grant Arthur C

机构信息

Departments of Neurology, and Physiology & Pharmacology, State University of New York, Downstate Medical Center, Brooklyn, USA.

出版信息

Int J Emerg Med. 2012 Sep 24;5(1):35. doi: 10.1186/1865-1380-5-35.

Abstract

BACKGROUND

We describe and characterize the performance of microEEG compared to that of a commercially available and widely used clinical EEG machine. microEEG is a portable, battery-operated, wireless EEG device, developed by Bio-Signal Group to overcome the obstacles to routine use of EEG in emergency departments (EDs).

METHODS

The microEEG was used to obtain EEGs from healthy volunteers in the EEG laboratory and ED. The standard system was used to obtain EEGs from healthy volunteers in the EEG laboratory, and studies recorded from patients in the ED or ICU were also used for comparison. In one experiment, a signal splitter was used to record simultaneous microEEG and standard EEG from the same electrodes.

RESULTS

EEG signal analysis techniques indicated good agreement between microEEG and the standard system in 66 EEGs recorded in the EEG laboratory and the ED. In the simultaneous recording the microEEG and standard system signals differed only in a smaller amount of 60 Hz noise in the microEEG signal. In a blinded review by a board-certified clinical neurophysiologist, differences in technical quality or interpretability were insignificant between standard recordings in the EEG laboratory and microEEG recordings from standard or electrode cap electrodes in the ED or EEG laboratory. The microEEG data recording characteristics such as analog-to-digital conversion resolution (16 bits), input impedance (>100MΩ), and common-mode rejection ratio (85 dB) are similar to those of commercially available systems, although the microEEG is many times smaller (88 g and 9.4 × 4.4 × 3.8 cm).

CONCLUSIONS

Our results suggest that the technical qualities of microEEG are non-inferior to a standard commercially available EEG recording device. EEG in the ED is an unmet medical need due to space and time constraints, high levels of ambient electrical noise, and the cost of 24/7 EEG technologist availability. This study suggests that using microEEG with an electrode cap that can be applied easily and quickly can surmount these obstacles without compromising technical quality.

摘要

背景

我们描述并刻画了微型脑电图(microEEG)与一款市面上广泛使用的商用临床脑电图机器相比的性能。微型脑电图是一种便携式、电池供电的无线脑电图设备,由生物信号集团开发,旨在克服急诊科(ED)常规使用脑电图的障碍。

方法

在脑电图实验室和急诊科,使用微型脑电图从健康志愿者获取脑电图。在脑电图实验室,使用标准系统从健康志愿者获取脑电图,同时也使用从急诊科或重症监护病房(ICU)患者记录的研究数据进行比较。在一项实验中,使用信号分离器从同一电极同时记录微型脑电图和标准脑电图。

结果

脑电图信号分析技术表明,在脑电图实验室和急诊科记录的66份脑电图中,微型脑电图与标准系统之间具有良好的一致性。在同步记录中,微型脑电图和标准系统信号的差异仅在于微型脑电图信号中60赫兹噪声的量较少。在一位经过董事会认证的临床神经生理学家的盲法评估中,脑电图实验室的标准记录与急诊科或脑电图实验室中标准或电极帽电极的微型脑电图记录在技术质量或可解释性方面的差异不显著。微型脑电图的数据记录特性,如模数转换分辨率(16位)、输入阻抗(>100MΩ)和共模抑制比(85dB)与商用系统相似,尽管微型脑电图的体积要小很多倍(88克,9.4×4.4×3.8厘米)。

结论

我们的结果表明,微型脑电图的技术质量不低于标准的商用脑电图记录设备。由于空间和时间限制、高水平的环境电噪声以及脑电图技术人员全天候可用性的成本,急诊科的脑电图是一项未得到满足的医疗需求。这项研究表明,使用易于快速应用的电极帽的微型脑电图可以克服这些障碍,而不会影响技术质量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/353d/3552869/2190b46ea9eb/1865-1380-5-35-1.jpg

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