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September 24, 2012International Journal of Emergency Medicine29 citationsOpen Access

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

AOAhmet OmurtagSBSamah G. Abdel BakiGCGeetha Chari

Structured PICO

Is the technical quality of the microEEG device non-inferior to a standard clinical EEG machine in healthy volunteers and ED/ICU patients?

P
Population
Healthy volunteers in the EEG laboratory and emergency department (ED), and patients in the ED or ICU
I
Intervention
microEEG (a portable, battery-operated, wireless EEG device)
C
Comparator
Standard commercially available clinical EEG machine
O
Outcome
Technical quality and interpretability of EEG signalssurrogate

The microEEG device provides non-inferior technical quality compared to standard EEG machines, potentially facilitating routine EEG use in emergency departments.

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.

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Cite This Study

Omurtag et al. (2012) studied this question.

synapsesocial.com/papers/6a21737cdb71e1dfcf8b6b90https://doi.org/10.1186/1865-1380-5-35
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