Brown Lindsay, van de Molengraft Jef, Yazicioglu Refet Firat, Torfs Tom, Penders Julien, Van Hoof Chris
Holst Centre / IMEC-NL, High Tech Campus 31, 5656 AE Eindhoven, The Netherlands.
Annu Int Conf IEEE Eng Med Biol Soc. 2010;2010:4197-200. doi: 10.1109/IEMBS.2010.5627393.
Micro- and nano-technology has enabled development of smaller and smarter wearable devices for medical and lifestyle related applications. In particular, recent advances in EEG monitoring technologies pave the way for wearable, wireless EEG monitoring devices. Here, a low-power wireless EEG sensor platform that measures 8-channels of EEG, is described. The platform is integrated into a wearable headset for ambulatory monitoring of EEG. While using standard EEG electrodes without conductive gel, a first evaluation shows the wireless headset is comparable to the reference system when looking at alpha wave discrimination. This device combines low-noise, and low-power functionality into an easy-to-use wireless headset, providing a first step towards a fully integrated, fully functional wearable wireless EEG monitoring system.
微纳技术推动了用于医疗和生活方式相关应用的更小、更智能的可穿戴设备的发展。特别是,脑电图(EEG)监测技术的最新进展为可穿戴无线EEG监测设备铺平了道路。本文描述了一种测量8通道EEG的低功耗无线EEG传感器平台。该平台集成到可穿戴头带中,用于动态监测EEG。在使用无导电凝胶的标准EEG电极时,首次评估表明,在观察阿尔法波辨别能力时,该无线头带与参考系统相当。该设备将低噪声和低功耗功能集成到一个易于使用的无线头带中,朝着完全集成、功能齐全的可穿戴无线EEG监测系统迈出了第一步。