Department of Technical Sciences, The NCO Academy, 10100 Balikesir, Turkey.
Comput Intell Neurosci. 2010;2010:630649. doi: 10.1155/2010/630649. Epub 2010 Feb 2.
The aim of this study is to present some practical state-of-the-art considerations in acquiring satisfactory signals for electroencephalographic signal acquisition. These considerations are important for users and system designers. Especially choosing correct electrode and design strategy of the initial electronic circuitry front end plays an important role in improving the system's measurement performance. Considering the pitfalls in the design of biopotential measurement system and recording session conditions creates better accuracy. In electroencephalogram (EEG) recording electrodes, system electronics including filtering, amplifying, signal conversion, data storing, and environmental conditions affect the recording performance. In this paper, EEG electrode principles and main points of electronic noise reduction methods in EEG signal acquisition front end are discussed, and some suggestions for improving signal acquisition are presented.
本研究旨在介绍一些获取满意脑电图信号的实用最新考虑因素。这些考虑因素对用户和系统设计人员都很重要。特别是选择正确的电极和初始电子电路前端的设计策略对于提高系统的测量性能起着重要作用。考虑生物电位测量系统设计和记录会话条件中的陷阱可以提高准确性。在脑电图(EEG)记录电极中,系统电子设备(包括滤波、放大、信号转换、数据存储和环境条件)会影响记录性能。本文讨论了脑电图电极原理以及脑电图信号采集前端电子噪声降低方法的要点,并提出了一些改进信号采集的建议。