Haberman Marcelo Alejandro, Spinelli Enrique Mario
CONICET and UNLP, Dto. Electrotecnia, CC 91 (1900) La Plata, Argentina.
IEEE Trans Biomed Circuits Syst. 2012 Dec;6(6):614-8. doi: 10.1109/TBCAS.2012.2190733.
Single ended (SE) amplifiers allow implementing biopotential front-ends with a reduced number of parts, being well suited for preamplified electrodes or compact EEG headboxes. On the other hand, given that each channel has independent gain; mismatching between these gains results in poor common-mode rejection ratios (CMRRs) (about 30 dB considering 1% tolerance components). This work proposes a scheme for multichannel EEG acquisition systems based on SE amplifiers and a novel digital driven right leg (DDRL) circuit, which overcome the poor CMRR of the front-end stage providing a high common mode reduction at power line frequency (up to 80 dB). A functional prototype was built and tested showing the feasibility of the proposed technique. It provided EEG records with negligible power line interference, even in very aggressive EMI environments.
单端(SE)放大器允许使用较少数量的部件来实现生物电位前端,非常适合预放大电极或紧凑型脑电图头盒。另一方面,由于每个通道具有独立增益,这些增益之间的不匹配会导致共模抑制比(CMRR)较差(考虑1%容差元件时约为30 dB)。本文提出了一种基于SE放大器和新型数字驱动右腿(DDRL)电路的多通道脑电图采集系统方案,该方案克服了前端级CMRR较差的问题,在电力线频率下提供了高共模抑制(高达80 dB)。构建并测试了一个功能原型,证明了所提出技术的可行性。即使在非常恶劣的电磁干扰环境中,它也能提供电力线干扰可忽略不计的脑电图记录。