IEEE Trans Biomed Circuits Syst. 2018 Apr;12(2):437-445. doi: 10.1109/TBCAS.2018.2796581.
This paper presents a novel two-wired active electrode that achieves ultrahigh input impedance using power supply bootstrapping. The proposed circuit reduces the input capacitance of a buffer amplifier while enabling measurements using leads with only two wires, providing a low-complexity and low-cost solution for interference rejection and artifact reduction in dc-coupled dry-contact biopotential measurements. An implemented prototype shows that, even using standard operational amplifiers, an input capacitance as low as 71 fF can be obtained, maintaining a high impedance in a 0-1 kHz bandwidth, sufficient for ECG, EEG, and EMG measurements. The circuit has a simple and easily replicable implementation that requires no individual adjustment. A common mode rejection ratio (CMRR) above 103 dB at 50 Hz was achieved and the increased rejection to interference due to the potential divider effect was experimentally tested maintaining a 92-dB CMRR at 50 Hz with a 1.2-M source impedance unbalance. ECG measurements were conducted to validate the active electrode against a traditional alternative, and a test with dry-contact EEG electrodes was successfully conducted. Although the proposed circuit is intended to acquire superficial electrophysiological signals using dry electrodes, it can be used for measurement from other high-impedance sources, such as micropipette electrodes.
本文提出了一种新颖的双线有源电极,通过电源升压实现超高输入阻抗。所提出的电路降低了缓冲放大器的输入电容,同时允许使用仅两根线的导联进行测量,为直流耦合干接触生物电势测量中的干扰抑制和伪影减少提供了一种低复杂度和低成本的解决方案。一个实现的原型表明,即使使用标准运算放大器,也可以获得低至 71 fF 的输入电容,在 0-1 kHz 的带宽内保持高阻抗,足以进行 ECG、EEG 和 EMG 测量。该电路具有简单且易于复制的实现方式,无需进行单独调整。在 50 Hz 时实现了超过 103 dB 的共模抑制比 (CMRR),并通过实验测试了由于分压器效应而增加的对干扰的抑制,在 50 Hz 时保持 92 dB 的 CMRR,源阻抗不平衡为 1.2 M。进行了 ECG 测量以验证有源电极对传统替代方案的有效性,并成功进行了干接触 EEG 电极的测试。尽管所提出的电路旨在使用干电极获取表面电生理信号,但它也可用于测量来自其他高阻抗源的信号,例如微电极。