LEICI-Departamento de Electrotecnia, Universidad Nacional de La Plata CC 91 (1900) La Plata, Argentina.
Physiol Meas. 2012 Aug;33(8):1277-88. doi: 10.1088/0967-3334/33/8/1277. Epub 2012 Jul 20.
Capacitive electrodes (CEs) allow for acquiring biopotentials without galvanic contact, avoiding skin preparation and the use of electrolytic gel. The signal quality provided by present CEs is similar to that of standard wet electrodes, but they are more sensitive to electrostatic charge interference and motion artifacts, mainly when biopotentials are picked up through clothing and coupling capacitances are reduced to tens of picofarads. When artifacts are large enough to saturate the preamplifier, several seconds (up to tens) are needed to recover a proper baseline level, and during this period biopotential signals are irremediably lost. To reduce this problem, a CE that includes a fast-recovery (FR) circuit is proposed. It works directly on the coupling capacitor, recovering the amplifier from saturation while preserving ultra-high input impedance, as a CE requires. A prototype was built and tested acquiring ECG signals. Several experimental data are presented, which show that the proposed circuit significantly reduces record segment losses due to amplifier saturation when working in real environments.
电容式电极 (CE) 允许在不进行电流接触的情况下获取生物电势,避免了皮肤准备和使用电解凝胶。目前 CE 提供的信号质量与标准湿电极相似,但它们对静电电荷干扰和运动伪影更敏感,主要是当生物电势通过衣物采集并且耦合电容降低到几十皮法时。当伪影大到足以使前置放大器饱和时,需要几秒钟(多达几十秒)才能恢复适当的基线水平,在此期间,生物电势信号将不可挽回地丢失。为了解决这个问题,提出了一种包含快速恢复 (FR) 电路的 CE。它直接作用于耦合电容器,在保持超高压输入阻抗(CE 需要)的同时,使放大器从饱和中恢复。构建并测试了一个原型来获取 ECG 信号。呈现了一些实验数据,这些数据表明,当在实际环境中工作时,所提出的电路显著减少了由于放大器饱和而导致的记录片段丢失。