LEICI-Departamento de Electrotecnia, Universidad Nacional de La Plata and Consejo de Investigaciones Científicas y Técnicas (CONICET), CC 91 (1900) La Plata, Argentina.
Physiol Meas. 2010 Oct;31(10):S183-98. doi: 10.1088/0967-3334/31/10/S03. Epub 2010 Sep 10.
Insulating electrodes, also known as capacitive electrodes, allow acquiring biopotentials without galvanic contact with the body. They operate with displacement currents instead of real charge currents, and the electrolytic electrode-skin interface is replaced by a dielectric film. The use of insulating electrodes is not the end of electrode interface problems but the beginning of new ones: coupling capacitances are of the order of pF calling for ultra-high input impedance amplifiers and careful biasing, guarding and shielding techniques. In this work, the general requirements of front ends for capacitive electrodes are presented and the different contributions to the overall noise are discussed and estimated. This analysis yields that noise bounds depend on features of the available devices as current and voltage noise, but the final noise level also depends on parasitic capacitances, requiring a careful shield and printed circuit design. When the dielectric layer is placed on the skin, the present-day amplifiers allow achieving noise levels similar to those provided by wet electrodes. Furthermore, capacitive electrode technology allows acquiring high quality ECG signals through thin clothes. A prototype front end for capacitive electrodes was built and tested. ECG signals were acquired with these electrodes in direct contact with the skin and also through cotton clothes 350 µm thick. They were compared with simultaneously acquired signals by means of wet electrodes and no significant differences were observed between both output signals.
绝缘电极,也称为电容电极,允许在与身体无电流接触的情况下获取生物电势。它们通过位移电流而不是实际的电荷电流工作,并且电解电极-皮肤界面被介电膜取代。使用绝缘电极不是电极接口问题的结束,而是新问题的开始:耦合电容的数量级为 pF,需要超高输入阻抗放大器和仔细的偏置、保护和屏蔽技术。在这项工作中,提出了用于电容电极的前端的一般要求,并讨论和估计了对整体噪声的不同贡献。这种分析表明,噪声界限取决于可用器件的特性,如电流和电压噪声,但最终的噪声水平也取决于寄生电容,需要仔细的屏蔽和印刷电路板设计。当介电层放置在皮肤上时,现代放大器允许实现与湿电极提供的相似的噪声水平。此外,电容电极技术允许通过薄衣服获取高质量的 ECG 信号。已经构建并测试了用于电容电极的原型前端。通过这些电极与皮肤直接接触以及通过 350 µm 厚的棉衣服采集 ECG 信号,并通过湿电极同时采集信号进行比较,两者的输出信号没有明显差异。