Gruetzmann Anna, Hansen Stefan, Müller Jörg
Department of Micro System Technology, Hamburg University of Technology, Eissendorfer Strasse 42, 21073 Hamburg, Germany.
Physiol Meas. 2007 Nov;28(11):1375-90. doi: 10.1088/0967-3334/28/11/005. Epub 2007 Oct 12.
The development, fabrication and characterization of two novel dry bioelectrodes--conductive and capacitive ones--for biopotential monitoring are presented. The new electrodes have the potential to improve the applicability of dry electrodes in ambulant recording of ECG by reducing motion artifacts as well as the contact impedance to the skin. Furthermore, a passive filter network is integrated into the new electrodes to suppress slow offset fluctuation of the ECG signal caused e.g. by motions like breathing or changes in the electrode-skin interface properties. Compared to standard gel electrodes these new electrodes exhibit equivalent and superior contact impedances and biosignals. The integrated filter network effectively suppresses fluctuating offset potentials.
本文介绍了两种用于生物电位监测的新型干式生物电极——导电电极和电容电极的开发、制造及特性。新电极有潜力通过减少运动伪迹以及降低与皮肤的接触阻抗,来提高干式电极在动态心电图记录中的适用性。此外,新电极集成了一个无源滤波网络,以抑制例如由呼吸等运动或电极-皮肤界面特性变化引起的心电图信号缓慢偏移波动。与标准凝胶电极相比,这些新电极具有相当且更优的接触阻抗和生物信号。集成的滤波网络能有效抑制波动的偏移电位。