RWTH Aachen University, Aachen 52074, Germany.
IEEE Trans Biomed Eng. 2011 May;58(5):1268-77. doi: 10.1109/TBME.2010.2100393. Epub 2010 Dec 20.
Capacitive biopotential measurements suffer from strong motion artifacts, which may result in long time periods during which a reliable measurement is not possible. This study examines contact electrification and triboelectricity as possible reasons for these artifacts and discusses local triboelectric effects on the electrode-body interface as well as global electrostatic effects as common-mode interferences. It will be shown that most probably the triboelectric effects on the electrode-body interface are the main reason for artifacts, and a reduction of artifacts can only be achieved with a proper design of the electrode-body interface. For a deeper understanding of the observed effects, a mathematical model for triboelectric effects in highly isolated capacitive biopotential measurements is presented and verified with experiments. Based on these analyses of the triboelectric effects on the electrode-body interface, different electrode designs are developed and analyzed in order to minimize artifacts due to triboelectricity on the electrode-body interface.
容性生物电势测量会受到强烈的运动伪迹的影响,这可能导致在很长一段时间内无法进行可靠的测量。本研究探讨了接触起电和摩擦起电作为这些伪迹的可能原因,并讨论了电极-体界面上的局部摩擦电效应以及作为共模干扰的全局静电效应。研究结果表明,电极-体界面上的摩擦电效应很可能是伪迹的主要原因,只有通过适当设计电极-体界面才能减少伪迹。为了更深入地了解观察到的效应,提出了一个用于高度隔离的容性生物电势测量中的摩擦电效应的数学模型,并通过实验进行了验证。基于对电极-体界面上的摩擦电效应的这些分析,开发并分析了不同的电极设计,以最小化由于电极-体界面上的摩擦电而产生的伪迹。