School of Electrical and Information Engineering, University of Sydney, Australia.
Physiol Meas. 2013 Sep;34(9):991-1012. doi: 10.1088/0967-3334/34/9/991. Epub 2013 Aug 14.
We present an innovative bio-potential front-end capable of recording true unipolar ECG leads for the first time without making use of the Wilson central terminal. In addition to the convenience in applications such as continuous monitoring and rapid diagnosis, the information in unipolar recordings may yield unique diagnostic information as it avoids the need to essentially subtract data or make use of the averaging effect imposed from the Wilson central terminal. The system also allows direct, real-time software calculation of signals corresponding to standard ECG leads which achieve correlations in excess of 92% with a gold standard ECG during a parallel in vivo recording. In addition, the implemented circuit is wideband (0.05-1000 Hz), compatible with standard (Ag/AgCl) bio-potential electrodes, and dry (paste-less) textile electrodes. The circuit is also low power, requiring less than 50 mW (when powered at 12 V) per standard ECG lead (two channels required). It is therefore well suited for wearable, long-term applications.
我们提出了一种创新的生物电位前端,能够首次在不使用威尔逊中心终端的情况下记录真正的单极 ECG 导联。除了在连续监测和快速诊断等应用中更加方便之外,单极记录中的信息可能会提供独特的诊断信息,因为它避免了从威尔逊中心终端本质上减去数据或利用平均效应的需要。该系统还允许直接实时软件计算与标准 ECG 导联相对应的信号,在体内并行记录期间,与金标准 ECG 的相关性超过 92%。此外,所实现的电路具有宽带(0.05-1000 Hz),与标准(Ag/AgCl)生物电位电极兼容,并且是干式(无粘贴)纺织电极。该电路还具有低功耗特性,每个标准 ECG 导联(需要两个通道)的功耗小于 50 mW(当用 12 V 供电时)。因此,它非常适合可穿戴的长期应用。