Noro Mutsumi, Anzai Daisuke, Wang Jianqing
Nagoya Institute of Technology, Nagoya 466-8555, Japan.
Healthc Technol Lett. 2017 Apr 20;4(2):64-67. doi: 10.1049/htl.2016.0083. eCollection 2017 Apr.
Wearable electrocardiogram (ECG) is attracting much attention for monitoring heart diseases in healthcare and medical applications. However, an imbalance usually exists between the contact resistances of sensing electrodes, so that a common mode noise caused by external electromagnetic field can be converted into the ECG detection circuit as a differential mode interference voltage. In this study, after explaining the mechanism of how the common mode noise is converted to a differential mode interference voltage, the authors propose a circuit with cadmium sulphide photo-resistors for cancelling the imbalance between the contact resistances and confirm its validity by simulation experiment. As a result, the authors found that the interference voltage generated at the wearable ECG can be effectively reduced to a sufficient small level.
可穿戴心电图(ECG)在医疗保健和医学应用中用于监测心脏病,正受到广泛关注。然而,传感电极的接触电阻之间通常存在不平衡,以至于由外部电磁场引起的共模噪声会作为差模干扰电压被转换到心电图检测电路中。在本研究中,在解释了共模噪声如何转换为差模干扰电压的机制之后,作者提出了一种使用硫化镉光敏电阻的电路,用于消除接触电阻之间的不平衡,并通过仿真实验证实了其有效性。结果,作者发现可穿戴心电图产生的干扰电压能够有效地降低到足够小的水平。