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Capacitive driven-right-leg circuit design

机译:电容驱动右腿电路设计

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摘要

Capacitive electrodes allow to pick-up biopotentials through a dielectric layer, without using electrolytes. However, this technique is vulnerable to electric-field interference, mainly to common mode voltages produced by the 50 Hz power-line. A fully Capacitive Driven Right Leg (CDRL) circuit is proposed to reduce the patient common mode voltage v_(cm). The design of this circuit takes into account several factors as electrode impedance, stray coupling capacitances and amplifier transfer function response. All these parameters are addressed to ensure the circuit's stability in most biopotential acquisition scenarios. Monte Carlo analyses were performed to find the worst conditions, resulting in a maximum CDRL gain between 70 and 80 dB. The CDRL was implemented as an independent block that can be used for different applications such as ECG, EMG or EEG. Several experimental results are presented, showing good quality recordings even using SE amplifiers, an appropriate approach for multichannel acquisition systems.
机译:电容性电极允许通过介电层拾取生物电势,而无需使用电解质。但是,此技术容易受到电场干扰,主要是受到50 Hz电力线产生的共模电压的影响。提出了一种完全电容驱动的右腿(CDRL)电路,以降低患者的共模电压v_(cm)。该电路的设计考虑了几个因素,例如电极阻抗,杂散耦合电容和放大器传递函数响应。解决了所有这些参数,以确保在大多数生物电势采集方案中电路的稳定性。进行了蒙特卡洛分析以发现最差的条件,从而使最大CDRL增益在70至80 dB之间。 CDRL被实现为一个独立模块,可用于不同的应用程序,例如ECG,EMG或EEG。提出了几个实验结果,即使使用SE放大器(一种适用于多通道采集系统的合适方法),也显示了高质量的记录。

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