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Comparison of Different Shielding Methods in Acquisition of Physiological Signals

机译:不同屏蔽方法在收购生理信号中的比较

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Power line interference in the surrounding environment could usually introduce many difficulties when collecting and analyzing physiological signals. Since power line interference is usually several orders of amplitude larger than the physiological electrical signals, methods of suppressing power line interference should be considered during the signal acquisition. Many studies used a hardware or software band-stop filter to suppress power line interference but it could easily cause attenuations and distortions to the signal of interest. In this study, two kinds of methods that used different signals to drive the shields of the electrodes were proposed to reduce the impacts of power line interference. Three channels of two physiological signals (ECG and EMG) were simultaneously collected when the electrodes were not shielded (No-Shield), shielded by ground signals (GND-Shield) and shielded by buffered signals of the corresponding electrodes (Active-Shield), respectively, on a custom hardware platform based on TI ADS1299. The results showed that power line interference would be significantly suppressed when using shielding approaches, and the Active-Shield method could achieve the best performance with a power line interference reduction up to 36dB. The study suggested that the Active-Shield method at the analog front-end was a great candidate to reduce power line interference in routine acquisitions of physiological signals.
机译:在收集和分析生理信号时,周围环境中的电力线干扰通常可能会引入许多困难。由于电力线干扰通常比生理电信号大的几个幅度,因此应在信号采集期间考虑抑制电力线干扰的方法。许多研究使用硬件或软件带停止过滤器来抑制电力线干扰,但它很容易导致感兴趣的信号的衰减和扭曲。在本研究中,提出了两种使用不同信号来驱动电极屏蔽的方法,以减少电力线干扰的影响。当电极未屏蔽(无屏蔽)时同时收集三个两个生理信号(ECG和EMG)的通道,通过接地信号(GND-SHIELL)屏蔽并被相应电极的缓冲信号(主动屏蔽)屏蔽,基于TI ADS1299的自定义硬件平台分别。结果表明,在使用屏蔽方法时会显着抑制电力线干扰,并且主动屏蔽方法可以实现最佳性能,电力线干扰减少高达36dB。该研究表明,模拟前端的主动屏蔽方法是降低生理信号常规采集中的电力线干扰的伟大候选者。

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