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Improvement of signal-to-interference ratio and signal-to-noise ratio in nerve cuff electrode systems

机译:改善神经袖套电极系统的信号干扰比和信噪比

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摘要

Cuff electrodes are effective for chronic electroneurogram (ENG) recording while minimizing nerve damage. However, the ENG signals are usually contaminated by electromyogram (EMG) activity from the surrounding muscles, stimulus artifacts produced by the electrical stimulation and noise generated in the first stage of the neural signal amplifier. This paper proposed a new cuff electrode to reduce the interference from EMG signals and stimulus artifacts. As a result, when an additional middle electrode was placed at the center of the cuff electrode, a significant improvement in the signal-to-interference ratio was achieved at 11% for the EMG signals and 12% for the stimulus artifacts when compared to a conventional tripolar cuff. Furthermore, a new low-noise amplifier was proposed to improve the signal-to-noise ratio. The circuit was designed based on a noise analysis to minimize the noise, and the results show that the total noise of the amplifier was below 1μV for a cuff impedance of 1 kΩ and a frequency bandwidth of 300 to 5000 Hz.
机译:袖带电极可有效记录慢性神经电图(ENG),同时最大程度地减少神经损伤。但是,ENG信号通常被周围肌肉的肌电图(EMG)活动,电刺激产生的刺激伪像以及在神经信号放大器第一阶段产生的噪声所污染。本文提出了一种新的袖带电极,以减少EMG信号和刺激伪影的干扰。结果,与袖带电极相比,当在袖带电极的中央放置一个附加的中间电极时,EMG信号的信号干扰比显着提高,刺激伪影的信号干扰比提高了12%。常规三极袖套。此外,提出了一种新型的低噪声放大器,以提高信噪比。该电路是根据噪声分析设计的,目的是将噪声降至最低,结果表明,对于袖带阻抗为1kΩ,频率带宽为300至5000 Hz的放大器,总噪声低于1μV。

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