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首页> 外文期刊>Journal of Neuroscience Methods >A purposely designed neural signal amplifier for short interval stimulation and recording microneurography using a common electrode.
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A purposely designed neural signal amplifier for short interval stimulation and recording microneurography using a common electrode.

机译:专门设计的神经信号放大器,用于短间隔刺激并使用公共电极记录微神经图。

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摘要

'Common Electrode' microneurography (i.e. stimulating a nerve and recording return afferent neural activity through the same microelectrode facilitates investigation of linkages between sensory and motor nervous systems in humans. Currently there is no commercial product designed specifically to conduct common electrode microneurography experiments. However, such experiments would advance investigations in several key areas including spinal injury research. In this paper, we report on the successful production and testing (on a human subject) of an integrated amplifier built specifically for this purpose. The amplifier was built using commercially available components to allow for both easy and economical manufacture. In particular, we report on the design requirements and outline our chosen design solutions. The amplifier handles low-level neural signals amidst large 50 Hz interference, with protection against potentially high stimulation voltages of over 100 V dc, with minimal cross-coupling of rapidstimulus pulses onto the high gain amplifier's input, and a short 'blocking' time between stimulation and recording. The amplifier also includes necessary filters, selectable gains and internal stimulator triggering circuits to provide a simple, integrated solution for common electrode operation on human subjects.
机译:“共电极”微神经造影术(即通过同一微电极刺激神经并记录返回传入神经活动)有助于研究人类感觉神经系统和运动神经系统之间的联系。目前尚无专门设计用于进行共电极微神经造影术实验的商业产品。这样的实验将推动包括脊髓损伤研究在内的几个关键领域的研究,在本文中,我们报道了专门为此目的制造的集成放大器的成功生产和测试(在人体上)。为了方便和经济地制造,特别是,我们报告了设计要求并概述了我们选择的设计解决方案该放大器处理50 Hz大干扰下的低电平神经信号,并能防止超过100 V的潜在高激励电压直流电,交叉最小快速刺激脉冲耦合到高增益放大器的输入,并且刺激和记录之间的“阻塞”时间短。该放大器还包括必要的滤波器,可选增益和内部刺激器触发电路,以为人类受试者的普通电极操作提供简单,集成的解决方案。

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