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首页> 外文期刊>IEEE transactions on biomedical circuits and systems >Stimulus-Artifact Elimination in a Multi-Electrode System
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Stimulus-Artifact Elimination in a Multi-Electrode System

机译:多电极系统中的刺激伪影消除

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To fully exploit the recording capabilities provided by current and future generations of multi-electrode arrays, some means to eliminate the residual charge and subsequent artifacts generated by stimulation protocols is required. Custom electronics can be used to achieve such goals, and by making them scalable, a large number of electrodes can be accessed in an experiment. In this work, we present a system built around a custom 16-channel IC that can stimulate and record, within 3 ms of the stimulus, on the stimulating channel, and within 500 $mu$s on adjacent channels. This effectiveness is achieved by directly discharging the electrode through a novel feedback scheme, and by shaping such feedback to optimize electrode behavior. We characterize the different features of the system that makes such performance possible and present biological data that show the system in operation. To enable this characterization, we present a framework for measuring, classifying, and understanding the multiple sources of stimulus artifacts. This framework facilitates comparisons between artifact elimination methodologies and enables future artifact studies.
机译:为了充分利用当前和未来的多电极阵列提供的记录功能,需要一些消除刺激方案产生的残余电荷和后续伪像的方法。定制电子设备可用于实现此类目标,并且通过使其具有可伸缩性,可以在实验中访问大量电极。在这项工作中,我们提出了一个基于定制的16通道IC的系统,该IC可以在刺激后3毫秒内,在刺激通道上以及在相邻通道上500μs内刺激和记录。通过采用新颖的反馈方案直接使电极放电,以及通过对这种反馈进行整形以优化电极性能,可以实现这种效果。我们表征了使这种性能成为可能的系统的不同特征,并提供了生物学数据来显示系统的运行情况。为了实现这种表征,我们提出了一个框架,用于测量,分类和理解刺激物的多种来源。该框架促进了伪像消除方法之间的比较,并使将来的伪像研究成为可能。

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