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A novel stimulus artifact removal technique for high-rate electrical stimulation.

机译:一种用于高速电刺激的新型刺激神器去除技术。

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摘要

Electrical stimulus artifact corrupting electrophysiological recordings often makes the subsequent analysis of the underlying neural response difficult. This is particularly evident when investigating short-latency neural activity in response to high-rate electrical stimulation. We developed and evaluated an off-line technique for the removal of stimulus artifact from electrophysiological recordings. Pulsatile electrical stimulation was presented at rates of up to 5000pulses/s during extracellular recordings of guinea pig auditory nerve fibers. Stimulus artifact was removed by replacing the sample points at each stimulus artifact event with values interpolated along a straight line, computed from neighbouring sample points. This technique required only that artifact events be identifiable and that the artifact duration remained less than both the inter-stimulus interval and the time course of the action potential. We have demonstrated that this computationally efficient sample-and-interpolate techniqueremoves the stimulus artifact with minimal distortion of the action potential waveform. We suggest that this technique may have potential applications in a range of electrophysiological recording systems.
机译:电刺激伪影破坏了电生理记录,通常会使后续的神经反应分析变得困难。当研究响应高速电刺激的短时延神经活动时,这一点尤其明显。我们开发并评估了一种从电生理记录中去除刺激伪影的离线技术。在豚鼠听神经纤维的细胞外记录过程中,脉冲电刺激的速率高达5000pulses / s。通过将每个刺激伪影事件处的采样点替换为从相邻采样点计算出的沿直线内插的值,可以消除刺激伪影。该技术仅要求可识别伪影事件,并且伪影持续时间保持小于刺激间隔和动作电位的时间进程。我们已经证明,这种计算有效的采样和插值技术以最小的动作电位波形失真消除了刺激伪影。我们建议该技术可能在一系列电生理记录系统中具有潜在的应用。

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