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Spectral cancellation of microstimulation artifact for simultaneous neural recording in situ

机译:微刺激伪影的光谱消除,可同时进行原位神经记录

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摘要

A fundamental technical hurdle in systems neurophysiology has been to record the activity of individual neurons in situ while using microstimulation to activate inputs or outputs. Stimulation artifact at the recording electrode has largely limited the usefulness of combined stimulating and recording to using single stimulation pulses (e.g., orthodromic and antidromic activation) or to presenting brief trains of pulses to look for transient responses (e.g., paired-pulse stimulation). Using an adaptive filter, we have developed an on-line method that allows continuous extracellular isolation of individual neuron spikes during sustained experimental microstimulation. We show that the technique accurately and robustly recovers neural spikes from stimulation-corrupted records. Moreover, we demonstrate that the method should generalize to any recording situation where a stereotyped, triggered transient might obscure a neural event.
机译:在系统神经生理学中,一项基本的技术障碍是在使用微刺激激活输入或输出的同时记录单个神经元的活动。记录电极处的刺激伪像已极大地限制了组合刺激和记录的用途,只能使用单个刺激脉冲(例如,正畸和反drodromic激活)或呈现简短的脉冲序列以寻找瞬态响应(例如,成对脉冲刺激)。使用自适应滤波器,我们开发了一种在线方法,该方法可以在持续的实验性微刺激过程中对单个神经元尖峰进行连续的细胞外分离。我们表明,该技术准确而稳健地从受刺激的记录中恢复了神经尖峰。此外,我们证明了该方法应适用于定型的,触发的瞬态可能掩盖神经事件的任何记录情况。

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