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Estimating Extracellular Spike Waveforms from CA1 Pyramidal Cells with Multichannel Electrodes

机译:用多通道电极从CA1锥体细胞估计细胞外突波波形。

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摘要

Extracellular (EC) recordings of action potentials from the intact brain are embedded in background voltage fluctuations known as the “local field potential” (LFP). In order to use EC spike recordings for studying biophysical properties of neurons, the spike waveforms must be separated from the LFP. Linear low-pass and high-pass filters are usually insufficient to separate spike waveforms from LFP, because they have overlapping frequency bands. Broad-band recordings of LFP and spikes were obtained with a 16-channel laminar electrode array (silicone probe). We developed an algorithm whereby local LFP signals from spike-containing channel were modeled using locally weighted polynomial regression analysis of adjoining channels without spikes. The modeled LFP signal was subtracted from the recording to estimate the embedded spike waveforms. We tested the method both on defined spike waveforms added to LFP recordings, and on in vivo-recorded extracellular spikes from hippocampal CA1 pyramidal cells in anaesthetized mice. We show that the algorithm can correctly extract the spike waveforms embedded in the LFP. In contrast, traditional high-pass filters failed to recover correct spike shapes, albeit produceing smaller standard errors. We found that high-pass RC or 2-pole Butterworth filters with cut-off frequencies below 12.5 Hz, are required to retrieve waveforms comparable to our method. The method was also compared to spike-triggered averages of the broad-band signal, and yielded waveforms with smaller standard errors and less distortion before and after the spike.
机译:来自完整大脑的动作电位的细胞外(EC)记录嵌入称为“局部场电位”(LFP)的背景电压波动中。为了使用EC峰值记录来研究神经元的生物物理特性,必须将峰值波形与LFP分开。线性低通和高通滤波器通常不足以将尖峰波形与LFP分离,因为它们具有重叠的频带。 LFP和尖峰信号的宽带记录是通过16通道层状电极阵列(硅胶探针)获得的。我们开发了一种算法,其中使用不带尖峰的相邻通道的局部加权多项式回归分析对来自包含尖峰的通道的本地LFP信号进行建模。从记录中减去建模的LFP信号,以估计嵌入的尖峰波形。我们在添加到LFP记录的定义的尖峰波形上,以及在麻醉小鼠的海马CA1锥体细胞体内记录的细胞外尖峰上测试了该方法。我们证明了该算法可以正确提取嵌入在LFP中的尖峰波形。相反,传统的高通滤波器虽然会产生较小的标准误差,却无法恢复正确的尖峰形状。我们发现,需要截止频率低于12.5 Hz的高通RC或2极Butterworth滤波器来检索与我们的方法相当的波形。还将该方法与宽带信号的尖峰触发平均值进行了比较,得出的波形在尖峰前后均具有较小的标准误差和较小的失真。

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