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首页> 外文期刊>IEEE Transactions on Biomedical Engineering >Optimal discrimination and classification of neuronal action potential waveforms from multiunit, multichannel recordings using software-based linear filters
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Optimal discrimination and classification of neuronal action potential waveforms from multiunit, multichannel recordings using software-based linear filters

机译:使用基于软件的线性滤波器从多单位,多通道记录中对神经元动作电位波形进行最佳区分和分类

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Describes advanced protocols for the discrimination and classification of neuronal spike waveforms within multichannel electrophysiological recordings. The programs are capable of detecting and classifying the spikes from multiple, simultaneously active neurons, even in situations where there is a high degree of spike waveform superposition on the recording channels. The protocols are based on the derivation of an optimal linear filter for each individual neuron. Each filter is tuned to selectively respond to the spike waveform generated by the corresponding neuron, and to attenuate noise and the spike waveforms from all other neurons. The protocol is essentially an extension of earlier work (S. Andreassen et al., 1979; W.M. Roberts and D.K. Hartline, 1975; R.B. Stein et al., 1979). However, the protocols extend the power and utility of the original implementations in two significant respects. First, a general single-pass automatic template estimation algorithm was derived and implemented. Second, the filters were implemented within a software environment providing a greatly enhanced functional organization and user interface. The utility of the analysis approach was demonstrated on samples of multiunit electrophysiological recordings from the cricket abdominal nerve cord.
机译:描述了区分和分类多通道电生理记录中神经元尖峰波形的高级协议。该程序能够检测和分类来自多个同时活动的神经元的尖峰信号,即使在记录通道上尖峰波形叠加程度很高的情况下也是如此。该协议基于每个神经元的最佳线性滤波器的推导。调整每个滤波器以选择性地响应由相应神经元生成的尖峰波形,并衰减来自所有其他神经元的噪声和尖峰波形。该协议实质上是对早期工作的扩展(S. Andreassen等,1979; W.M. Roberts and D.K. Hartline,1975; R.B. Stein等,1979)。但是,协议在两个重要方面扩展了原始实现的功能和实用性。首先,推导并实现了通用的单遍自动模板估计算法。其次,过滤器是在软件环境中实现的,从而大大增强了功能组织和用户界面。在approach腹神经索的多单位电生理记录样本中证明了该分析方法的实用性。

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