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The Effects of the Presence of Multiple Conduction Velocities in the Analysis of Electrically-Evoked Compound Action Potentials (eCAPs)

机译:多重传导速度的存在对电诱发复合动作电位(eCAP)分析的影响

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New methods for the analysis of electrically-evoked compound action potentials (eCAPs) are described. Mammalian nerves tend to have broad multi-modal distributions of fibre diameters, which translates into a spread of conduction velocities. The method of velocity selective recording (VSR) is unable to distinguish between this spectral spread and the transfer function of the system. The concept of the velocity impulse function (VIF) is introduced as a tool to differentiate between these signal and system attributes. The new methods enable separate estimates of velocity spectral broadening and signal-to-noise ratio (SNR) to be obtained.
机译:描述了用于分析电诱发的复合动作电位(eCAP)的新方法。哺乳动物的神经倾向于具有广泛的纤维直径多峰分布,这转化为传导速度的扩散。速度选择性记录(VSR)方法无法区分此频谱扩展和系统的传递函数。引入了速度脉冲函数(VIF)的概念,作为区分这些信号和系统属性的工具。新方法可以分别获得速度谱展宽和信噪比(SNR)的估计值。

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