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Wavelet transform-based methods for denoising of Coulter counter signals

机译:基于小波变换的库尔特计数器信号去噪方法

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摘要

A process based on discrete wavelet transforms is developed for denoising and baseline correction of measured signals from Coulter counters. Given signals from a particular Coulter counting experiment, which detect passage of particles through a fluid-filled microchannel, the process uses a cross-validation procedure to pick appropriate parameters for signal denoising; these parameters include the choice of the particular wavelet, the number of levels of decomposition, the threshold value and the threshold strategy. The process is demonstrated on simulated and experimental single channel data obtained from a particular multi-channel Coulter counter processing. For these example experimental signals from 20 (mu)m polymethacrylate and Cottonwood/Eastern Deltoid pollen particles and the simulated signals, denoising is aimed at removing Gaussian white noise, 60 Hz power line interference and low frequency baseline drift. The process can be easily adapted for other Coulter counters and other sources of noise. Overall, wavelets are presented as a tool to aid in accurate detection of particles in Coulter counters.
机译:开发了一种基于离散小波变换的过程,用于对来自库尔特计数器的测量信号进行降噪和基线校正。给定来自特定库尔特计数实验的信号,该实验检测颗粒通过充满流体的微通道,该过程使用交叉验证程序来选择用于信号降噪的适当参数;这些参数包括特定小波的选择,分解级别的数量,阈值和阈值策略。在从特定的多通道库尔特计数器处理获得的模拟和实验单通道数据上演示了该过程。对于这些示例性实验信号,它们来自20微米的聚甲基丙烯酸酯和三叶草/东方三角花粉的花粉颗粒,以及模拟信号,其去噪旨在消除高斯白噪声,60 Hz电源线干扰和低频基线漂移。该过程可轻松适应其他库尔特计数器和其他噪声源。总体而言,小波是一种工具,可帮助准确检测Coulter计数器中的颗粒。

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