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The application of adaptive step threshold method in fluorescence signal detection

机译:自适应步长阈值方法在荧光信号检测中的应用

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The microfluidic fluorescence detection system's strengths are high sensitivity and easy operability, nevertheless it may also be more vulnerable to electronic circuit, ambient light, quenching effect which can influence the quality of the signal detection by adding noise. In order to improve the efficiency of the fluorescence detection system, eliminating noises from the signal is a significant step. In this paper, an adaptive step thresholding (Adaptive Step Thresholding, AST) denoising method based on wavelet analysis is proposed. According to the features of the fluorescent protein signal, noise is spread over a high frequency band of signal. The new methods is applied to the high-frequency components obtained by wavelet decomposing the signal and update threshold adaptively. The experimental results show that the AST sloves the weakness of the constant deviation by traditional wavelet threshold denoising and increases the Signal - to - Noise Ratio(SNR) of the denoising fluorescent protein signal, it provides a practical application value for the weak signal denoising.
机译:微流体荧光检测系统的优点是高灵敏度和易于可操作性,也可以更容易受到电子电路,环境光,通过添加噪声来影响信号检测质量的淬火效果。为了提高荧光检测系统的效率,从信号中消除噪声是一个很大的步骤。本文提出了一种基于小波分析的自适应步骤阈值(自适应步长阈值,AST)去噪方法。根据荧光蛋白信号的特征,噪声在信号的高频带上铺展。新方法应用于通过自适应地分解信号和更新阈值的小波获得的高频分量。实验结果表明,AST通过传统小波阈值去噪恒定偏差的弱点,并增加了去噪荧光蛋白信号的信噪比(SNR),为弱信号去噪提供了实际应用价值。

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