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An optimal filtering technique to reduce the influence of low-frequency noise on click-evoked otoacoustic emissions

机译:减少低频噪声对诱发咔哒声发射的影响的最佳滤波技术

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摘要

There is a need for methods capable of increasing the detectability of transient-evoked otoacoustic emissions (TEOAE). Detection of an emission is based commonly on either visual inspection and cross-correlation between replicate recordings or cross-spectral analysis. Performance of these methods is obviously influenced by the residual noise level. Residual noise is often of low frequency and can be reduced by digital off-line filtering. For this purpose, an optimal high-pass filtering technique is proposed. Cross-correlation between replicates of TEOAEs was used to determine the cut-off frequency that maximizes the signal-to-noise (S/N) ratio. This is shown in a series of responses characterized by various S/N ratios. Data have been scored both visually and with quantitative methods before and after the use of high-pass filtering. The capability to detect the signal was increased with only a marginal decrease in the total power of the emissions.
机译:需要能够增加瞬态诱发的耳声发射(TEOAE)的可检测性的方法。排放物的检测通常基于目视检查以及重复记录或互谱分析之间的互相关。这些方法的性能显然受到残余噪声水平的影响。残留噪声通常是低频的,可以通过数字离线滤波来降低。为此,提出了一种最佳的高通滤波技术。使用TEOAE复制品之间的互相关来确定使信噪比(S / N)最大的截止频率。在以各种信噪比为特征的一系列响应中可以看出这一点。在使用高通滤波之前和之后,已经通过视觉和定量方法对数据进行了评分。检测信号的能力得到了提高,而排放的总功率仅略有下降。

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