新生儿咔嗒声诱发耳声发射的评估:时间窗的影响。

G Tognola, F Grandori, P Ravazzani
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引用次数: 15

摘要

本研究的目的是探讨时间窗对点击诱发耳声发射(ceoae)的影响;466例足月婴儿的ceoae被纳入研究。根据默认的ILO88响应窗口(2.5-20 ms)获取数据。由于ceoae是时变信号,因此每个发射都通过小波变换(WT)进行分析,这种技术可以同时表示信号的时间和频率特征。通过小波变换,可以提取化合物发射的基本频率成分的时间模式。评估了时间窗对每个单一发射组分的影响:在2.5-17.5 ms范围内计算了6个2.5 ms长的时间窗的均方根和相关值。结果表明,rms和相关性随时间变化不恒定,但在特定的时间窗内达到最大值,这取决于成分的频率。对于低频成分,相关性通常在10-12.5 ms之间有最大值,而高频成分的最大值在5 ms左右。在12.5 ms以上,所有频率分量的相关性都大大降低。因此,对默认ILO88窗口(2.5-20 ms)和窗口2.5-12.5 ms的性能进行比较表明,对于1.5-6 kHz范围内的所有频率,相关性在统计上都有显著改善。对于低于1.5 kHz的频率,由于受到残余背景噪声的污染,没有观察到任何改善。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evaluation of click evoked otoacoustic emissions in newborns: effects of time-windowing.

The objective of this study was to investigate the effects of time-windowing on click evoked otoacoustic emissions (CEOAEs); 466 CEOAEs from full-term babies were considered. Data were acquired according to the default ILO88 response window (2.5-20 ms). Because CEOAEs are time-varying signals, each emission was analysed by means of the wavelet transform (WT), a technique which allows a simultaneous representation of the time and frequency features of a signal. By means of the WT it was possible to extract the temporal pattern of the elementary frequency components of the compound emissions. The effects of time-windowing were evaluated on each single emission component: rms and correlation values were computed from six 2.5-ms long time windows in the 2.5-17.5 ms range. Results indicated that both rms and correlation were not constant with time but reached a maximum in specific time-windows, depending on the frequency of the component. For low-frequency components, the correlation typically had a maximum in the interval 10-12.5 ms, whereas high-frequency components had a maximum around 5 ms. Above 12.5 ms, the correlation was greatly decreased for all frequency components. As a result, the comparison between the performance of the default ILO88 window (2.5-20 ms) and the window 2.5-12.5 ms showed that for all frequencies in the 1.5-6 kHz range there was a statistically significant improvement in the correlation. No improvement was observed for frequencies below 1.5 kHz because of their contamination by the residual background noise.

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