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平均听觉脑干反应振幅和潜伏期估计的准确性。

Accuracy of averaged auditory brainstem response amplitude and latency estimates.

作者信息

Madsen Sara M K, Harte James M, Elberling Claus, Dau Torsten

机构信息

a Department of Electrical Engineering, Hearing Systems Group , Technical University of Denmark , Lyngby , Denmark and.

b Interacoustics A/S , Interacoustics Research Unit , Lyngby , Denmark.

出版信息

Int J Audiol. 2018 May;57(5):345-353. doi: 10.1080/14992027.2017.1381770. Epub 2017 Oct 3.

Abstract

OBJECTIVE

The aims were to 1) establish which of the four algorithms for estimating residual noise level and signal-to-noise ratio (SNR) in auditory brainstem responses (ABRs) perform better in terms of post-average wave-V peak latency and amplitude errors and 2) determine whether SNR or noise floor is a better stop criterion where the outcome measure is peak latency or amplitude.

DESIGN

The performance of the algorithms was evaluated by numerical simulations using an ABR template combined with electroencephalographic (EEG) recordings obtained without sound stimulus. The suitability of a fixed SNR versus a fixed noise floor stop criterion was assessed when variations in the wave-V waveform shape reflecting inter-subject variation was introduced.

STUDY SAMPLE

Over 100 hours of raw EEG noise was recorded from 17 adult subjects, under different conditions (e.g. sleep or movement).

RESULTS

ABR feature accuracy was similar for the four algorithms. However, it was shown that a fixed noise floor leads to higher ABR wave-V amplitude accuracy; conversely, a fixed SNR yields higher wave-V latency accuracy.

CONCLUSION

Similar performance suggests the use of the less computationally complex algorithms. Different stop criteria are recommended if the ABR peak latency or the amplitude is the outcome measure of interest.

摘要

目的

目标是1)确定在听觉脑干反应(ABR)中用于估计残余噪声水平和信噪比(SNR)的四种算法中,哪种算法在平均后V波峰潜伏期和幅度误差方面表现更好,以及2)确定在结果测量为峰潜伏期或幅度时,信噪比还是本底噪声是更好的停止标准。

设计

通过数值模拟评估算法的性能,使用ABR模板结合在无声音刺激情况下获得的脑电图(EEG)记录。当引入反映个体间差异的V波波形形状变化时,评估固定信噪比与固定本底噪声停止标准的适用性。

研究样本

从17名成年受试者在不同条件下(如睡眠或运动)记录了超过100小时的原始EEG噪声。

结果

四种算法的ABR特征准确性相似。然而,结果表明固定本底噪声会导致更高的ABR V波幅度准确性;相反,固定信噪比会产生更高的V波潜伏期准确性。

结论

相似的性能表明应使用计算复杂度较低的算法。如果ABR峰潜伏期或幅度是感兴趣的结果测量指标,则建议使用不同的停止标准。

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