Development of a rapid automated binaural detection task.

IF 2.3 2区 物理与天体物理 Q2 ACOUSTICS Journal of the Acoustical Society of America Pub Date : 2025-02-01 DOI:10.1121/10.0035644
Daniel E Shub, Ken W Grant, Douglas S Brungart
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Abstract

Three different automated procedures for efficiently measuring the 500 Hz N0Sπ binaural tone detection threshold of individuals with normal audiometric thresholds were tested with 6803 subjects and the results are compared with an automated version of an existing clinical procedure. Two of these procedures resulted in substantially reduced binaural detection performance and caused a notable decrease in the reliability of the behavior of the subjects. The remaining procedure was an 18-trial yes/no procedure and the difficulty of the trials in this procedure varied in a non-monotonic manner. This procedure not only has fewer trials than the existing clinical procedure but the reliability of the estimate of threshold is improved. The average difference in threshold between this procedure and the clinical procedure was only -0.67 dB, which is likely not clinically significant. Further, only 0.35% of the 6208 subjects tested with the non-monotonic-order procedure were unable to complete the fully automated test which was better than the failure rate for the automated version of the clinical procedure. With such a low failure rate, the modified procedure appears suitable for use as a rapid tool for helping to detect functional hearing deficits that are not captured by the audiogram.

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一种快速自动双耳检测任务的开发。
对6803名受试者进行了三种不同的自动化程序,用于有效测量正常听力阈值个体的500 Hz n0sp双耳音调检测阈值,并将结果与现有临床程序的自动化版本进行了比较。其中两个程序导致双耳检测性能大大降低,并导致受试者行为的可靠性显著降低。剩下的程序是18个试验是/否程序,该程序中试验的难度以非单调的方式变化。该方法不仅比现有的临床方法试验次数少,而且提高了阈值估计的可靠性。该方法与临床方法的阈值平均差异仅为-0.67 dB,可能没有临床意义。此外,使用非单调顺序程序测试的6208名受试者中,只有0.35%的人无法完成全自动测试,这优于临床程序自动化版本的失败率。由于故障率如此之低,改进后的程序似乎适合作为一种快速工具,用于帮助检测听力图未捕获的功能性听力缺陷。
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来源期刊
CiteScore
4.60
自引率
16.70%
发文量
1433
审稿时长
4.7 months
期刊介绍: Since 1929 The Journal of the Acoustical Society of America has been the leading source of theoretical and experimental research results in the broad interdisciplinary study of sound. Subject coverage includes: linear and nonlinear acoustics; aeroacoustics, underwater sound and acoustical oceanography; ultrasonics and quantum acoustics; architectural and structural acoustics and vibration; speech, music and noise; psychology and physiology of hearing; engineering acoustics, transduction; bioacoustics, animal bioacoustics.
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