Jesteadt Walt, Walker Sara M, Ogun Oluwaseye A, Ohlrich Brenda, Brunette Katyarina E, Wróblewski Marcin, Schmid Kendra K
Center for Hearing Research, Boys Town National Research Hospital, Omaha, Nebraska 68131, USA.
Department of Biostatistics, College of Public Health, University of Nebraska Medical Center, Omaha, Nebraska 68198, USA.
J Acoust Soc Am. 2017 Sep;142(3):1597. doi: 10.1121/1.5003778.
Listeners with normal hearing (NH) and sensorineural hearing loss (SNHL) were asked to compare pairs of noise stimuli and choose the louder noise in each pair. Each noise was made up of 15, two-ERB (equivalent rectangular bandwidth) wide frequency bands that varied independently over a 12-dB range from one presentation to the next. Mean levels of the bands followed the long-term average speech spectrum (LTASS) or were set to 43, 51, or 59 dB sound pressure level (SPL). The relative contribution of each band to the total loudness of the noise was determined by computing the correlation between the difference in levels for a given band on every trial and the listener's decision on that trial. Weights for SNHL listeners were governed by audibility and the spectrum of the noise stimuli, with bands near the spectral peak of the LTASS noise receiving greatest weight. NH listeners assigned greater weight to the lowest and highest bands, an effect that increased with overall level, but did not assign greater weight to bands near the LTASS peak. Additional loudness-matching and paired-comparison studies using stimuli missing one of the 15 bands showed a significant contribution by the highest band, but properties other than loudness may have contributed to the decisions.
研究人员要求听力正常(NH)和感音神经性听力损失(SNHL)的受试者比较多对噪声刺激,并在每对中选择响度更大的噪声。每段噪声由15个等效矩形带宽(ERB)的频带组成,这些频带在每次呈现时会在12分贝的范围内独立变化。这些频带的平均水平遵循长期平均语音频谱(LTASS),或者设置为43、51或59分贝声压级(SPL)。通过计算每次试验中给定频带的电平差异与受试者在该试验中的判断之间的相关性,来确定每个频带对噪声总响度的相对贡献。SNHL受试者的权重受可听性和噪声刺激频谱的影响,LTASS噪声频谱峰值附近的频带权重最大。NH受试者对最低和最高频带赋予更大的权重,这种效应会随着整体电平的增加而增强,但不会对LTASS峰值附近的频带赋予更大的权重。使用缺少15个频带之一的刺激进行的额外响度匹配和配对比较研究表明,最高频带具有显著贡献,但除响度外可能还有其他特性影响了判断。