Poling Gayla L, Siegel Jonathan H, Lee Jungmee, Lee Jungwha, Dhar Sumitrajit
The Roxelyn and Richard Pepper Department of Communication Sciences and Disorders, Northwestern University, 2240 Campus Drive, Evanston, Illinois 60208.
Biostatistics Collaboration Center, Department of Preventive Medicine, Northwestern University, 680 North Lake Shore Drive, Suite 1400, Chicago, Illinois 60611.
J Acoust Soc Am. 2014 Jan;135(1):287-99. doi: 10.1121/1.4845415.
Distortion-product otoacoustic emission (DPOAE) fine structure and component characteristics are reported between 0.75 and 16 kHz in 356 clinically normal hearing human subjects ages 10 to 65 yr. Stimulus tones at 55/40, 65/55, and 75/75 dB SPL were delivered using custom designed drivers and a calibration method that compensated for the depth of insertion of the otoacoustic emission (OAE) probe in the ear canal. DPOAE fine structure depth and spacing were found to be consistent with previous reports with depth varying between 3 and 7 dB and average spacing ratios (f/Δf) between 15 and 25 depending on stimulus level and frequency. In general, fine structure depth increased with increasing frequency, likely due to a diminishing difference between DPOAE component levels. Fine structure spacing became wider with increasing age above 8 kHz. DPOAE components were extracted using the inverse fast Fourier transform method, adhering to a strict signal to noise ratio criterion for clearer interpretation. Component data from four age groups between 18 and 55 yr old were available for the stimulus levels of 75/75 dB SPL. The age groups could be differentiated with greater than 90% accuracy when using the level of the component presumed to originate from the DPOAE characteristic frequency place. This accuracy held even for frequencies at and below 4 kHz where the age groups exhibited similar average hearing thresholds.
在356名年龄在10至65岁之间的临床听力正常的人类受试者中,报告了0.75至16kHz之间的畸变产物耳声发射(DPOAE)精细结构和成分特征。使用定制设计的驱动器和一种校准方法来提供55/40、65/55和75/75dB SPL的刺激音,该校准方法补偿了耳声发射(OAE)探头在耳道中的插入深度。发现DPOAE精细结构的深度和间距与先前的报告一致,深度在3至7dB之间变化,平均间距比(f/Δf)在15至25之间,具体取决于刺激水平和频率。一般来说,精细结构深度随频率增加而增加,这可能是由于DPOAE成分水平之间的差异减小。在8kHz以上,随着年龄增长,精细结构间距变宽。使用快速傅里叶逆变换方法提取DPOAE成分,遵循严格的信噪比标准以进行更清晰的解释。对于75/75dB SPL的刺激水平,可获得18至55岁四个年龄组的成分数据。当使用假定源自DPOAE特征频率位置的成分水平时,年龄组的区分准确率大于90%。即使在4kHz及以下频率,各年龄组表现出相似的平均听力阈值时,这种准确率依然成立。