Aibara R, Welsh J T, Puria S, Goode R L
Department of Veterans Affairs Medical Center, 3801 Miranda Ave., MC 112-B1, Palo Alto, CA 94304, USA.
Hear Res. 2001 Feb;152(1-2):100-9. doi: 10.1016/s0378-5955(00)00240-9.
The middle-ear pressure gain, defined as the ear canal sound pressure to cochlear vestibule pressure gain, GME, and the ear canal sound pressure to stapes footplate velocity transfer function, SVTF, simultaneously measured in 12 fresh human temporal bones for the 0.05 to 10 kHz frequency range are reported. The mean GME magnitude reached 23.5 dB at 1.2 kHz with a slope of approximately 6 dB/octave from 0.1 to 1.2 kHz and -6 dB/octave above 1.2 kHz. From 0.1 to 0.5 kHz, the mean GME phase angle was 51 degrees, rolling off at -78 degrees /octave above this frequency. The mean SVTF magnitude reached a maximum of 0.33 mm s(-1)/Pa at 1.0 kHz with nearly the same shape in magnitude and phase angle as the mean GME. The ratio of GME and SVTF provide the first direct measurements of Z(c) in human ears. The mean Z(c) was virtually flat with a value of 21.1 acoustic GOmega MKS between 0.1 and 5.0 kHz. Above 5 kHz, the mean Z(c) increased to a maximum value of 49.9 GOmega at 6.7 kHz. The mean Z(c) angle was near 0 degrees from 0.5 to 5.0 kHz, decreasing below 0.5 kHz and above 5 kHz with peaks and valleys.
报告了在12块新鲜人类颞骨中,于0.05至10kHz频率范围内同时测量的中耳压力增益(定义为耳道声压与耳蜗前庭压力增益,GME)以及耳道声压与镫骨足板速度传递函数(SVTF)。平均GME幅值在1.2kHz时达到23.5dB,在0.1至1.2kHz范围内斜率约为6dB/倍频程,在1.2kHz以上为-6dB/倍频程。在0.1至0.5kHz范围内,平均GME相位角为51度,在此频率以上以-78度/倍频程下降。平均SVTF幅值在1.0kHz时达到最大值0.33mm s(-1)/Pa,其幅值和相位角形状与平均GME几乎相同。GME与SVTF的比值提供了人耳中Z(c)的首次直接测量值。平均Z(c)在0.1至5.0kHz之间实际上是平坦的,值为21.1声学欧姆MKS。在5kHz以上,平均Z(c)在6.7kHz时增加到最大值49.9欧姆。平均Z(c)角度在0.5至5.0kHz之间接近0度,在低于0.5kHz和高于5kHz时下降,有峰值和谷值。