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Gerbil middle-ear sound transmission from 100 Hz to 60 kHz

机译:Gerbil中耳声音传输从100 Hz到60 kHz

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摘要

Middle-ear sound transmission was evaluated as the middle-ear transfer admittance >H>MY (the ratio of stapes velocity to ear-canal sound pressure near the umbo) in gerbils during closed-field sound stimulation at frequencies from 0.1 to 60 kHz, a range that spans the gerbil’s audiometric range. Similar measurements were performed in two laboratories. The >H>MY magnitude (a) increased with frequency below 1 kHz, (b) remained approximately constant with frequency from 5 to 35 kHz, and (c) decreased substantially from 35 to 50 kHz. The >H>MY phase increased linearly with frequency from 5 to 35 kHz, consistent with a 20–29 μs delay, and flattened at higher frequencies. Measurements from different directions showed that stapes motion is predominantly pistonlike except in a narrow frequency band around 10 kHz. Cochlear input impedance was estimated from >H>MY and previously-measured cochlear sound pressure. Results do not support the idea that the middle ear is a lossless matched transmission line. Results support the ideas that (1) middle-ear transmission is consistent with a mechanical transmission line or multiresonant network between 5 and 35 kHz and decreases at higher frequencies, (2) stapes motion is pistonlike over most of the gerbil auditory range, and (3) middle-ear transmission properties are a determinant of the audiogram.
机译:中耳传声被评估为沙鼠在闭合期间的中耳传递导纳> H > MY (骨速度与附近的耳道声压之比)在0.1到60 kHz的频率范围内进行场声刺激,该范围跨越了沙鼠的听力范围。在两个实验室进行了类似的测量。 > H > MY 幅度(a)在低于1 kHz的频率下增加,(b)在5到35 kHz的频率下保持大致恒定,并且(c)从35降低很多至50 kHz。 > H > MY 相位随频率从5到35 kHz线性增加,与20–29μs的延迟一致,并在较高的频率下趋于平坦。从不同方向进行的测量表明,除了在10 kHz左右的窄频带内,钉运动主要呈活塞状。耳蜗输入阻抗是根据> H > MY 和先前测量的耳蜗声压估算的。结果不支持中耳是无损匹配传输线的想法。结果支持以下观点:(1)中耳传输与5至35 kHz之间的机械传输线或多谐振网络一致,并在较高频率下降低;(2)在大多数沙鼠听觉范围内骨运动呈活塞状,并且( 3)中耳传输特性是听力图的决定因素。

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