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首页> 外文期刊>The Journal of the Acoustical Society of America >Simultaneous measurement of middle-ear input impedance and forward/reverse transmission in cat
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Simultaneous measurement of middle-ear input impedance and forward/reverse transmission in cat

机译:同时测量Cat中耳输入阻抗和正向/反向传输

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Reported here is a technique for measuring forward and reverse middle-ear transmission that exploits distortion-product otoacoustic emissions (DPOAEs) to drive the middle ear "in reverse" without opening the inner ear. The technique allows measurement of DPOAEs, middle-ear input impedance, and forward and reverse middle-ear transfer functions in the same animal. Intermodulation distortion in the cochlea generates a DPOAE at frequency 2f(1) - f(2) measurable in both ear-canal pressure and the velocity of the stapes. The forward transfer function is computed from stapes velocities and corresponding ear-canal pressures measured at the two primary frequencies; the reverse transfer function is computed from velocity and pressure measurements at the DPOAE frequency. Middle-ear input impedance is computed from ear-canal pressure measurements and the measured Thevenin equivalent of the sound-delivery system. The technique was applied to measure middle-ear characteristics in anesthetized cats with widely opened middle-ear cavities (0.2-10 kHz). Stapes velocity was measured at the incudo-stapedial joint. Results on five animals are reported and compared with a published middle-ear model. The measured forward transfer functions and input impedances generally agree with previous measurements, and all measurements agree qualitatively with model predictions. The reverse transfer function is shown to depend on the acoustic load in the car canal, and the measurements are used to compute the round-trip middle-ear gain and delay. Finally, the measurements are used to estimate the parameters of a two-port transfer-matrix description of the cat middle ear. (C) 2004 Acoustical Society of America.
机译:此处报告的是一种测量向前和向后中耳传播的技术,该技术利用失真产物耳声发射(DPOAE)来驱动中耳“反向”而不打开内耳。该技术可以测量同一动物中的​​DPOAE,中耳输入阻抗以及中耳正向和反向传递函数。耳蜗中的互调失真会在频率2f(1)-f(2)处产生DPOAE,该频率可在耳道压力和velocity骨速度中测量。前向传递函数是根据速度和在两个主要频率处测得的相应耳道压力计算得出的;反向传递函数是根据DPOAE频率下的速度和压力测量值计算得出的。中耳输入阻抗由耳道压力测量值和测得的声音传递系统的戴维宁等效值计算得出。该技术被用于测量中耳腔广泛张开(0.2-10 kHz)的麻醉猫的中耳特征。在the骨-ped骨关节处测量骨钉速度。报告了五只动物的结果,并与已发表的中耳模型进行了比较。测得的前向传递函数和输入阻抗通常与以前的测量结果一致,所有测量结果在质量上与模型预测一致。反向传递函数显示为取决于汽车通道中的声负载,并且这些测量值用于计算往返中耳增益和延迟。最后,这些测量值用于估计猫中耳的两端口传输矩阵描述的参数。 (C)2004年美国声学学会。

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