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Impedances of the Ear Estimated with Intracochlear Pressures in Normal Human Temporal Bones

机译:耳中的耳朵阻抗在正常人体颞骨中估计

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We have measured intracochlear pressures and velocities of stapes and round window (RW) evoked by air conduction (AC) stimulation in many fresh human cadaveric specimens. Our techniques have improved through the years to ensure reliable pressure sensor measurements in the scala vestibuli and scala tympani. Using these measurements, we have calculated impedances of the middle and inner ear (cochlear partition, RW, and physiological leakage impedance in scala vestibuli) to create a lumped element model. Our model simulates our data and allows us to understand the mechanisms involved in air-conducted sound transmission. In the future this model will be used as a tool to understand transmission mechanisms of various stimuli and to help create more sophisticated models of the ear.
机译:我们已经测量了许多新鲜人尸体标本中的空气传导(AC)刺激引起的塞子织物压力和圆形窗口(RW)的速度。我们的技术通过多年来改善了,以确保Scala Vestibuli和Scala Tympani中可靠的压力传感器测量。使用这些测量,我们已经计算了中耳的阻抗(Cochlear分区,RW和Scala Vestibuli中的生理泄漏阻抗)以产生集总元件模型。我们的模型模拟了我们的数据,并允许我们了解涉及空中传导声音传输的机制。将来,该模型将被用作理解各种刺激的传输机制的工具,并帮助创造更复杂的耳朵模型。

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