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Measurement of the human cadaver ossicle vibration amplitude by fiber-optic interferometry

机译:光纤干涉法测量人体尸体听骨的振幅

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In this paper we present the results obtained by contactless measurement of vibration of the incus inside the middle ear of a human cadaver, exposed to an external calibrated sound source. The measurement configuration was a Michelson fiber-optic interferometer based on a 3x3 fiber optic coupler, with a VCSEL source. The interferometric signal fading was solved using two quasiquadrature signals and specialized signal processing. The ossicle reflection was augmented by a very light piece of retroreflective material attached to the bone. We measured the amplitude of vibration at different sound pressure levels, independently monitored by a decibel meter placed in the proximity of the cadaver ear. The accuracy of the measurement technique was proved by using a calibrated piezo transducer exposed to vibrate with amplitude of 7nm at 1kHz. We performed the experiments on 8 cadavers in total. The measured amplitudes were found to be in the range between 1 pm and 1 nm, under the sound excitation of 40-90 dB SPL @ 1kHz, respectively.
机译:在本文中,我们介绍了通过非接触式测量人体尸体中耳内部暴露于外部校准声源的振动所获得的结果。测量配置是基于3x3光纤耦合器并带有VCSEL源的迈克尔逊光纤干涉仪。使用两个准正交信号和专门的信号处理解决了干涉信号衰落的问题。骨上附着的一块非常轻的逆反射材料增强了听骨反射。我们测量了在不同声压级下的振动幅度,并通过放置在尸体耳朵附近的分贝计独立监测。测量技术的准确性通过使用经过校准的压电换能器来证明,该换能器暴露于1kHz的振幅为7nm的振动中。我们总共对8具尸体进行了实验。发现在1kHz的40-90 dB SPL声激励下,测得的幅度分别在1 pm和1 nm之间。

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