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Tympanic membrane pressure buffering function at quasi-static and low-frequency pressure variations

机译:准静态和低频压力变化的鼓膜压力缓冲功能

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Abstract Deformation of the tympanic membrane is known to contribute to the pressure regulation processes in the middle ear cleft. In this paper we investigated pressure variations in the rabbit middle ear in response to sinusoidal varying pressures applied to the ear canal, with frequencies ranging from 0.5?Hz to 50?Hz and pressure amplitudes ranging between 0.25?kPa and 1?kPa. The transtympanic pressure difference was found to be smallest in the quasi-static range, and quickly increased as a function of frequency. The response curves showed asymmetry, with larger transtympanic pressures when positive pressures were applied in the ear canal. Normalized transtympanic pressure amplitudes remained fairly constant as a function of input pressure, with values in the range of 60%–70% relative to the applied pressure. The total harmonic distortion of the middle ear pressure signal was calculated and was found to be very small ( ≤ 2%) for low-pressure amplitudes and low frequencies. For pressure amplitudes in the order of 0.25?kPa–0.5?kPa, it increased to about 10% at 50?Hz. When a 1?kPa pressure amplitude was applied, variation between animals became large and distortion values up to 30% at 50?Hz were observed. The results showed that pressure buffering due to tympanic membrane displacement was most effective for compensating small transtympanic pressure loads at low frequencies. Highlights ? Middle ear pressure in rabbit is measured as a function of sinusoidal varying ear canal pressure. ? Pressure amplitudes from 0.5?kPa to 2?kPa, frequencies from 0.5?Hz to 50?Hz. ? Trans-tympanic pressure increases as function of frequency. ? Total harmonic distortion of middle ear pressure increases as function of frequency and amplitude. ]]>
机译:众所周知鼓膜膜的变形有助于中耳裂缝中的压力调节过程。在本文中,我们响应于施加到耳道的正弦变化压力,频率范围为0.5Ω·赫兹和0.25μm≤kPa和1?KPA的频率,响应于施加到耳道的正弦变化压力。在准静态范围内发现交流压力差异最小,并且随着频率的函数而迅速增加。响应曲线显示不对称性,当在耳道中施加正压力时,具有较大的谐波甘蔗。归一化的变性压力幅度与输入压力的函数保持相当恒定,相对于施加的压力为60%-70%的值。计算中耳压力信号的总谐波变形,发现低压幅度和低频率非常小(≤2%)。对于0.25ΩkPa-0.5?KPA的压力幅度,它在50℃下增加至约10%。当施加1?KPA压力幅度时,观察到动物之间的变化变大,并且观察到50μlHz的变形值高达30%。结果表明,由于鼓膜膜位移引起的压力缓冲最有效地在低频下补偿小型变压压负荷。强调 ?作为正弦变化的耳腔压力的函数测量兔中的中耳压力。还从0.5?KPA至2?KPA,频率为0.5ΩHz至50Ω·赫兹的压力幅度。还跨越鼓阀压力随频率的函数而增加。还中耳压力的总谐波变形随着频率和幅度的函数而增加。 ]]>

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