鼓膜方向对耳道声量的影响:有限元分析

Kren Monrad Nørgaard, Hamid Motallebzadeh, Sunil Puria
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引用次数: 0

摘要

假设有平面波,耳道声学量统称为宽带声学瞬态(WAI),经常用于研究和临床,以评估中耳的传导状态。次要应用包括在向耳部提供刺激和测量耳声发射时对耳道声学进行补偿。然而,耳道本质上是不均匀的,并以一个斜角被锥形鼓膜(TM)终止,因此可能会混淆 WAI 量描述中耳状态的能力。本文研究了鼓膜方向和形状对使用 WAI 分析人耳中耳特征可能产生的独立混杂影响。也就是说,除了 TM 方向和形状造成的影响外,耳道的非均匀几何形状未被考虑在内。为此,我们使用了由块状元素和有限元中耳模型终止的均匀耳道有限元模型。此外,还研究了对刺激和反向传输量的影响,包括试图接近 TM 处声压的量的物理意义。结果显示,TM 方向对 WAI 量的影响相对较小,只是在 10 kHz 以上有明显的延迟,进一步影响了某些刺激和反向传输量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The influence of tympanic-membrane orientation on acoustic ear-canal quantities: A finite-element analysis.
Assuming plane waves, ear-canal acoustic quantities, collectively known as wideband acoustic immittance (WAI), are frequently used in research and in the clinic to assess the conductive status of the middle ear. Secondary applications include compensating for the ear-canal acoustics when delivering stimuli to the ear and measuring otoacoustic emissions. However, the ear canal is inherently non-uniform and terminated at an oblique angle by the conical-shaped tympanic membrane (TM), thus potentially confounding the ability of WAI quantities in characterizing the middle-ear status. This paper studies the isolated possible confounding effects of TM orientation and shape on characterizing the middle ear using WAI in human ears. That is, the non-uniform geometry of the ear canal is not considered except for that resulting from the TM orientation and shape. This is achieved using finite-element models of uniform ear canals terminated by both lumped-element and finite-element middle-ear models. In addition, the effects on stimulation and reverse-transmission quantities are investigated, including the physical significance of quantities seeking to approximate the sound pressure at the TM. The results show a relatively small effect of the TM orientation on WAI quantities, except for a distinct delay above 10 kHz, further affecting some stimulation and reverse-transmission quantities.
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