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The discordant eardrum

机译:耳膜不协调

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摘要

At frequencies above 3 kHz, the tympanic membrane vibrates chaotically. By having many resonances, the eardrum can transmit the broadest possible bandwidth of sound with optimal sensitivity. In essence, the eardrum works best through discord. The eardrum's success as an instrument of hearing can be directly explained through a combination of its shape, angular placement, and composition. The eardrum has a conical asymmetrical shape, lies at a steep angle with respect to the ear canal, and has organized radial and circumferential collagen fiber layers that provide the scaffolding. Understanding the role of each feature in hearing transduction will help direct future surgical reconstructions, lead to improved microphone and loudspeaker designs, and provide a basis for understanding the different tympanic membrane structures across species. To analyze the significance of each anatomical feature, a computer simulation of the ear canal, eardrum, and ossicles was developed. It is shown that a cone-shaped eardrum can transfer more force to the ossicles than a flat eardrum, especially at high frequencies. The tilted eardrum within the ear canal allows it to have a larger area for the same canal size, which increases sound transmission to the cochlea. The asymmetric eardrum with collagen fibers achieves optimal transmission at high frequencies by creating a multitude of deliberately mistuned resonances. The resonances are summed at the malleus attachment to produce a smooth transfer of pressure across all frequencies. In each case, the peculiar properties of the eardrum are directly responsible for the optimal sensitivity of this discordant drum.
机译:在高于3 kHz的频率下,鼓膜混沌振动。通过多次共振,鼓膜可以以最佳灵敏度传输尽可能宽的声音带宽。从本质上讲,耳膜通过不和谐效果最佳。耳膜作为助听器的成功可以通过其形状,角度位置和成分的组合来直接解释。鼓膜具有圆锥形的不对称形状,相对于耳道成陡峭的角度,并且具有组织化的径向和周向胶原纤维层,可提供支架。了解每个功能在听力传导中的作用将有助于指导未来的外科手术重建,改善麦克风和扬声器的设计,并为了解跨物种的不同鼓膜结构提供基础。为了分析每个解剖特征的重要性,开发了耳道,鼓膜和小骨的计算机模拟。结果表明,与平坦的鼓膜相比,锥形鼓膜可以将更多的力传递到听小骨上,尤其是在高频时。耳道内的倾斜鼓膜使其在相同的耳道尺寸下具有更大的面积,从而增加了向耳蜗的声音传输。带有胶原纤维的非对称耳膜通过产生许多故意的失谐共振来实现高频的最佳传输。在锤骨附件处将共振相加,以在所有频率上产生平稳的压力传递。在每种情况下,鼓膜的特殊特性直接决定了这种不协调鼓膜的最佳灵敏度。

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