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Limits on normal cochlear 'third' windows provided by previous investigations of additional sound paths into and out of the cat inner ear

机译:正常的耳蜗第三个窗口的限制由之前的额外声道进出猫内耳的额外声音

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摘要

While most models of cochlear function assume the presence of only two windows into the mammalian cochlea (the oval and round windows), a position that is generally supported by several lines of data, there is evidence for additional sound paths into and out of the inner ear in normal mammals. In this report we review the existing evidence for and against the 'two-window' hypothesis. We then determine how existing data and inner-ear anatomy restrict transmission of sound through these additional sound pathways in cat by utilizing a well-tested model of the cat inner ear, together with anatomical descriptions of the cat cochlear and vestibular aqueducts (potential additional windows to the cochlea). We conclude: (1) The existing data place limits on the size of the cochlear and vestibular aqueducts in cat and are consistent with small volume-velocities through these ducts during ossicular stimulation of the cochlea, (2) the predicted volume velocities produced by aqueducts with diameters half the size of the bony diameters match the functional data within 10 dB, and (3) these additional volume velocity paths contribute to the inner ear's response to non-acoustic stimulation and conductive pathology. (C) 2017 Elsevier B.V. All rights reserved.
机译:虽然大多数型号的耳蜗函数都是仅在哺乳动物耳蜗(椭圆形和圆窗口)中只有两个窗口的存在,但是一般数据通常支持的位置,有证据表明额外的声道进出内部正常哺乳动物的耳朵。在本报告中,我们审查了“双窗口”假设的现有证据。然后,我们通过利用猫内耳的经过良好测试的模型,以及猫耳蜗和前庭渡槽的解剖学描述,确定现有数据和内耳解剖学如何通过CAT中的这些额外的声音途径来限制声音的传播。到耳蜗)。我们得出结论:(1)现有的数据区对猫的耳蜗和前庭渡槽的大小限制,并且在耳蜗的卵形刺激期间通过这些管道的小体积速度一致,(2)渡槽生产的预测体积速度直径半径的一半骨骼直径的大小与10 dB内的功能数据相匹配,(3)这些额外的体积速度路径有助于内耳对非声学刺激和导电病理的反应。 (c)2017 Elsevier B.v.保留所有权利。

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