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与耳蜗微力学相关的耳蜗解剖学。综述。

Cochlear anatomy related to cochlear micromechanics. A review.

作者信息

Lim D J

出版信息

J Acoust Soc Am. 1980 May;67(5):1686-95. doi: 10.1121/1.384295.

Abstract

The sensory cilia of the mammalian cochlea show an orderly gradation in height along the length of the cochlea. The cilia are taller in the apex and shorter in the base. Differences in ciliary gradation also exist between the different rows of outer hair cell cilia along the length of the cochlea. There are gradations in width and thickness in the moveable portion of the tectorial membrane paralleling those in the basilar membrane. There are also gradations in the relationship between the tectorial membrane and the slope of the reticular lamina along the length of the cochlea. This suggests that there may be additional mechanical fine-tuning capability built into the organ of Corti besides the basilar membrane. The tectorial membrane is firmly attached to the outer hair cell cilia along the entire length of the cochlea in all species examined. The inner hair cell cilia do not have the same firm attachment to the tectorial membrane as outer hair cell cilia. This suggests that the modes of mechanical coupling between the tectorial membrane and the inner and outer hair cell cilia are different.

摘要

哺乳动物耳蜗的感觉纤毛沿耳蜗长度呈现出高度的有序渐变。纤毛在顶端较高,在基部较短。沿耳蜗长度,不同排的外毛细胞纤毛之间也存在纤毛渐变差异。盖膜可移动部分的宽度和厚度渐变与基底膜的渐变平行。沿耳蜗长度,盖膜与网状板斜率之间的关系也存在渐变。这表明除了基底膜外,柯蒂氏器可能还具备额外的机械微调能力。在所有被检查的物种中,盖膜沿耳蜗全长都牢固地附着在外毛细胞纤毛上。内毛细胞纤毛与盖膜的附着不像外毛细胞纤毛那样牢固。这表明盖膜与内、外毛细胞纤毛之间的机械耦合方式不同。

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