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红狐中耳和内耳的功能解剖,与家犬和家猫比较。

Functional anatomy of the middle and inner ears of the red fox, in comparison to domestic dogs and cats.

机构信息

Department of General Zoology, Faculty of Biology, University of Duisburg-Essen, Essen, Germany.

Department of Game Management and Wildlife Biology, Faculty of Forestry and Wood Sciences, Czech University of Life Sciences, Praha, Czech Republic.

出版信息

J Anat. 2020 Jun;236(6):980-995. doi: 10.1111/joa.13159. Epub 2020 Feb 18.

Abstract

Anatomical middle and inner ear parameters are often used to predict hearing sensitivities of mammalian species. Given that ear morphology is substantially affected both by phylogeny and body size, it is interesting to consider whether the relatively small anatomical differences expected in related species of similar size have a noticeable impact on hearing. We present a detailed anatomical description of the middle and inner ears of the red fox Vulpes vulpes, a widespread, wild carnivore for which a behavioural audiogram is available. We compare fox ears to those of the well-studied and similarly sized domestic dog and cat, taking data for dogs and cats from the literature as well as providing new measurements of basilar membrane (BM) length and hair cell numbers and densities in these animals. Our results show that the middle ear of the red fox is very similar to that of dogs. The most obvious difference from that of the cat is the lack of a fully formed bony septum in the bulla tympanica of the fox. The cochlear structures of the fox, however, are very like those of the cat, whereas dogs have a broader BM in the basal cochlea. We further report that the mass of the middle ear ossicles and the bulla volume increase with age in foxes. Overall, the ear structures of foxes, dogs and cats are anatomically very similar, and their behavioural audiograms overlap. However, the results of several published models and correlations that use middle and inner ear measurements to predict aspects of hearing were not always found to match well with audiogram data, especially when it came to the sharper tuning in the fox audiogram. This highlights that, although there is evidently a broad correspondence between structure and function, it is not always possible to draw direct links when considering more subtle differences between related species.

摘要

解剖中耳和内耳参数通常用于预测哺乳动物的听力敏感度。鉴于耳形态受到系统发育和体型的显著影响,考虑到相关相似体型物种之间预期的相对较小的解剖差异是否对听力有明显影响是很有趣的。我们展示了广泛分布的野生食肉动物红狐 Vulpes vulpes 的中耳和内耳的详细解剖描述,该动物有行为听力图。我们将狐狸的耳朵与研究充分且体型相似的家犬和家猫的耳朵进行了比较,从文献中获取了犬和猫的数据,并提供了这些动物的基底膜 (BM) 长度和毛细胞数量和密度的新测量值。我们的结果表明,红狐的中耳与犬非常相似。与猫最明显的区别是,狐狸的鼓室乳突中没有完全形成的骨隔板。然而,狐狸的耳蜗结构与猫非常相似,而犬的基底耳蜗 BM 较宽。我们进一步报告说,狐狸的中耳听小骨质量和鼓室体积随着年龄的增长而增加。总体而言,狐狸、犬和猫的耳部结构在解剖上非常相似,它们的行为听力图也有重叠。然而,使用中耳和内耳测量值来预测听力方面的一些已发表模型和相关性的结果并不总是与听力图数据非常匹配,尤其是在狐狸听力图中更尖锐的调谐方面。这表明,尽管结构和功能之间显然存在广泛的对应关系,但在考虑相关物种之间更细微的差异时,并不总是能够直接建立联系。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e47c/7219625/34cedadb22f9/JOA-236-980-g001.jpg

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