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首页> 外文期刊>The Journal of Experimental Biology >Laryngeal and soft palate valving in the harbour seal (Phoca vitulina)
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Laryngeal and soft palate valving in the harbour seal (Phoca vitulina)

机译:喉部密封(Phoca valulina)的喉和软腭阀门

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Effective 'valving' in the upper aerodigestive tract (UAT) is essential to temporarily separate the digestive and respiratory pathways. Marine mammals are largely dedicated to feeding underwater, and in many cases swallowing prey whole. In seals, little work has been done to explore the anatomy and function of the UAT in the context of valving mechanisms that function to separate food and air pathways. Here we use videofluoroscopy, gross dissection, histology and computed tomography (CT) renderings to explore the anatomy of the larynx and soft palate in the harbour seal (Phoca vitulina), and generate models for how valving mechanisms in the head and neck may function during breathing. phonating, diving and swallowing. Harbour seals have an elevated larynx and the epiglottis may rise above the level of the soft palate, particularly in pups when sucking. In addition, the corniculate and arytenoid cartilages with associated muscles form most of the lateral margins of the laryngeal inlet and vestibule, and move independently to facilitate airway closure. The corniculate cartilages flex over the laryngeal inlet beneath the epiglottis to completely close the laryngeal vestibule and inlet. The vocal folds are thick and muscular and the medial margin of the folds contains a small vocal ligament. The soft palate has well-defined levator veli palatini muscles that probably function to elevate the palate and close the pharyngeal isthmus during feeding. Our results support the conclusion that harbour seals have evolved UAT valving mechanisms as adaptations to a marine environment that are not seen in terrestrial carnivores.
机译:上部机场刺激性道(UAT)的有效“valving”是临时分离消化和呼吸道的必要条件。海洋哺乳动物在很大程度上致力于在水下喂养,并且在许多情况下吞噬猎物整体。在密封件中,已经完成了很少的作品来探讨uat在阀门机制中的解剖和功能,该机制可以分离食品和空气途径。在这里,我们使用Videofocopy,总体解剖,组织学和计算机断层扫描(CT)渲染来探讨港口密封(PHOCA vitulina)中喉部和软腭的解剖,并产生了头部和颈部的阀杆机构如何运行的模型呼吸。发放,潜水和吞咽。港口密封件具有升高的喉部升高,Epiglottis可能超过软腭水平,特别是在吸吮时的幼崽。此外,具有相关肌肉的曲折和秋季癣软骨形成喉部入口和前庭的大部分横向边缘,并独立移动以促进气道闭合。曲折的软骨弯曲在Epiglottis下方的喉部入口上,以完全关闭喉前庭和入口。声带厚,肌肉又肌肉,折叠的内侧缘含有一个小的声音韧带。软腭具有明确定义的vli veli palatini肌肉,可能在饲养过程中升高腭裂并关闭咽部肌肌。我们的结果支持港口密封件的结论是将UAT阀门的机制进化为对陆地食肉动物未见的海洋环境的适应性。

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