单向气流、气囊还是水平隔膜:是什么让鸟长出了肺?

IF 5.4 2区 生物学 Q1 BIOLOGY
Emma R Schachner, Andrew J Moore
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引用次数: 0

摘要

在这篇综述中,我们评估了鸟类和其他蜥脚类动物肺部解剖结构的差异,特别是那些使鸟类呼吸系统与众不同的特征:一个完全解耦合和固定的等体积气体交换肺,通过水平隔膜将其与适应的通气气囊分开。利用红尾鹰(Buteo jamaicensis)、普通鸵鸟(Struthio camelus)、斑鸮(Strix varia)、非洲灰鹦鹉(Psittacus erithacus)和斑胸雀(Taeniopygia castanotis)的成像数据、三维数字解剖模型和解剖图像,证明了肺气囊、憩室和水平隔的解剖变异。我们讨论了目前关于鸟类呼吸系统的知识状况以及需要进一步研究的众多领域,包括支气管树和气囊的比较和定量生态形态学,气囊和憩室的非通气功能,单向气流的流体动力学和解剖机制,颅后骨骼充气,以及所有这些因素如何影响已灭绝的祖龙呼吸组织的重建。尤其是鸟目恐龙(即翼龙+非鸟类恐龙)。具体来说,我们认为没有证据表明水平隔膜存在,尽管存在颅后骨骼肺炎,但在非鸟类鸟翼龙中不应该重建完整的鸟类肺。本文是“鸟类呼吸系统生物学”专题的一部分。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Unidirectional airflow, air sacs or the horizontal septum: what does it take to make a bird lung?

In this review, we evaluate the differences between the pulmonary anatomy of birds and other sauropsids, specifically those traits that make the avian respiratory system distinct: a fully decoupled and immobilized, isovolumetric gas-exchanging lung separated from compliant ventilatory air sacs by a horizontal septum. Imaging data, three-dimensional digital anatomical models and dissection images from a red-tailed hawk (Buteo jamaicensis), common ostrich (Struthio camelus), barred owl (Strix varia), African grey parrot (Psittacus erithacus) and zebra finch (Taeniopygia castanotis) are used to demonstrate the anatomical variation seen in the pulmonary air sacs, diverticula and the horizontal septum. We address the current state of knowledge regarding the avian respiratory system and the myriad areas that require further study, including the comparative and quantitative ecomorphology of the bronchial tree and air sacs, the non-ventilatory functions of the sacs and diverticula, the fluid dynamics and anatomical mechanisms underlying unidirectional airflow, post-cranial skeletal pneumaticity, and how all of these factors impact reconstructions of respiratory tissues in extinct archosaurs, particularly ornithodirans (i.e. pterosaurs + non-avian dinosaurs). Specifically, we argue that without evidence for the horizontal septum, a fully avian lung should not be reconstructed in non-avian ornithodirans, despite the presence of post-cranial skeletal pneumaticity.This article is part of the theme issue 'The biology of the avian respiratory system'.

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来源期刊
CiteScore
11.80
自引率
1.60%
发文量
365
审稿时长
3 months
期刊介绍: The journal publishes topics across the life sciences. As long as the core subject lies within the biological sciences, some issues may also include content crossing into other areas such as the physical sciences, social sciences, biophysics, policy, economics etc. Issues generally sit within four broad areas (although many issues sit across these areas): Organismal, environmental and evolutionary biology Neuroscience and cognition Cellular, molecular and developmental biology Health and disease.
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