家禽肺的空气传导和气体交换管道的三维结构和配置:家鸭(Cairina moschata)。

ISRN anatomy Pub Date : 2014-02-05 eCollection Date: 2014-01-01 DOI:10.1155/2014/621982
A N Makanya, B M Kavoi, V Djonov
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引用次数: 7

摘要

采用铸造显微镜、光学显微镜、透射电镜和扫描电镜对家鸭肺进行了宏观解剖。肺次级支气管(SB)分为中腹侧(MV, 4-5)、侧腹侧(LD, 6-10)、侧腹侧(LV, 2-4)和后侧次级支气管(PO, 36-44)四类。新肺旁支气管在肺腹侧三分之一处形成复杂的网状结构,并与另一侧的肺旁支气管相结合。肺实质组织成圆柱形的旁支气管,由含有血管的薄隔膜隔开。心房浅,由平滑肌束加强的上皮脊强化,形成2-6个细长的窝。空气毛细血管要么直接来自心房,要么来自漏斗,呈管状或球状,有细的相互连接的分支。新描述的传导空气管道的空间配置与鸡的非常相似。鸭和鸡在分类、数量和三维排列上的惊人相似性表明了功能导向设计的趋同。为了阐明鸟类肺内的气流动力学,需要对各种类型的SB和副支气管气流的精确方向进行表征。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Three-Dimensional Structure and Disposition of the Air Conducting and Gas Exchange Conduits of the Avian Lung: The Domestic Duck (Cairina moschata).

Three-Dimensional Structure and Disposition of the Air Conducting and Gas Exchange Conduits of the Avian Lung: The Domestic Duck (Cairina moschata).

Three-Dimensional Structure and Disposition of the Air Conducting and Gas Exchange Conduits of the Avian Lung: The Domestic Duck (Cairina moschata).

Three-Dimensional Structure and Disposition of the Air Conducting and Gas Exchange Conduits of the Avian Lung: The Domestic Duck (Cairina moschata).

The anatomy of the domestic duck lung was studied macroscopically, by casting and by light, transmission, and scanning electron microscopy. The lung had four categories of secondary bronchi (SB), namely, the medioventral (MV, 4-5), laterodorsal (LD, 6-10), lateroventral (LV, 2-4), and posterior secondary bronchi (PO, 36-44). The neopulmonic parabronchi formed an intricate feltwork on the ventral third of the lung and inosculated those from the other SB. The lung parenchyma was organized into cylindrical parabronchi separated by thin septa containing blood vessels. Atria were shallow and well-fortified by epithelial ridges reinforced by smooth muscle bundles and gave rise to 2-6 elongate infundibulae. Air capillaries arose either directly from the atria or from infundibulae and were tubular or globular in shape with thin interconnecting branches. The newly described spatial disposition of the conducting air conduits closely resembles that of the chicken. This remarkable similarity between the categories, numbers, and 3D arrangement of the SB in the duck and chicken points to a convergence in function-oriented design. To illuminate airflow dynamics in the avian lung, precise directions of airflow in the various categories of SB and parabronchi need to be characterized.

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