四种鸟类肺气体交换组织的锚定和支撑系统。

Acta anatomica Pub Date : 1997-01-01 DOI:10.1159/000147962
E Klika, D W Scheuermann, M H De Groodt-Lasseel, I Bazantova, A Switka
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引用次数: 28

摘要

与哺乳动物的肺泡相比,鸟类的空气毛细血管是一种微妙的结构。为了确定鸟类气体交换地幔的支撑结构,对几种鸟类进行了透射电镜和扫描电镜研究。对两种飞行能力强的鸟类(鸽子和仓鸮)和两种相对不会飞行的鸟类(家禽和鹌鹑)的肺组织进行气管内充气后的透射电镜和扫描电镜标准处理。鸟类鳞状呼吸细胞分泌的特定产物脂蛋白三层结构扭曲,可见于楔入毛细血管之间的细胞质延伸,部分环绕毛细血管。位于胞浆内的三层复合物在毛细血管和空气毛细血管之间形成了一个三维复杂的蜘蛛网状系统,可能是气体交换组织的锚定和支撑结构。这一系统通过视网膜得到加强,视网膜是一对稀薄的平行的鳞状呼吸细胞突起,延伸到气道管腔,扩大并桥接空气毛细血管的对面。三层结构物质以15纳米厚的脱细胞衬里层的形式排出,该脱细胞衬里层独特地适应于极薄的呼吸上皮。在鳞状呼吸细胞的细胞质中,从颗粒状和光滑的内质网的轮廓中产生三层状物质。气体交换组织的完整性和稳定性可能由鳞状呼吸细胞的特定排列保证,其中三层物质起着至关重要的作用。这种普遍模式可以在飞行能力强的鸟类和相对不会飞行的鸟类中观察到。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Anchoring and support system of pulmonary gas-exchange tissue in four bird species.

Avian air capillaries are delicate structures compared to the mammalian pulmonary alveolus. A transmission and scanning electron microscopic study was carried out on several species of birds with the aim of determining the support structures of the avian gas-exchange mantle. Lung tissue of two bird species belonging to strong flying birds (pigeon and barn owl) and two relatively flightless species (domestic fowl and quail) was subjected to standard processing for transmission and scanning electron microscopy after intratracheal inflation. Twisted profiles of lipoproteinaceous trilaminar substance as specific secretory product of avian squamous respiratory cells can be seen in the cell body and cytoplasmic extensions that are wedged between the blood capillaries, partly surrounding them. The intracytoplasmatically located trilaminar complexes form a three-dimensional intricate spiderweb-like system between the blood capillaries and air capillaries, which presumably function as an anchoring and support structure of the gas-exchange tissue. This system is strengthened by retinacula--pairs of attenuated parallel processes of squamous respiratory cells that project to the airway lumen--expanding and bridging the opposite side of air capillaries. The trilaminar substance is discharged in the form of a 15-nm-thick acellular lining layer which is uniquely adapted to the extremely thin respiratory epithelium. The trilaminar substance arises in the cytoplasm of squamous respiratory cells from profiles of granular and smooth endoplasmic reticulum. The integrity and stability of the gas-exchange tissue is likely to be guaranteed by a specific arrangement of the squamous respiratory cells, in which the trilaminar substance plays a paramount role. This general pattern can be observed in strong flying bird species as in the relatively flightless birds.

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