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脊椎动物的肺:结构、形态与力学。呼吸系统、运动器官与个体发育渐进整合的比较视角。

Vertebrate lungs: structure, topography and mechanics. A comparative perspective of the progressive integration of respiratory system, locomotor apparatus and ontogenetic development.

作者信息

Duncker Hans-Rainer

机构信息

Institut für Anatomie und Zellbiologie, Justus-Liebig-Universität Giessen, Aulweg 123, D 35392 Giessen, Germany.

出版信息

Respir Physiol Neurobiol. 2004 Dec 15;144(2-3):111-24. doi: 10.1016/j.resp.2004.07.020.

Abstract

Vertebrate lungs are highly diverse in their structure, topographical position, ventilation mechanisms, constructional integration into the locomotor apparatus, and the interrelationships with the mode of their ontogenetic development. Vertebrate lungs evolved as supplementary air-breathing organs in primary fishes, being ventilated by buccal pumping. In most recent fishes the lungs are transformed into the hydrostatic swimbladder. This basic type of unicameral lungs and their buccal pumping ventilation are also found in recent amphibians. Land vertebrates developed a very efficient aspiration type of ventilation. In most recent reptiles the lungs are subdivided into three rows of lung chambers, enlarging the exchange surface in correlation to their increasing metabolic needs. The avian respiratory apparatus, with its volume-constant lungs and highly compliant air sacs, and the mammalian broncho-alveolar lung, with its very low compliance, are both derived from multicameral lungs. The avian and the mammalian respiratory systems are integrated very differently with the specific constructions of their locomotor apparatusses and the specific mode of their ontogenetic development.

摘要

脊椎动物的肺在结构、位置、通气机制、与运动器官的结构整合以及与个体发育模式的相互关系等方面具有高度多样性。脊椎动物的肺最初在鱼类中作为辅助呼吸器官进化而来,通过口腔泵吸进行通气。在大多数现代鱼类中,肺演变成了静水鳔。这种单腔肺的基本类型及其口腔泵吸通气方式在现代两栖动物中也能找到。陆地脊椎动物发展出了一种非常有效的吸气式通气方式。在大多数现代爬行动物中,肺被细分为三排肺腔,随着代谢需求的增加,交换表面也相应扩大。鸟类的呼吸系统具有容积恒定的肺和高度顺应性的气囊,而哺乳动物的支气管肺泡肺顺应性极低,两者都源自多腔肺。鸟类和哺乳动物的呼吸系统与它们运动器官的特定结构以及个体发育的特定模式的整合方式非常不同。

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