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昆虫气体交换中的扩散作用。

Diffusion in gas exchange of insects.

作者信息

Scheid P, Hook C, Bridges C R

出版信息

Fed Proc. 1982 Apr;41(6):2143-5.

PMID:6281073
Abstract

The air-filled tracheal system constitutes the organ for gas exchange in terrestrial insects-its finest branches, the tracheoles, contacting individual cells. In the pupal stage, in which the animal lacks significant ventilatory movement, diffusion in the gas phase of the tracheal system constitutes the only mechanism for gas transfer between the environment and the tissues, transport in the hemolymph being insignificant. We have attempted to identify the main sites of diffusional resistance in the tracheal gas system by measuring the evolution of inert gases of low solubility from the pupa of the giant silkworm moth (Hyalophora cecropia). The results are compatible wih a single model in which the resistance to diffusional gas transfer in the tracheal system is concentrated at its opening at the body surface (spiracle).

摘要

充满空气的气管系统构成了陆生昆虫的气体交换器官,其最细小的分支——微气管,与单个细胞接触。在蛹期,昆虫缺乏显著的通气运动,气管系统气相中的扩散是环境与组织之间气体传输的唯一机制,血淋巴中的运输微不足道。我们试图通过测量大蚕蛾(天蚕蛾)蛹中低溶解度惰性气体的释放情况,来确定气管气体系统中扩散阻力的主要部位。结果与一个单一模型相符,该模型认为气管系统中气体扩散传输的阻力集中在其体表开口(气门)处。

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