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减压后肢体运动诱导螃蟹体内气泡形成。

Bubble formation in crabs induced by limb motions after decompression.

作者信息

McDonough P M, Hemmingsen E A

出版信息

J Appl Physiol Respir Environ Exerc Physiol. 1984 Jul;57(1):117-22. doi: 10.1152/jappl.1984.57.1.117.

Abstract

In vivo bubble formation was studied in the megalopal stage of the crab Pachygrapsus crassipes. The animals were equilibrated with elevated argon, nitrogen, or helium pressures then rapidly decompressed to atmospheric pressure. Voluntary motions induced bubble nucleation in leg joints after exposures to as low as 2 atm nitrogen (gauge pressure). Delays of several minutes sometimes passed between decompression and bubble formation. Mechanically stimulating the animals to move their legs increased this bubble formation, whereas immobilizing the legs before gas equilibration prevented it, even in animals decompressed from 150 atm nitrogen. We conclude that preformed nuclei are not responsible for bubbles developing in the legs of this animal. Instead, tribonucleation of bubbles apparently occurs as a result of limb motions at relatively low gas supersaturations.

摘要

在厚蟹(Pachygrapsus crassipes)大眼幼体阶段对体内气泡形成进行了研究。使动物在升高的氩气、氮气或氦气压力下达到平衡,然后迅速减压至大气压。暴露于低至2个大气压的氮气(表压)后,腿部关节的自主运动引发了气泡成核。减压与气泡形成之间有时会经过几分钟的延迟。机械刺激动物移动腿部会增加这种气泡形成,而在气体平衡之前固定腿部则可防止气泡形成,即使是从150个大气压的氮气中减压的动物也是如此。我们得出结论,预先形成的核与该动物腿部气泡的形成无关。相反,气泡的三相成核显然是由于在相对较低的气体过饱和度下肢体运动所致。

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