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高静水压力提高欧洲洄游银鳗的游泳效率。

High hydrostatic pressure improves the swimming efficiency of European migrating silver eel.

作者信息

Sébert P, Scaion D, Belhomme M

机构信息

Université Européenne de Bretagne, Université de Brest, EA4324-ORPHY, UFR Sciences et Techniques, 6 Avenue Le Gorgeu, CS 93837, 29238 Brest Cedex 3, France.

出版信息

Respir Physiol Neurobiol. 2009 Jan 1;165(1):112-4. doi: 10.1016/j.resp.2008.09.011. Epub 2008 Oct 5.

Abstract

To reproduce, European eels must undergo a long migration without feeding. During this migration they have to cope with many environmental factor changes, one of them being hydrostatic pressure. We focus on the effects of hydrostatic pressure on swimming energetics: does the pressure exposure modify swimming efficiency? By using a specially designed Blazka type swimming tunnel able to work under pressure, we have measured oxygen consumption of migrating male silver eels at different swimming speeds (from 0.2 to 1.0 BL/s) first at atmospheric pressure then at 101 ATA hydrostatic pressure. The results show that pressure increases the energetic swimming efficiency by decreasing oxygen consumption for a given swimming speed. Such a pressure effect could represent a remarkable adaptation enabling eels to spare their energy stores and swim for a long time.

摘要

为了繁殖,欧洲鳗鱼必须经历一段漫长的不进食洄游。在这段洄游过程中,它们必须应对许多环境因素的变化,其中之一就是静水压力。我们关注静水压力对游泳能量学的影响:压力暴露是否会改变游泳效率?通过使用一个经过特殊设计、能够在压力下工作的布拉兹卡型游泳隧道,我们首先在大气压下,然后在101ATA静水压力下,测量了洄游雄性银鳗在不同游泳速度(从0.2到1.0体长/秒)下的耗氧量。结果表明,在给定的游泳速度下,压力通过降低耗氧量提高了能量游泳效率。这种压力效应可能代表了一种显著的适应性,使鳗鱼能够节省能量储备并长时间游动。

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