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盲鳗“逃脱大师”:挤过小开口的生物力学与行为

Hagfish Houdinis: biomechanics and behavior of squeezing through small openings.

作者信息

Freedman Calli R, Fudge Douglas S

机构信息

Dept. of Integrative Biology, University of Guelph, Guelph, Ontario, Canada N1G 2W1.

Dept. of Integrative Biology, University of Guelph, Guelph, Ontario, Canada N1G 2W1

出版信息

J Exp Biol. 2017 Mar 1;220(Pt 5):822-827. doi: 10.1242/jeb.151233. Epub 2017 Jan 13.

Abstract

Hagfishes are able to squeeze through small openings to gain entry to crevices, burrows, hagfish traps and carcasses, but little is known about how they do this, or what the limits of this ability are. The purpose of this study was to describe this ability, and to investigate possible mechanisms by which it is accomplished. We investigated the hypothesis that the passive movement of blood within a hagfish's flaccid subcutaneous sinus allows it to squeeze through narrow apertures that it would not be able to if it were turgid. To test this hypothesis, we analyzed videos of Atlantic hagfish () and Pacific hagfish () moving through narrow apertures in the lab. We measured changes in body width as the animals moved through these openings and documented the behaviors associated with this ability. We found that hagfishes are able to pass through narrow slits that are less than one half the width of their bodies. Our results are consistent with the idea that a flaccid subcutaneous sinus allows hagfish to squeeze through narrow apertures by facilitating a rapid redistribution of venous blood. In addition, we describe nine distinct behaviors associated with this ability, including a form of non-undulatory locomotion also seen in snakes and lampreys. Our results illuminate a behavior that may be a critical component of the hagfish niche, as a result of its likely importance in feeding and avoiding predators.

摘要

盲鳗能够挤过小开口进入裂缝、洞穴、盲鳗陷阱和动物尸体中,但对于它们如何做到这一点,以及这种能力的极限是什么,人们知之甚少。本研究的目的是描述这种能力,并探究其实现的可能机制。我们研究了这样一个假设:盲鳗松弛的皮下窦内血液的被动流动使其能够挤过狭窄的小孔,如果它处于肿胀状态则无法做到这一点。为了验证这一假设,我们分析了大西洋盲鳗()和太平洋盲鳗()在实验室中穿过狭窄小孔的视频。我们测量了动物穿过这些开口时身体宽度的变化,并记录了与这种能力相关的行为。我们发现盲鳗能够穿过宽度小于其身体一半的狭窄缝隙。我们的结果与这样一种观点一致,即松弛的皮下窦通过促进静脉血的快速重新分布,使盲鳗能够挤过狭窄的小孔。此外,我们描述了与这种能力相关的九种不同行为,包括一种在蛇和七鳃鳗中也能看到的非波动式运动形式。我们的结果揭示了一种行为,由于其在觅食和躲避捕食者方面可能具有的重要性,它可能是盲鳗生态位的一个关键组成部分。

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