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湿颗粒介质的受控制备揭示了蜥蜴埋葬能力的局限性。

Controlled preparation of wet granular media reveals limits to lizard burial ability.

作者信息

Sharpe Sarah S, Kuckuk Robyn, Goldman Daniel I

机构信息

School of Physics, Georgia Institute of Technology, USA.

出版信息

Phys Biol. 2015 Jun 25;12(4):046009. doi: 10.1088/1478-3975/12/4/046009.

DOI:10.1088/1478-3975/12/4/046009
PMID:26109565
Abstract

Many animals move within ground composed of granular media (GM); the resistive properties of such substrates can depend on water content and compaction, but little is known about how such parameters affect locomotion or the physics of drag and penetration. Using apparatus to control compaction of GM, our recent studies of movement in dry GM have revealed locomotion strategies of specialized dry-sand-swimming reptiles. However, these animals represent a small fraction of the diversity and presumed burial strategies of fossorial reptilian fauna. Here we develop a system to create states of wet GM of varying moisture content and compaction in quantities sufficient to study the burial and subsurface locomotion of the Ocellated skink (C. ocellatus), a generalist lizard. X-ray imaging revealed that in wet and dry GM the lizard slowly buried (≈30 s) propagating a wave from head to tail, while moving in a start-stop motion. During forward movement, the head oscillated, and the forelimb on the convex side of the body propelled the animal. Although body kinematics and 'slip' were similar in both substrates, the burial depth was smaller in wet GM. Penetration and drag force experiments on smooth cylinders revealed that wet GM was ≈4× more resistive than dry GM. In total, our measurements indicate that while the rheology of the dry and wet GM differ substantially, the lizard's burial motor pattern is conserved across substrates, while its burial depth is largely constrained by environmental resistance.

摘要

许多动物在由颗粒介质(GM)构成的地面内移动;这种基质的阻力特性可能取决于含水量和压实程度,但对于这些参数如何影响运动或阻力与穿透的物理过程却知之甚少。利用控制GM压实的设备,我们最近对干燥GM中运动的研究揭示了专门的干沙游泳爬行动物的运动策略。然而,这些动物只占穴居爬行动物群落多样性和假定埋葬策略的一小部分。在这里,我们开发了一个系统,以创建不同含水量和压实程度的湿GM状态,其数量足以研究一种普通蜥蜴——眼斑石龙子(C. ocellatus)的埋葬和地下运动。X射线成像显示,在湿GM和干GM中,蜥蜴以头尾传播波浪的方式缓慢埋葬(约30秒),同时以启停运动方式移动。在向前运动过程中,头部摆动,身体凸侧的前肢推动动物前进。尽管两种基质中的身体运动学和“滑动”相似,但在湿GM中的埋葬深度较小。对光滑圆柱体进行的穿透和阻力实验表明,湿GM的阻力比干GM大约高4倍。总的来说,我们的测量结果表明,虽然干GM和湿GM的流变学有很大差异,但蜥蜴的埋葬运动模式在不同基质中是保守的,而其埋葬深度在很大程度上受环境阻力的限制。

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