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壁虎黏附的表面水和润湿性效应。

The effect of surface water and wetting on gecko adhesion.

机构信息

The University of Akron, Integrated Bioscience Program, Akron, OH 44325-3908, USA.

出版信息

J Exp Biol. 2012 Sep 1;215(Pt 17):3080-6. doi: 10.1242/jeb.070912.

Abstract

Despite profound interest in the mechanics and performance of the gecko adhesive system, relatively few studies have focused on performance under conditions that are ecologically relevant to the natural habitats of geckos. Because geckos are likely to encounter surfaces that are wet, we used shear force adhesion measurements to examine the effect of surface water and toe pad wetting on the whole-animal performance of a tropical-dwelling gecko (Gekko gecko). To test the effect of surface wetting, we measured the shear adhesive force of geckos on three substrate conditions: dry glass, glass misted with water droplets and glass fully submerged in water. We also investigated the effect of wetting on the adhesive toe pad by soaking the toe pads prior to testing. Finally, we tested for repeatability of the adhesive system in each wetting condition by measuring shear adhesion after each step a gecko made under treatment conditions. Wetted toe pads had significantly lower shear adhesive force in all treatments (0.86 ± 0.09 N) than the control (17.96 ± 3.42 N), as did full immersion in water (0.44 ± 0.03 N). Treatments with droplets of water distributed across the surface were more variable and did not differ from treatments where the surface was dry (4.72 ± 1.59 N misted glass; 9.76 ± 2.81 N dry glass), except after the gecko took multiple steps. These findings suggest that surface water and the wetting of a gecko's adhesive toe pads may have significant consequences for the ecology and behavior of geckos living in tropical environments.

摘要

尽管人们对壁虎的粘附系统的力学和性能非常感兴趣,但相对较少的研究关注在与壁虎自然栖息地相关的生态条件下的性能。因为壁虎可能会遇到潮湿的表面,所以我们使用剪切力粘附测量来检查表面水和趾垫润湿对生活在热带的壁虎(壁虎)的整体动物性能的影响。为了测试表面润湿的效果,我们在三种基底条件下测量了壁虎的剪切粘附力:干燥的玻璃、布满水滴的玻璃和完全浸入水中的玻璃。我们还通过在测试前浸泡趾垫来研究润湿对粘性趾垫的影响。最后,我们通过在处理条件下测量壁虎在每一步之后的剪切粘附力,来测试每个润湿条件下粘附系统的可重复性。润湿的趾垫在所有处理中的剪切粘附力明显低于对照(0.86±0.09 N),而完全浸入水中的处理(0.44±0.03 N)也是如此。分布在表面上的水滴处理更为多变,与表面干燥的处理(0.44±0.03 N)没有差异(0.44±0.03 N 雾化玻璃;9.76±2.81 N 干燥玻璃),除了壁虎采取了多个步骤之后。这些发现表明,表面水和壁虎粘性趾垫的润湿可能对生活在热带环境中的壁虎的生态学和行为产生重大影响。

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