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The use of clamping grips and friction pads by tree frogs for climbing curved surfaces

机译:树蛙使用夹紧把手和摩擦垫来攀爬曲面

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摘要

Most studies on the adhesive mechanisms of climbing animals have addressed attachment against flat surfaces, yet many animals can climb highly curved surfaces, like twigs and small branches. Here we investigated whether tree frogs use a clamping grip by recording the ground reaction forces on a cylindrical object with either a smooth or anti-adhesive, rough surface. Furthermore, we measured the contact area of fore and hindlimbs against differently sized transparent cylinders and the forces of individual pads and subarticular tubercles in restrained animals. Our study revealed that frogs use friction and normal forces of roughly a similar magnitude for holding on to cylindrical objects. When challenged with climbing a non-adhesive surface, the compressive forces between opposite legs nearly doubled, indicating a stronger clamping grip. In contrast to climbing flat surfaces, frogs increased the contact area on all limbs by engaging not just adhesive pads but also subarticular tubercles on curved surfaces. Our force measurements showed that tubercles can withstand larger shear stresses than pads. SEM images of tubercles revealed a similar structure to that of toe pads including the presence of nanopillars, though channels surrounding epithelial cells were less pronounced. The tubercles' smaller size, proximal location on the toes and shallow cells make them probably less prone to buckling and thus ideal for gripping curved surfaces.
机译:关于攀爬动物粘附机制的大多数研究都针对附着在平坦表面上,但是许多动物仍可以攀爬高度弯曲的表面,例如树枝和小树枝。在这里,我们通过记录光滑物体或反粘合粗糙表面在圆柱形物体上的地面反作用力,来研究树蛙是否使用夹紧力。此外,我们测量了前肢和后肢在不同大小的透明圆柱体上的接触面积,以及在受约束的动物中单个垫和关节下结节的力。我们的研究表明,青蛙使用摩擦力和法向力大致相同的大小来抓住圆柱形物体。在攀爬非粘性表面时,相对的两腿之间的压力几乎翻了一番,表明其夹紧力更强。与攀爬平坦的表面相反,青蛙不仅通过粘合垫而且还通过弯曲表面上的关节下结节来增加所有肢体的接触面积。我们的力测量结果表明,结节可以比垫块承受更大的剪切应力。结节的SEM图像显示与脚趾垫相似的结构,包括存在纳米柱,尽管围绕上皮细胞的通道不太明显。结节较小的尺寸,在脚趾上的近端位置和浅细胞使它们可能不易弯曲,因此非常适合抓握弯曲的表面。

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