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首页> 外文期刊>The Journal of Experimental Biology >Surface roughness effects on attachment ability of the spider Philodromus dispar (Araneae, Philodromidae)
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Surface roughness effects on attachment ability of the spider Philodromus dispar (Araneae, Philodromidae)

机译:表面粗糙度对蜘蛛Philodromus dispar(Araneae,Philodromidae)附着力的影响

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The morphology of the tarsal attachment system of the running spider Philodromus dispar Walckenaer 1826 (Araneae, Philodomidae) was studied using scanning electron microscopy and its performance was experimentally tested in traction force measurements. Each pretarsus bears a hierarchically built hairy adhesive pad that consists of a dense array of flattened setae covered with numerous microtrichia on the substrate-facing side. Microtrichia carry spatulate end tips that allow close contact with the substrate. Forces were estimated on tethered living specimens on rough epoxy resin surfaces (asperity size 0.3, 1, 3, 9 and 12 mu m) and on a smooth surface as a control. A strong reduction in adhesion was observed for substrates with an asperity size of 0.3 and 1 mu m. Comparison of the present data with previous results of different organisms demonstrates that the difference in force reduction on rough substrata depends on the dimensions of terminal contact elements (spatulae).
机译:使用扫描电子显微镜研究了正在运转的蜘蛛Philodromus dispar Walckenaer 1826(Araneae,Philodomidae)的附着系统的形态,并在牵引力测量中对其性能进行了实验测试。每个前tar上都有一个层次分明的毛状粘性垫,该粘性垫由密集的扁平扁平刚毛阵列组成,在面向基材的一侧覆盖有大量微毛。小毛rich菌带有结实的末端,可与底物紧密接触。估计在粗糙的环氧树脂表面(粗糙尺寸0.3、1、3、9和12μm)和光滑表面上的拴系活体样品上的力,以作为对照。对于粗糙尺寸为0.3和1μm的基材,观察到粘附力的强烈降低。本数据与不同生物的先前结果的比较表明,在粗糙基质上作用力减小的差异取决于终端接触元件(小叶)的尺寸。

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