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首页> 外文期刊>The Royal Society Proceedings B: Biological Sciences >Pushing versus pulling: division of labour between tarsal attachment pads in cockroaches
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Pushing versus pulling: division of labour between tarsal attachment pads in cockroaches

机译:推与拉:蟑螂固定垫之间的分工

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Adhesive organs on the legs of arthropods and vertebrates are strongly direction dependent, making contact only when pulled towards the body but detaching when pushed away from it. Here we show that the two types of attachment pads found in cockroaches (Nauphoeta cinerea), tarsal euplantulae and pretarsal arolium, serve fundamentally different functions. Video recordings of vertical climbing revealed that euplantulae are almost exclusively engaged with the substrate when legs are pushing, whereas arolia make contact when pulling. Thus, upward-climbing cockroaches used front leg arolia and hind leg euplantulae, whereas hind leg arolia and front leg euplantulae were engaged during downward climbing. Single-leg friction force measurements showed that the arolium and euplantulae have an opposite direction dependence. Euplantulae achieved maximum friction when pushed distally, whereas arolium forces were maximal during proximal pulls. This direction dependence was not explained by the variation of shear stress but by different contact areas during pushing or pulling. The changes in contact area result from the arrangement of the flexible tarsal chain, tending to detach the arolium when pushing and to peel off euplantulae when in tension. Our results suggest that the euplantulae in cockroaches are not adhesive organs but ‘friction pads’, mainly providing the necessary traction during locomotion.
机译:节肢动物和脊椎动物的腿上的粘附器官强烈地依赖于方向,仅当被拉向身体时才发生接触,而被推离身体时则脱离。在这里,我们显示出在蟑螂(Nauphoeta cinerea)中发现的两种类型的附着垫,骨真足动物和tar骨前rol,它们具有根本不同的功能。垂直攀爬的视频记录表明,当腿部被推动时,草几乎只与基质接合,而牵拉时,芦荟则与基质接触。因此,向上攀爬的蟑螂使用前腿芳毛和后腿真足植物,而后腿芳毛和前腿真脚植物在向下攀爬过程中被接合。单腿摩擦力测量表明,小球和真叶植物具有相反的方向依赖性。当向远侧推动时,草达到最大的摩擦力,而向近侧拉动时,气瓶推力最大。这种方向依赖性不是通过剪切应力的变化来解释,而是通过在推拉过程中的不同接触面积来解释。接触面积的变化是由于挠性骨链的排列而引起的,当推动时,它们会分离出香气,而在张紧状态下,则会剥去真草。我们的研究结果表明,蟑螂中的植入物不是粘性器官,而是“摩擦垫”,主要在运动过程中提供了必要的牵引力。

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