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首页> 外文期刊>Journal of the Royal Society Interface >Liquid dispensing in the adhesive hairy pads of dock beetles
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Liquid dispensing in the adhesive hairy pads of dock beetles

机译:液体分配在码头甲虫的粘附毛茸茸的垫中

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Many insects can climb on smooth inverted substrates using adhesive hairy pads on their legs. The hair-surface contact is often mediated by minute volumes of liquid, which form capillary bridges in the contact zones and aid in adhesion. The liquid transport to the contact zones is poorly understood. We investigated the dynamics of liquid secretion in the dock beetle Gastrophysa viridula by quantifying the volume of the deposited liquid footprints during simulated walking experiments. The footprint volume increased with pad-surface contact time and was independent of the non-contact time. Furthermore, the footprint volume decreased to zero after reaching a threshold cumulative volume (approx. 30 fl) in successive steps. This suggests a limited reservoir with low liquid influx. We modelled our results as a fluidic resistive system and estimated the hydraulic resistance of a single attachment hair of the order of MPa . s/fl. The liquid secretion in beetle hairy pads is dominated by passive suction of the liquid during the contact phase. The high calculated resistance of the secretion pathway may originate from the nanosized channels in the hair cuticle. Such nanochannels presumably mediate the transport of cuticular lipids, which are chemically similar to the adhesive liquid.
机译:许多昆虫可以在其腿上使用粘性长毛垫在光滑的倒置基板上爬升。毛发表面接触通常由微小体积的液体介导,其在接触区域中形成毛细管桥并有助于粘附。接触区域的液体运输很差。我们通过量化模拟行走实验期间沉积的液体占地面积的体积来调查码头甲虫肉眼疣中的液体分泌的动态。脚印体积随焊盘表面接触时间而增加,并且与非接触时间无关。此外,在连续步骤中达到阈值累积量(约30 v)之后,占地面积减小到零。这表明一种具有低液体流入的有限储层。我们将我们的结果建模为流体电阻系统,并估计了MPa阶的单个附着头发的液压阻力。 s / fl。甲虫长毛垫中的液体分泌通过在接触阶段期间液体的被动抽吸主导。分泌途径的高计算抗性可以源自毛发角质层中的纳米型通道。这种纳米鼓道可能介导切口脂质的运输,其与粘合剂液体化学相似。

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