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Slippery pores: anti-adhesive effect of nanoporous substrates on the beetle attachment system

机译:湿滑的毛孔:纳米多孔基质对甲虫附着系统的抗粘附作用

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摘要

Traction experiments with adult seven-spotted ladybird beetles Coccinella septempunctata (L.) were carried out to study the influence of surface structure on insect attachment. Force measurements were performed with tethered walking insects, both males and females, on five different substrates: (i) smooth glass plate, (ii) smooth solid Al2O3 (sapphire) disc, and (iii–v) porous Al2O3 discs (anodisc membranes) with the same pore diameter but different porosity. The traction force of beetles ranged from 0.16 to 16.59 mN in males and from 0.32 to 8.99 mN in females. In both sexes, the highest force values were obtained on smooth solid surfaces, where males showed higher forces than females. On all three porous substrates, forces were significantly reduced in both males and females, and the only difference within these surfaces was obtained between membranes with the highest and lowest porosity. Males produced essentially lower forces than females on porous samples. The reduction in insect attachment on anodisc membranes may be explained by (i) possible absorption of the secretion fluid from insect adhesive pads by porous media and/or (ii) the effect of surface roughness. Differences in attachment between males and females were probably caused by the sexual dimorphism in the terminal structure of adhesive setae.
机译:进行了成年七斑瓢虫瓢虫Coccinella septempunctata(L.)的牵引实验,以研究表面结构对昆虫附着的影响。力的测量是在5种不同的基质上用拴系的行走昆虫(雄性和雌性)进行的:(i)光滑的玻璃板,(ii)光滑的固态Al2O3(蓝宝石)盘,以及(iii–v)多孔Al2O3盘(阳极盘膜)具有相同的孔径但不同的孔隙率。雄性甲虫的牵引力范围为0.16至16.59 mN,雌性为0.32至8.99 mN。在男女两性中,最大力值是在光滑的固体表面上获得的,其中男性显示出比女性更高的力。在所有三种多孔基材上,雄性和雌性的力均显着降低,并且在这些表面内的唯一差异是在孔隙率最高和最低的膜之间获得的。在多孔样品上,雄性产生的力明显低于雌性。昆虫附着在阳极膜上的减少可以通过以下方式解释:(i)多孔介质可能从昆虫粘附垫吸收分泌液,和/或(ii)表面粗糙度的影响。雄性和雌性之间的依恋差异可能是由于粘毛刚毛末端结构中的性二态性引起的。

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