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Titlebook: Attachment Structures and Adhesive Secretions in Arachnids; Jonas O. Wolff,Stanislav N. Gorb Book 2016 Springer International Publishing S

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Attachment Structures and Adhesive Secretions in Arachnids978-3-319-45713-0Series ISSN 2211-0593 Series E-ISSN 2211-0607
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The Classical (Non-quantized) EM Fields in arthropods. Here we review the different types of such structures in arachnids. The claws of appendages are primarily to increase foothold on walking and climbing substrates, but may also be important means of prey capture, which often comes with structural modifications. Claws are often suppor
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Computerlinguistische Einführungt the tip of bendable hair-like structures, such as setae or microtrichia, whose shafts additionally contribute to the overall conformability of the attachment device. Such spatulate hairs have analogously evolved in the feet of different animal groups and are efficient means of dynamic attachment.
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Computerlinguistische Einführungub-micron scale, very high aspect ratio fibres, exhibiting a cylindrical shape may get tacky due to their high surface-to-volume ratio. Bundles of delicate, tough nano-fibres may recruit dry adhesion by the action of van der Waals, hygroscopic or electrostatic forces, as demonstrated for the cribell
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Computerlinguistische Einführungrve long-term attachment. Among arachnids there are only few examples of such structures built by cuticle, like specialized setae in males of some mites serving attachment to the mating partner during copulation. In contrast, such structures are frequently found in external secretion products for sp
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