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首页> 外文期刊>Microscopy and microanalysis: The official journal of Microscopy Society of America, Microbeam Analysis Society, Microscopical Society of Canada >The Calamistrum of the Feather-Legged Spider Uloborus plumipes Investigated by Focused Ion Beam and Scanning Electron Microscopy (FIB-SEM) Tomography
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The Calamistrum of the Feather-Legged Spider Uloborus plumipes Investigated by Focused Ion Beam and Scanning Electron Microscopy (FIB-SEM) Tomography

机译:通过聚焦离子束和扫描电子显微镜(FIB-SEM)断层扫描来研究羽毛腿蜘蛛Uloborus漏洞的脉模

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摘要

Spiders are natural specialists in fiber processing. In particular, cribellate spiders manifest this ability as they produce a wool of nanofibers to capture prey. During its production they deploy a sophisticated movement of their spinnerets to darn in the fibers as well as a comb-like row of setae, termed calamistrum, on the metatarsus which plays a key role in nanofiber processing. In comparison to the elaborate nanofiber extraction and handling process by the spider's calamistrum, the human endeavors of spinning and handling of artificial nanofibers is still a primitive technical process. An implementation of biomimetics in spinning technology could lead to new materials and applications. Despite the general progress in related fields of nanoscience, the expected leap forward in spinning technology depends on a better understanding of the specific shapes and surfaces that control the forces at the nanoscale and that are involved in the mechanical processing of the nanofibers, respectively. In this study, the authors investigated the morphology of the calamistrum of the cribellate spider Uloborus plumipes. Focused ion beam and scanning electron microscopy tomography provided a good image contrast and the best trade-off between investigation volume and spatial resolution. A comprehensive three-dimensional model is presented and the putative role of the calamistrum in nanofiber processing is discussed.
机译:蜘蛛是纤维加工的自然专家。特别是,克拉特蜘蛛会表现出这种能力,因为它们产生纳米纤维的羊毛以捕获猎物。在其生产过程中,它们在纤维中部署了它们的喷丝腹部的复杂运动,以及在跖骨处理中发挥着关键作用的MetaTarus的梳子般的Setae的梳子状行。与蜘蛛葫芦的精心纳米纤维提取和处理过程相比,人工纳米纤维的纺丝和处理的人类致力仍是一种原始的技术方法。纺纱技术中的生物体的实施可能导致新材料和应用。尽管纳米科学相关领域的一般进展,但纺纱技术的预期飞跃取决于更好地理解控制纳米级和纳米纤维的机械加工的特定形状和表面。在这项研究中,作者研究了Cribellate Spider Uloborus Plumpipes的Calamistrum的形态。聚焦离子束和扫描电子显微镜断层扫描提供了良好的图像对比度和调查体积和空间分辨率之间的最佳权衡。讨论了综合的三维模型,并讨论了Calamistrum在纳米纤维处理中的推定作用。

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