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天然附着机制的仿生研究:纤维素和几丁质成像 第2部分

A biomimetic study of natural attachment mechanisms: imaging cellulose and chitin part 2.

作者信息

Saunders Bruce E

机构信息

University of Bath, 54 Ballance Street, Bath, UK.

出版信息

Robotics Biomim. 2015;2(1):7. doi: 10.1186/s40638-015-0032-9. Epub 2015 Dec 9.

Abstract

To create a model of a biomimetic product from the hook after a biomimetic methodology has been applied, this paper describes an investigation into the most appropriate method of shape acquisition for the purposes of reproduction and product development towards manufacture. This morphological study investigates confocal microscopy, SEM and other microscopy techniques. Confocal microscopy was selected as being most appropriate and small structures of cellulose and insect cuticle imaged. The benefits and disadvantages of this approach are noted. This paper is the result of research into microscopy techniques coupled with state-of-the-art manufacturing techniques. The result is this experiment with a single-phase confocal microscope to capture their 3-D images, both of cellulose and of chitin, without any specimen-specific treatment. Emphasis must be placed upon the cleanliness of the process since so many Natural attachment mechanisms are of this order of size and confocal microscopy offers opportunities for physical examination of microstructures and their interaction, in situ, with non-destructive inspection. This methodology has to develop further for the source of Nature's designs to be rifled for ideas.

摘要

在应用仿生方法从钩子创建仿生产品模型后,本文描述了一项关于为制造目的进行复制和产品开发而获取最合适形状的方法的研究。这项形态学研究调查了共聚焦显微镜、扫描电子显微镜和其他显微镜技术。共聚焦显微镜被选为最合适的方法,并对纤维素和昆虫角质层的微小结构进行了成像。记录了这种方法的优缺点。本文是将显微镜技术与最先进的制造技术相结合的研究成果。结果是使用单相共聚焦显微镜进行本实验,以捕获纤维素和几丁质的三维图像,且无需任何针对特定标本的处理。必须强调过程的清洁度,因为许多自然附着机制都处于这个尺寸级别,而共聚焦显微镜为微观结构及其与无损检测的原位相互作用提供了物理检查的机会。为了从自然设计的源泉中挖掘创意,这种方法还需要进一步发展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9c35/4674523/7971ca7e2df4/40638_2015_32_Fig1_HTML.jpg

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