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基于图像的 Matlab 应用程序,用于昆虫翅膀的自动建模和形态分析。

An image based application in Matlab for automated modelling and morphological analysis of insect wings.

机构信息

Department of Functional Morphology and Biomechanics, Institute of Zoology, Kiel University, Kiel, Germany.

Department of Mechanical Engineering, Ahrar Institute of Technology and Higher Education, Rasht, Iran.

出版信息

Sci Rep. 2022 Aug 17;12(1):13917. doi: 10.1038/s41598-022-17859-9.

Abstract

Despite extensive research on the biomechanics of insect wings over the past years, direct mechanical measurements on sensitive wing specimens remain very challenging. This is especially true for examining delicate museum specimens. This has made the finite element method popular in studies of wing biomechanics. Considering the complexities of insect wings, developing a wing model is usually error-prone and time-consuming. Hence, numerical studies in this area have often accompanied oversimplified models. Here we address this challenge by developing a new tool for fast, precise modelling of insect wings. This application, called WingGram, uses computer vision to detect the boundaries of wings and wing cells from a 2D image. The app can be used to develop wing models that include complex venations, corrugations and camber. WingGram can extract geometric features of the wings, including dimensions of the wing domain and subdomains and the location of vein junctions. Allowing researchers to simply model wings with a variety of forms, shapes and sizes, our application can facilitate studies of insect wing morphology and biomechanics. Being an open-access resource, WingGram has a unique application to expand how scientists, educators, and industry professionals analyse insect wings and similar shell structures in other fields, such as aerospace.

摘要

尽管在过去的几年里,人们对昆虫翅膀的生物力学进行了广泛的研究,但对敏感的翅膀标本进行直接的机械测量仍然非常具有挑战性。对于检查精致的博物馆标本来说尤其如此。这使得有限元法在翅膀生物力学研究中很受欢迎。考虑到昆虫翅膀的复杂性,开发翅膀模型通常容易出错且耗时。因此,该领域的数值研究通常伴随着过于简化的模型。在这里,我们通过开发一种用于快速、精确建模昆虫翅膀的新工具来应对这一挑战。这个名为 WingGram 的应用程序使用计算机视觉从 2D 图像中检测翅膀和翅膀细胞的边界。该应用程序可用于开发包括复杂脉纹、波纹和拱度的翅膀模型。WingGram 可以提取翅膀的几何特征,包括翅膀区域和子区域的尺寸以及脉纹连接点的位置。允许研究人员用各种形式、形状和大小简单地建模翅膀,我们的应用程序可以促进昆虫翅膀形态和生物力学的研究。作为一个开放获取的资源,WingGram 具有独特的应用,可以扩展科学家、教育工作者和行业专业人士分析昆虫翅膀和其他领域(如航空航天)类似壳结构的方式。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f316/9386019/f00c9d79eda6/41598_2022_17859_Fig1_HTML.jpg

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