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A simple high-resolution non-destructive method for determining the spatial gradient of the elastic modulus of insect cuticle

机译:一种简单高分辨率无损的确定昆虫表皮弹性模量空间梯度的方法

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摘要

Nature has evolved structures with high load-carrying capacity and long-term durability. The principles underlying the functionality of such structures, if studied systematically, can inspire the design of more efficient engineering systems. An important step in this process is to characterize the material properties of the structure under investigation. However, direct mechanical measurements on small complex-shaped biological samples involve numerous technical challenges. To overcome these challenges, we developed a method for estimation of the elastic modulus of insect cuticle, the second most abundant biological composite in nature, through simple light microscopy. In brief, we established a quantitative link between the autofluorescence of different constituent materials of insect cuticle, and the resulting mechanical properties. This approach was verified using data on cuticular structures of three different insect species. The method presented in this study allows three-dimensional visualisation of the elastic modulus, which is impossible with any other available technique. This is especially important for precise finite-element modelling of cuticle, which is known to have spatially graded properties. Considering the simplicity, ease of implementation and high-resolution of the results, our method is a crucial step towards a better understanding of material–function relationships in insect cuticle, and can potentially be adapted for other graded biological materials.
机译:大自然演变成具有高承载能力和长期耐久性的结构。如果系统地研究这些结构的功能所基于的原理,可以激发更高效的工程系统的设计。此过程中的一个重要步骤是表征所研究结构的材料特性。然而,对小的复杂形状的生物样品进行直接机械测量涉及许多技术挑战。为克服这些挑战,我们开发了一种通过简单的光学显微镜估算昆虫表皮(自然界中第二丰富的生物复合物)的弹性模量的方法。简而言之,我们在昆虫表皮的不同构成材料的自发荧光与所产生的机械性能之间建立了定量联系。使用关于三种不同昆虫种类的表皮结构的数据验证了该方法。本研究中介绍的方法允许三维可视化弹性模量,这是任何其他可用技术都无法实现的。这对于角质层的精确有限元建模尤为重要,已知该角质层具有空间渐变特性。考虑到结果的简单性,易实现性和高分辨率,我们的方法是迈向更好地了解昆虫表皮中材料与功能关系的关键步骤,并且有可能适用于其他分级生物材料。

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