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首页> 外文期刊>The Journal of Experimental Biology >Micromechanical properties of consecutive layers in specialized insect cuticle: the gula of Pachnoda marginata (Coleoptera, Scarabaeidae) and the infrared sensilla of Melanophila acuminata (Coleoptera, Buprestidae).
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Micromechanical properties of consecutive layers in specialized insect cuticle: the gula of Pachnoda marginata (Coleoptera, Scarabaeidae) and the infrared sensilla of Melanophila acuminata (Coleoptera, Buprestidae).

机译:专门的昆虫表皮中连续层的微机械特性:边缘实蝇(Cachoptera,Scarabaeidae)的牙龈和黑变种Melanophila acuminata(Coleoptera,Buprestidae)的红外感应器。

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摘要

Insect cuticle is a highly adaptive material that fulfils a wide spectrum of different functions. Cuticle does not only build the exoskeleton with diverse moveable parts but is also an important component of a stunning variety of mechanosensory receptors. Therefore, the mechanical properties of these specialized cuticular systems are of crucial importance. We studied the different cuticular layers of the head part (gula) of the head-to-neck ball articulation of Pachnoda marginata and of the photomechanic infrared (IR) sensilla of Melanophila acuminata on the basis of cross sections. In our study, we combined histological methods (i.e. detection of the different types of cuticle by specific staining) with measurements of hardness (H) and reduced elastic modulus (E(r)) by nanoindentation technique. In the gula of Pachnoda we found an unusual aberrance from the well-known layering. Between the epi- and exocuticle, two meso- and one endocuticular layers are deposited which are softer and more elastic than the underlying exo- and mesocuticular layers. The hardest of all examined materials is the cuticle of the exocuticular shell of the internal sphere of the Melanophila IR sensillum with H=0.53GPa whereas the inner mesocuticular core of the sensillum represents the most elastic and softest layer with values of H=0.29GPa and E(r)=4.8GPa. Results are discussed with regard to the proposed functions.
机译:昆虫表皮是一种高度适应性的材料,可实现多种不同功能。角质层不仅使外骨骼具有各种可动部分,而且还是各种惊人的机械感觉受体的重要组成部分。因此,这些专门的表皮系统的机械性能至关重要。我们根据横截面研究了Pachnoda marginata头对颈部球关节头部的不同表皮层和Amelinata acuminata的光机械红外(IR)感应器。在我们的研究中,我们将组织学方法(即通过特异性染色检测不同类型的角质层)与通过纳米压痕技术测量硬度(H)和降低的弹性模量(E(r))相结合。在帕奇诺达(Pachnoda)的沟中,我们从众所周知的分层中发现了异常的异常。在表皮层和表皮层之间,沉积了两个中层和一个表皮层,它们比下面的表皮层和中层皮层更柔软,更有弹性。在所有检查过的材料中,最坚硬的是Melanophila IR sensillum内球的表皮壳角质层,其H = 0.53GPa,而sensillum的内表皮内核代表最弹性和最柔软的层,其值H = 0.29GPa和E(r)= 4.8GPa。讨论了有关建议功能的结果。

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