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首页> 外文期刊>Acta biomaterialia >Preferred crystallographic texture of alpha-chitin as a microscopic and macroscopic design principle of the exoskeleton of the lobster Homarus americanus.
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Preferred crystallographic texture of alpha-chitin as a microscopic and macroscopic design principle of the exoskeleton of the lobster Homarus americanus.

机译:α-几丁质的优选晶体学织构作为龙虾美洲大螯虾外骨骼的微观和宏观设计原理。

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The crystallographic texture of the crystalline alpha-chitin matrix in the biological composite material forming the exoskeleton of the lobster Homarus americanus has been determined using synchrotron X-ray pole figure measurements and the calculation of orientation distribution functions. The study has two objectives. The first one is to elucidate crystallographic building principles via the preferred synthesis of certain orientations in crystalline organic tissue. The second one is to study whether a general global design principle exists for the exoskeleton which uses preferred textures relative to the local coordinate system throughout the lobster cuticle. The first point, hence, pursues the question of the extent to which and why alpha-chitin reveals preferred textures in the lobster cuticle. The second point addresses the question of why and whether such preferred textures (and the resulting anisotropy) exist everywhere in the exoskeleton. Concerning the first aspect, a strong preference of a fiber texture of the orthorhombic alpha-chitin is observed which is characterized by a 020 crystal axis normal to the exoskeleton surface for the chitin matrix. The second question is tackled by studying samples from different parts of the carapace. While the first aspect takes a microscopic perspective at the basic structure of the biological composite, the second point aims at building a bridge between an understanding of the microstructure and the macroscopic nature of a larger biological construction. We observe that the texture is everywhere in the carapace optimized in such a way that the same crystallographic axis of the chitin matrix is parallel to the normal to the local tangent plane of the carapace. Notable differences in the texture are observed between hard mineralized parts on the one hand and soft membranous parts on the other. The study shows that the complex hierarchical microstructure of the arthropod cuticle can be well described by surprisingly simple crystallographic textures.
机译:已使用同步加速器X射线极图测量和方向分布函数的计算确定了形成龙虾美洲大螯虾外骨骼的生物复合材料中晶体α-甲壳质基质的晶体织构。该研究有两个目标。第一个是通过在晶体有机组织中某些取向的优选合成来阐明晶体学构建原理。第二个是研究外骨骼是否存在通用的总体设计原则,该原则相对于整个龙虾角质层使用相对于局部坐标系的首选纹理。因此,第一点是关于甲壳质在多大程度上以及为什么在龙虾角质层中显示出优选质地的问题。第二点是为什么这样的优选纹理(以及由此产生的各向异性)为什么存在于外骨骼的各处的问题。关于第一方面,观察到正交晶α-甲壳质的纤维质地的强烈偏爱,其特征在于对于甲壳质基质,垂直于外骨骼表面的020晶轴。第二个问题是通过研究甲壳不同部位的样本解决的。尽管第一方面从微观角度看待生物复合材料的基本结构,但第二点旨在在理解微观结构和更大的生物构造的宏观性质之间架起桥梁。我们观察到,甲壳中的各处都以这种方式优化了质地,使得几丁质基质的相同结晶轴平行于甲壳局部切平面的法线。在一方面的硬矿化部分和另一方面的软质膜部分之间观察到质地上的显着差异。研究表明,节肢动物表皮的复杂的分层微观结构可以通过令人惊讶的简单晶体学结构很好地描述。

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