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首页> 外文期刊>Acta biomaterialia >Morphological and textural evolution of the prismatic ultrastructure in mollusc shells: A comparative study of Pinnidae species
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Morphological and textural evolution of the prismatic ultrastructure in mollusc shells: A comparative study of Pinnidae species

机译:软体动物壳体棱镜超微结构的形态学和纹理演化:Pinnidae物种的比较研究

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Molluscan shells, exhibiting a variety of complex three-dimensional architectures, are an exemplar model system to study biogenic mineral formation by living organisms. Recent studies have demonstrated that the deposition process of some shell ultrastructures can be described using classical analytical models borrowed from materials physics, which were developed to predict the structural evolution of man-made and geological polycrystalline composite assemblies. In the current study, we use this newly developed capacity to quantitatively describe the morphogenesis of the prismatic ultrastructure in three shells from the bivalve family Pinnidae towards establishing a correlation between structure, texture, growth kinetics, topology and phylogeny of the species. Using data collected by electron microscopy, synchrotron-based microtomography, electron backscatter diffraction analysis (EBSD) and X-ray diffraction we demonstrate that the prismatic ultrastructures in Pinnidae are formed following either ideal or triple-junction-controlled kinetics, which are shown to be closely linked to the morphological and topological characteristics, as well as crystallographic texture of these biocomposites. The experimental and analytical framework presented in this comparative study can serve as an additional tool for classifying molluscan shell ultrastructures on the levels of structural and textural morphogenesis.
机译:展示各种复杂的三维架构的软体动物炮弹是一种示例性模型系统,用于研究生物体的生物矿物质形成。最近的研究表明,可以使用从材料物理学借入的经典分析模型来描述一些壳超微结构的沉积过程,这是开发的,这是为了预测人造和地质多晶复合组件的结构演变。在目前的研究中,我们使用这种新开发的能力来定量地描述三个壳中的棱镜超微结构的形态发生,从双壳族脊尼曲面建立了结构,纹理,生长动力学,拓扑和系统的相关性。使用电子显微镜收集的数据,基于同步rotron的微微映射,电子反向散射衍射分析(EBSD)和X射线衍射,我们证明了Pinnidae中的棱柱形超微结构在​​理想的或三联接控制的动力学之后形成,其显示为与形态学和拓扑特性密切相关,以及这些生物复合材料的晶体纹理。在该比较研究中提出的实验和分析框架可以作为分类软体动物壳超微结构对结构和纹理形态发生的水平进行分类的额外工具。

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