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本文引用的文献

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A time-domain nuclear magnetic resonance study of Mediterranean scleractinian corals reveals skeletal-porosity sensitivity to environmental changes.对地中海石珊瑚骨骼多孔性的时域核磁共振研究表明,其对环境变化敏感。
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2
Control of aragonite deposition in colonial corals by intra-skeletal macromolecules.通过骨骼内大分子控制群体珊瑚中的方解石沉积。
J Struct Biol. 2013 Aug;183(2):226-38. doi: 10.1016/j.jsb.2013.05.001. Epub 2013 May 10.
3
Evaluation of strengthening mechanisms in calcite single crystals from mollusk shells.评估来自软体动物贝壳的方解石单晶体中的强化机制。
Acta Biomater. 2013 Feb;9(2):5353-9. doi: 10.1016/j.actbio.2012.09.030. Epub 2012 Oct 2.
4
Phase transitions in biogenic amorphous calcium carbonate.生物成因非晶碳酸钙中的相转变。
Proc Natl Acad Sci U S A. 2012 Apr 17;109(16):6088-93. doi: 10.1073/pnas.1118085109. Epub 2012 Apr 4.
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A comparative study of the physical and mechanical properties of three natural corals based on the criteria for bone-tissue engineering scaffolds.基于骨组织工程支架标准对三种天然珊瑚物理和力学性能的比较研究。
J Mater Sci Mater Med. 2009 Jun;20(6):1273-80. doi: 10.1007/s10856-009-3695-3. Epub 2009 Mar 9.
6
Bone fracture: When the cracks begin to show.骨折:当裂缝开始显现时。
Nat Mater. 2008 Aug;7(8):610-2. doi: 10.1038/nmat2240.
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The influence of internal length scales on mechanical properties in natural nanocomposites: a comparative study on inner layers of seashells.
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8
Nanoscale anisotropic plastic deformation in single crystal aragonite.文石单晶中的纳米级各向异性塑性变形。
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9
The effect of gravity on coral morphology.重力对珊瑚形态的影响。
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Morphological models of radiate accretive growth and the influence of hydrodynamics.辐射增生生长的形态学模型及流体动力学的影响。
J Theor Biol. 2001 Apr 7;209(3):257-74. doi: 10.1006/jtbi.2001.2261.

珊瑚骨骼的各向同性微观力学性能。

Isotropic microscale mechanical properties of coral skeletons.

作者信息

Pasquini Luca, Molinari Alan, Fantazzini Paola, Dauphen Yannicke, Cuif Jean-Pierre, Levy Oren, Dubinsky Zvy, Caroselli Erik, Prada Fiorella, Goffredo Stefano, Di Giosia Matteo, Reggi Michela, Falini Giuseppe

出版信息

J R Soc Interface. 2015 May 6;12(106). doi: 10.1098/rsif.2015.0168.

DOI:10.1098/rsif.2015.0168
PMID:25977958
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC4424696/
Abstract

Scleractinian corals are a major source of biogenic calcium carbonate, yet the relationship between their skeletal microstructure and mechanical properties has been scarcely studied. In this work, the skeletons of two coral species:solitary Balanophyllia europaea and colonial Stylophora pistillata, were investigated by nanoindentation. The hardness HIT and Young's modulus E(IT) were determined from the analysis of several load-depth data on two perpendicular sections of the skeletons: longitudinal (parallel to the main growth axis) and transverse. Within the experimental and statistical uncertainty,the average values of the mechanical parameters are independent on the section's orientation. The hydration state of the skeletons did not affect the mechanical properties. The measured values, EIT in the 76-77 GPa range, and H(IT) in the 4.9–5.1 GPa range, are close to the ones expected for polycrystalline pure aragonite. Notably, a small difference in H(IT) is observed between the species. Different from corals, single-crystal aragonite and the nacreous layer of the seashell Atrina rigida exhibit clearly orientation-dependent mechanical properties. The homogeneous and isotropic mechanical behaviour of the coral skeletons at the microscale is correlated with the microstructure,observed by electron microscopy and atomic force microscopy, and with the X-ray diffraction patterns of the longitudinal and transverse sections.

摘要

石珊瑚是生物源碳酸钙的主要来源,然而它们的骨骼微观结构与力学性能之间的关系却鲜有研究。在这项工作中,通过纳米压痕法对两种珊瑚的骨骼进行了研究:单独生活的欧洲扁脑珊瑚(Balanophyllia europaea)和群体生活的尖枝蔷薇珊瑚(Stylophora pistillata)。从对骨骼两个垂直截面(纵向,平行于主要生长轴;横向)上的多个载荷 - 深度数据的分析中确定了硬度HIT和杨氏模量E(IT)。在实验和统计不确定性范围内,力学参数的平均值与截面方向无关。骨骼的水合状态不影响力学性能。所测得的值,EIT在76 - 77 GPa范围内,H(IT)在4.9 - 5.1 GPa范围内,接近多晶纯文石预期的值。值得注意的是,在这两个物种之间观察到H(IT)存在细微差异。与珊瑚不同,单晶文石和贝壳Atrina rigida的珍珠层表现出明显的取向依赖性力学性能。通过电子显微镜和原子力显微镜观察到的微观结构以及纵向和横向截面的X射线衍射图谱与珊瑚骨骼在微观尺度上均匀且各向同性的力学行为相关。