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双壳类叶状方解石的晶体结构。

Crystallographic structure of the foliated calcite of bivalves.

作者信息

Checa Antonio G, Esteban-Delgado Francisco J, Rodríguez-Navarro Alejandro B

机构信息

Departamento de Estratigrafía y Paleontología, Facultad de Ciencias, Universidad de Granada, Avenida Fuentenueva s/n, 18071 Granada, Spain.

出版信息

J Struct Biol. 2007 Feb;157(2):393-402. doi: 10.1016/j.jsb.2006.09.005. Epub 2006 Oct 11.

Abstract

The foliated layer of bivalves is constituted by platy calcite crystals, or laths, surrounded by an organic layer, and which are arranged into sheets (folia). Therefore, the foliated microstructure can be considered the calcitic analogue to nacre. In this paper, the foliated microstructure has been studied in detail using electron and X-ray diffraction techniques, together with SEM observations on naturally decalcified shells, to investigate the crystallographic organization on different length scales and to resolve among previous contradictory results. This layer is highly organized and displays a coherent crystallographic orientation. The surface of the laths of the foliated layer is constituted by calcite crystals oriented with their c-axis tilted opposite to the growth direction of the laths and one of its {101 4} rhombohedral faces looking in the growth direction. These faces are only expressed as the terminal faces of the laths, whereas the main surfaces of laths coincide with {101 8} rhombohedral faces. This arrangement was consistently found in all specimens studied, which leads us to the provisional conclusion that, unlike previous studies, there is only one possible crystallographic arrangement for the foliated layer. Future studies on other species will help to ascertain this assertion.

摘要

双壳类动物的叶状层由板状方解石晶体或板条组成,其周围有一层有机层,并排列成薄片(叶)。因此,叶状微结构可被视为珍珠质的方解石类似物。在本文中,利用电子和X射线衍射技术以及对天然脱钙贝壳的扫描电镜观察,对叶状微结构进行了详细研究,以探究不同长度尺度上的晶体学组织,并解决先前相互矛盾的结果。该层高度有序,呈现出连贯的晶体学取向。叶状层板条的表面由方解石晶体构成,其c轴与板条的生长方向相反倾斜,且其{101 4}菱面体晶面之一朝向生长方向。这些晶面仅作为板条的端面出现,而板条的主表面与{101 8}菱面体晶面重合。在所有研究的标本中都一致发现了这种排列方式,这使我们得出一个初步结论,即与先前的研究不同,叶状层只有一种可能的晶体学排列方式。对其他物种的进一步研究将有助于确定这一论断。

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