Neutron Scattering Division, Oak Ridge National Laboratory, Oak Ridge, TN, 37831, USA.
Environmental Sciences Division, Oak Ridge National Laboratory, Oak Ridge, TN, 37831, USA.
Sci Rep. 2019 May 9;9(1):7151. doi: 10.1038/s41598-019-43434-w.
Fish otoliths, or ear bones, are comprised of the CaCO polymorphs (aragonite, calcite and vaterite), which can occur either alone or in combination. The polymorph phase abundance in an otolith depends on, as yet, unexplained genetic and environmental factors. Most fish otoliths are comprised of the densest CaCO polymorph, aragonite. Sturgeon otoliths, on the other hand, contain significant amounts of the rare and the structurally enigmatic polymorph, vaterite. Sturgeon otoliths are frequently comprised of agglomerations of small microcrystalline vaterite spherulites (<300 μm in diameter), that range in shape from nearly perfect spheres to oblate spheroids. These spherulites are similar to the synthetic vaterite microspheres employed in laser trapping applications. Vaterite spherulites from both hatchery-reared (juvenile) and wild (adult) Lake Sturgeon exhibit extreme crystallographic texture as evidenced by X-ray diffraction patterns and their reconstructed pole-figures determined here. The vaterite crystallites making up the spherulites have excellent registry in both the axial and equatorial directions. Whether synthesized or natural, the texture manifested in these spherulites suggests that vaterite nucleates and grows similarly in vivo otolith formation as well as from laboratory synthesis. The uniaxial optical character of the vaterite spherulites, confirmed by these diffraction experiments and combined with their large birefringence, makes them well suited for laser trapping applications.
鱼耳石,或内耳骨,由 CaCO 多晶型物(方解石、文石和霰石)组成,这些多晶型物可以单独存在或组合存在。耳石中多晶型物的相丰度取决于尚未解释的遗传和环境因素。大多数鱼耳石由最密集的 CaCO 多晶型物文石组成。另一方面,鲟鱼耳石含有大量罕见且结构上神秘的多晶型物——霰石。鲟鱼耳石通常由小微晶霰石球晶的聚集体组成(<300μm 直径),形状从近乎完美的球体到扁球体不等。这些球晶类似于用于激光捕获应用的合成霰石微球。来自人工养殖(幼鱼)和野生(成鱼)湖鲟的霰石球晶表现出极端的结晶纹理,这一点可以通过 X 射线衍射图案及其在这里确定的重构极点图来证明。构成球晶的霰石晶体在轴向和赤道方向上都有极好的晶向。无论是合成的还是天然的,这些球晶所表现出的纹理表明,霰石在体内耳石形成以及实验室合成中以相似的方式成核和生长。这些衍射实验证实了霰石球晶的单轴光学性质,再加上它们较大的双折射,使它们非常适合激光捕获应用。