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A novel protocol for resolving feldspara crystals in synchrotron X-ray microtomographic images of crystallized natural magmas and synthetic analogues

机译:一种用于解析结晶天然岩浆和合成类似物的同步加速器X射线显微图像中的长石晶体的新方案

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摘要

X-ray computed microtomography is a non-destructive imaging technique recognized in the geosciences as a powerful tool to investigate rock textures directly in three dimensions (3D) at the micrometer and sub-micrometer scale. The quantitative morphological and textural analysis of images requires segmentation and characterization of phases in the reconstructed volume based upon their gray levels (related to their relative X-ray attenuation) and/or morphological aspects. Often the differences in X-ray attenuation of some phases are so small that no contrast is observed in the reconstructed slices or, although the human eye can discern the differences between these phases, it is difficult, or sometimes impossible, to reliably segment and separately analyze these phases. Facing this challenge, we propose an experimental and computational procedure that allows the segmentation of phases with small density variations in geomaterials. By using an experimental protocol based on phase-contrast synchrotron X-ray microtomography combined with a customized 3D image processing procedure, we successfully segmented feldspar from the glassy matrix in both a natural volcanic sample and a synthetic analog. Our results demonstrate that crystallized natural volcanic rocks and synthetic analogs can be characterized by synchrotron X-ray phase-contrast microtomography and that phase-retrieval processing is an invaluable tool for the reconstruction of 3D multiphase textures.
机译:X射线计算机断层摄影术是一种无损成像技术,在地球科学领域是公认的一种强大的工具,可以直接在微米和亚微米尺度的三个维度(3D)上研究岩石纹理。图像的定量形态和纹理分析需要根据其灰度(与它们的相对X射线衰减有关)和/或形态方面对重建体积中的相位进行分割和表征。某些相位的X射线衰减差异通常很小,以至于在重建的切片中未观察到对比度,或者,尽管人眼可以辨别出这些相位之间的差异,但很难(有时甚至是不可能)可靠地进行分割和分离分析这些阶段。面对这一挑战,我们提出了一种实验和计算程序,该程序可以对土工材料中密度变化较小的相进行分段。通过使用基于相衬同步加速器X射线显微断层照相术的实验方案,结合定制的3D图像处理程序,我们成功地将天然火山岩样品和合成类似物中的玻璃状长石进行了分割。我们的结果表明,结晶的天然火山岩和合成类似物可以通过同步加速器X射线相衬显微断层照相术进行表征,而相取回处理是重建3D多相纹理的宝贵工具。

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