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Electron probe micro-analysis reveals the complexity of mineral deposition mechanisms in urinary stones

机译:电子探针微分析揭示了泌尿石中矿物沉积机制的复杂性

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Urinary stones are complex mineralogical formations in the urinary system often impairing the kidney function. Several studies have attempted to understand the mechanisms of stone formation and growth; however, it remains to be fully explored. Here, we present a detailed investigation on the morphological and mineralogical characterizations of urinary stones. Structural properties of different types of urinary stones were done by X-ray diffraction (XRD), Fourier-transform infrared spectroscopy (FTIR), and field-emission scanning electron microscope (FE-SEM) analyses. X-ray maps of major and the trace elements were obtained using electron microprobe (EPMA) technique. Basic metabolic panel and urinary parameters of the patients were used for comparing mineral compositions among stone types. The study included five major types of stones identified based on the FTIR spectra. FTIR and XRD helped in identifying the major components of these stones. FE-SEM images revealed distinct microstructure and morphology of the stones among the stone types. EPMA analysis showed the presence of many metals other than calcium and certain non-metals within the urinary stone matrix at measurable levels, sometimes with distinct distribution patterns. The study demonstrates the characteristic micro-structure, morphology, distribution, and composition of elements in different stone types. Findings of the study provide scope for understanding the complex mechanisms involved in the urolithogenesis and association of trace elements in it.
机译:泌尿系统是泌尿系统中的复杂矿物学,经常损害肾功能。一些研究试图了解石头形成和增长的机制;但是,它仍有待充分探索。在这里,我们对泌尿石的形态学和矿物学特征进行了详细的调查。通过X射线衍射(XRD),傅立叶变换红外光谱(FTIR)和现场排放扫描电子显微镜(FE-SEM)分析来完成不同类型的泌尿石的结构性质。使用电子微探针(EPMA)技术获得主要和微量元素的X射线图。患者的基本代谢板和尿参数用于比较石材类型中的矿物组合物。该研究包括基于FTIR光谱鉴定的五种主要类型的石头。 FTIR和XRD有助于识别这些石头的主要组成部分。 FE-SEM图像揭示了石材类型中石材的不同微观结构和形态。 EPMA分析显示出在可测量水平的尿石基质中以外的许多金属的存在,有时具有不同的分布模式。该研究表明了不同石材类型的特征微结构,形态,分布和元素的组成。该研究的结果提供了理解近硫硅发生和痕量元素结合中涉及的复杂机制的范围。

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