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首页> 外文期刊>Journal of biological inorganic chemistry: JBIC: a publication of the Society of Biological Inorganic Chemistry >SEM-EDX linear scanning: a new tool for morpho-compositional analysis of growth bands in urinary stones
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SEM-EDX linear scanning: a new tool for morpho-compositional analysis of growth bands in urinary stones

机译:SEM-EDX线性扫描:一种新工具,用于泌尿石中生长带的态变分析

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The genesis and growth of calculi are imprinted in their structure, so the pathogenesis of lithiasis could potentially be read via proper analytical techniques. In this study, electron microscopy with energy-dispersive X-ray spectroscopy (SEM-EDX) is used to obtain a description of the morphology and compositional structure of a single bladder stone. This technique establishes the chemical and crystalline architecture of the urolith to assess the effect of the chemical environment on its growth. Scanning electron microscopy-backscattered electrons (SEM-BSE) images clearly show that the stone has a multilayered structure. These layers and Liesegang ring-like structures are characterized by one predominant chemical component but also by slighter compositional changes. The mean crystalline components are determined by X-ray diffraction (DRX), infrared spectroscopy (FT-IR), and Raman analysis (RMN). Elemental analysis along a radial trajectory of the calculus by EDX linear scanning (EDX-LS) also reveals the compositional structure of the layers and the spatial distribution of the main chemical components. EDX-LS data processing reveals concentration profiles that clearly show morpho-compositional growth bands, which correspond to precipitation waves and urinary concentration peaks. The width of the growth bands is independent of the radial position, layer, and element analyzed. We conclude that the bands observed are a consequence of slight changes in the biochemical composition of the urine and consequently reflect a short-term biological cycle of the renal system. This non-specific growth rate suggests that stone formation is a kinetically controlled phenomenon in which promoters of crystal cluster aggregation may have played a key role.
机译:结石的成因和生长在其结构中印记,因此可以通过适当的分析技术读取岩石病的发病机制。在该研究中,使用具有能量分散X射线光谱(SEM-EDX)的电子显微镜(SEM-EDX)来获得单个膀胱石的形态和组成结构的描述。该技术建立了尿石的化学和晶体结构,以评估化学环境对其生长的影响。扫描电子显微镜 - 反向散射电子(SEM-BSE)图像清楚地表明石头具有多层结构。这些层和LiEmang环状结构的特征在于一种主要的化学成分,而且还通过较小的组成变化。平均结晶组分由X射线衍射(DRX),红外光谱(FT-IR)和拉曼分析(RMN)确定。通过EDX线性扫描(EDX-LS)沿着微积分的径向轨迹的元素分析还揭示了层的组成结构和主要化学成分的空间分布。 EDX-LS数据处理揭示了清楚地显示了沉淀波和尿液浓度峰值的浓度曲线。生长带的宽度与分析的径向位置,层和元素无关。我们得出结论,观察到的条带是尿液生化组合物的轻微变化的结果,因此反映了肾体系的短期生物学循环。这种非特异性的增长率表明,石材形成是一种动力学控制的现象,其中晶体簇聚集的启动子可能发挥了关键作用。

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