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首页> 外文期刊>Applied Spectroscopy: Society for Applied Spectroscopy >The Advantages of an Attenuated Total Internal Reflection Infrared Microspectroscopic Imaging Approach for Kidney Biopsy Analysis
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The Advantages of an Attenuated Total Internal Reflection Infrared Microspectroscopic Imaging Approach for Kidney Biopsy Analysis

机译:衰减全内反射红外显微成像方法在肾脏活检分析中的优势

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摘要

The benefits of an attenuated total reflection Fourier transform infrared (ATR-FTIR) imaging approach for kidney biopsy analysis are described. Biopsy sections collected from kidney-stone formers are analyzed at the initial stages of stone development to provide insights into stone growth and formation. The majority of tissue analysis currently conducted with IR microspectroscopy is performed with a transflection method. The research presented in this manuscript demonstrates that ATR overcomes many of the disadvantages of transflection or transmission measurements for tissue analysis including an elimination of spectral artifacts. When kidney biopsies with small mineral inclusions are analyzed with a transflection approach, specular reflection and the Christiansen effect (anomalous dispersion) can occur, leading to spectral artifacts. Another effect specific to the analysis of mineral inclusions present in kidney biopsies is known as the reststrahlen effect whereby the inclusions become strong reflectors near an absorption band. ATR eliminates these effects by immersing the sample in a high index medium. Additionally, the focused beam size for ATR is decreased by a factor of four when a germanium internal reflection element is used, allowing the acquisition of spectra from small mineral inclusions several micrometers in diameter. If quantitative analysis of small mineral inclusions is ultimately desired, ATR provides the photometrically accurate spectra necessary for quantification.
机译:描述了衰减全反射傅里叶变换红外(ATR-FTIR)成像方法在肾脏活检分析中的优势。在结石发展的初期对从肾结石形成者处收集的活检切片进行分析,以洞悉结石的生长和形成。当前用红外显微术进行的大多数组织分析是通过透射法进行的。本手稿中的研究表明,ATR克服了组织分析中透射或透射测量的许多缺点,包括消除了光谱伪影。当用半透反射法分析具有小矿物质包裹体的肾脏活检时,可能会发生镜面反射和克里斯蒂安森效应(异常色散),从而导致产生光谱伪影。专门用于分析肾脏活检中存在的矿物质夹杂物的另一种效应称为reststrahlen效应,由此,夹杂物成为吸收带附近的强反射体。 ATR通过将样品浸入高折射率介质中消除了这些影响。此外,使用锗内部反射元件时,ATR的聚焦光束尺寸减小了四倍,从而可以从直径为几微米的小型矿物包裹体中获取光谱。如果最终需要对小的矿物夹杂物进行定量分析,则ATR提供定量所需的光度精确光谱。

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