利用傅立叶变换-红外光谱与钻石ATR附件建立标准和真实的患者肾结石库。

Urological Research Pub Date : 2012-10-01 Epub Date: 2012-01-13 DOI:10.1007/s00240-011-0456-9
Keith J Mulready, Des McGoldrick
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引用次数: 14

摘要

本研究重点是利用带有金刚石衰减全反射附件的傅里叶变换红外光谱(FT-IR ATR)建立真实患者肾结石库,并使用OMNIC光谱数学运算建立标准的FT-IR ATR (sFTIRATR)库进行肾结石分析。这是必要的,因为由专门软件提供的商业文库中的参考光谱通常是用合成的晶体化合物编制的,与真实的生物石成分相比,这些化合物在反射带的强度、位置和/或特征轮廓上可能会发生变化。目前,尚无关于爱尔兰共和国(RoI)结石类型和患病率的出版文献。真实患者肾结石库的建立所获得的结果是对人群中肾结石的代表性选择,从而准确地反映了RoI地区肾结石的流行病学现状。将188例患者的结果与我们新构建的sFTIRATR文库和现有方法(湿化学分析、利用ATR算法和溴化钾搜索文库的FT-IR ATR)进行比较。我们发现,为了对肾结石混合物进行最佳定量分析,FT-IR ATR光谱利用标准的FT-IR ATR文库,以真实的患者肾结石文库为支持,应用文库搜索准确地提供未知肾结石样本中存在的结石成分的分子和晶体种类,为诊断疾病提供一定的预测价值。我们的数据表明,RoI的肾结石流行病学与其他西方国家相似。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The establishment of a standard and real patient kidney stone library utilizing Fourier transform-infrared spectroscopy with a diamond ATR accessory.

This investigation highlights the establishment of a real patient kidney stone library utilizing Fourier transform-infrared spectroscopy with a diamond attenuated total reflection accessory (FT-IR ATR) and the construction of a standard FT-IR ATR (sFTIRATR) library using OMNIC spectral math arithmetic operations for kidney stone analysis. This is necessary because reference spectra in commercial libraries provided with specialized software are usually complied using synthesized crystalline compounds which can exhibit changes in intensity, position and/or characteristic profile of reflectance bands when compared with authentic biological stone compositions. Currently, there is no published literature for the Republic of Ireland (RoI) on stone type and prevalence. The results obtained from the establishment of the real patient kidney stone library were a representative selection of kidney stones found in the population, and thereby provided an accurate picture of the present epidemiology of kidney stones in the RoI. The results of 188 patients were compared with those from our newly constructed sFTIRATR library and existing methods, namely wet chemical analysis, and FT-IR ATR utilizing an ATR algorithm and potassium bromide search libraries. We found that for the optimum quantitative analysis of kidney stone mixtures, FT-IR ATR spectroscopy utilizing a standard FT-IR ATR library, supported by a real patient kidney stone library, applying library searching accurately provides the molecular and crystalline species of stone constituents present in an unknown kidney stone sample, providing some predicative value in diagnosing medical conditions. Our data suggest that the epidemiology for nephrolithiasis in the RoI is similar to other Western nations.

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来源期刊
Urological Research
Urological Research 医学-泌尿学与肾脏学
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