Department of Urology, University Medical Centre Freiburg, Freiburg, Germany; Fraunhofer Institute for Physical Measurement Techniques, Freiburg, Germany.
J Urol. 2013 Nov;190(5):1895-900. doi: 10.1016/j.juro.2013.06.024. Epub 2013 Jun 14.
We evaluate a compact portable system for immediate automated postoperative ex vivo analysis of urinary stone composition using Raman spectroscopy. Analysis of urinary stone composition provides essential information for the treatment and metaphylaxis of urolithiasis. Currently infrared spectroscopy and x-ray diffraction are used for urinary stone analysis. However, these methods may require complex sample preparation and costly laboratory equipment. In contrast, Raman spectrometers could be a simple and quick strategy for immediate stone analysis.
Pure samples of 9 stone components and 159 human urinary calculi were analyzed by Raman spectroscopy using a microscope coupled system at 2 excitation wavelengths. Signal-to-noise ratio, peak positions and the distinctness of the acquired Raman spectra were analyzed and compared. Background fluorescence was removed mathematically. Corrected Raman spectra were used as a reference library for automated classification of native human urinary stones (50). The results were then compared to standard infrared spectroscopy.
Signal-to-noise ratio was superior at an excitation wavelength of 532 nm. An automated, computer based classifier was capable of matching spectra from patient samples with those of pure stone components. Consecutive analysis of 50 human stones demonstrated 100% sensitivity and specificity compared to infrared spectroscopy (for components with more than 25% of total composition).
Our pilot study indicates that Raman spectroscopy is a valid and reliable technique for determining urinary stone composition. Thus, we propose that the development of a compact and portable system based on Raman spectroscopy for immediate, postoperative stone analysis could represent an invaluable tool for the metaphylaxis of urolithiasis.
我们评估了一种紧凑便携的系统,用于使用拉曼光谱术立即对术后尿液结石成分进行自动体外分析。分析尿液结石成分可提供治疗和预防尿石症的重要信息。目前,红外光谱和 X 射线衍射用于尿液结石分析。然而,这些方法可能需要复杂的样品制备和昂贵的实验室设备。相比之下,拉曼光谱仪可能是一种简单快捷的即时结石分析策略。
使用显微镜耦合系统在 2 个激发波长下对 9 种结石成分的纯样本和 159 个人类尿液结石进行了拉曼光谱分析。分析并比较了信噪比、峰值位置和获得的拉曼光谱的清晰度。通过数学方法去除背景荧光。校正后的拉曼光谱被用作自动分类天然人尿结石(50 个)的参考库。然后将结果与标准红外光谱进行比较。
在 532nm 的激发波长下,信噪比更优。基于计算机的自动分类器能够将患者样本的光谱与纯结石成分的光谱相匹配。对 50 个人类结石的连续分析显示,与红外光谱相比,灵敏度和特异性均为 100%(对于总成分超过 25%的成分)。
我们的初步研究表明,拉曼光谱术是一种确定尿液结石成分的有效且可靠的技术。因此,我们建议开发一种基于拉曼光谱术的紧凑便携系统,用于即时、术后结石分析,这可能是预防尿石症的宝贵工具。