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IR-fiber-optic sensing on biological tissue

机译:生物组织的红外光纤传感

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A diagnostic method'is described to detect differences between diseased and normal tissue from bladder carcinoma by FTIR-microspectroscopy and fiber-optics methods. Regions of interest on 10 μm thin tissue sections were mapped using an IR-microscope in transmission mode. Afterwards the specimens were analyzed using standard pathological techniques. Quadratic discriminant as well as correlation analysis was applied for data analysis. IR optical fibers, not only allowed measurements to be made in the attenuated total reflectance (ATR)-mode but also absorption measurements to be carried out at a remote location. The IR-sensor is in contact with the sample which shows characteristic absorption lines. This method can be used to determine the absorption of a sample in a non-destructive manner. In this paper we report our efforts to develop a fiber-optic infrared sensor to differentiate between malignant and healthy tissue in vivo. Silver halide fibers and a special sensor tip were used for the ATR measurements on human tissue specimens. The results indicate that IR-spectrometry will be a useful tool for bio-diagnostics.
机译:描述了一种诊断方法,该方法通过FTIR显微光谱法和光纤方法检测膀胱癌的病变组织与正常组织之间的差异。使用红外显微镜在透射模式下绘制10μm薄组织切片上的目标区域。之后,使用标准病理技术分析标本。二次判别以及相关分析被用于数据分析。红外光纤不仅允许在衰减的全反射率(ATR)模式下进行测量,而且还可以在远程位置进行吸收测量。红外传感器与显示特征吸收线的样品接触。该方法可用于以非破坏性方式确定样品的吸收率。在本文中,我们报告了我们在开发光纤红外传感器以区分体内恶性和健康组织方面所做的努力。卤化银纤维和特殊的传感器尖端用于人体组织标本的ATR测量。结果表明,红外光谱将是用于生物诊断的有用工具。

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