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Comparison of spectral variation from spectroscopy to spectral imaging

机译:从光谱学到光谱成像的光谱变化比较

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摘要

Optical biopsy has been shown to discriminate between normal and diseased tissue with high sensitivity and specificity. Fiber-optic probe-based spectroscopy systems do not provide the necessary spatial information to guide therapy effectively, ultimately requiring a transition from probe-based spectroscopy to spectral imaging. The effect of such a transition on fluorescence and diffuse reflectance line shape is investigated. Inherent differences in spectral line shape between spectroscopy and imaging are characterized and many of these differences may be attributed to a shift in illumination-collection geometry between the two systems. Sensitivity of the line-shape disparity is characterized with respect to changes in sample absorption and scattering as well as to changes in various parameters of the fiber-optic probe design (e.g., fiber diameter, beam steering). Differences in spectral line shape are described in terms of the relative relationship between the light diffusion within the tissue and the distribution of source-detector separation distances for the probe-based and imaging illumination-collection geometries. Monte Carlo simulation is used to determine fiber configurations that minimize the line-shape disparity between the two systems. In conclusion, we predict that fiber-optic probe designs that mimic a spectral imaging geometry and spectral imaging systems designed to emulate a probe-based geometry will be difficult to implement, pointing toward a posteriori correction for illumination-collection geometry to reconcile imaging and probe-based spectral line shapes or independent evaluation of tissue discrimination accuracy for probe-based and spectral imaging systems.
机译:光学活检已显示出以高灵敏度和特异性区分正常组织和患病组织。基于光纤探针的光谱系统没有提供必要的空间信息来有效地指导治疗,最终需要从基于探针的光谱学过渡到光谱成像。研究了这种转变对荧光和漫反射线形状的影响。表征了光谱学和成像之间的光谱线形状的固有差异,并且这些差异中的许多差异可能归因于两个系统之间照明收集几何形状的变化。线状视差的灵敏度相对于样品吸收和散射的变化以及光纤探针设计的各种参数(例如,光纤直径,光束转向)的变化来表征。光谱线形状的差异是根据组织内的光扩散与基于探测器和成像照明收集几何形状的源-探测器分离距离的分布之间的相对关系来描述的。蒙特卡罗模拟用于确定使两个系统之间的线形差异最小化的光纤配置。总之,我们预测模仿光谱成像几何形状的光纤探针设计和旨在模仿基于探针的几何形状的光谱成像系统将难以实现,并指向照明收集几何形状的后验校正,以调和成像和探针基于探针的光谱系统和光谱成像系统的光谱线形状或组织判别准确性的独立评估。

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