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Monte-carlo-based Model For The Extraction Of Intrinsic Fluorescence From Turbid Media

机译:基于蒙特卡洛的混浊介质内在荧光提取模型

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摘要

A Monte-Carlo-based model of fluorescence is developed that is capable of extracting the intrinsic fluorescence properties of tissue, which are independent of the absorption and scattering properties of tissue. This model is flexible in its applicability to different illumination-collection geometries and is also valid for a wide range of optical properties, representative of tissue in the UV-visible spectrum. This is potentially useful in a variety of biomedical applications, including cancer diagnostics and monitoring the physiological response to therapy. The model is validated using phantoms composed of hemoglobin (absorber), polystyrene spheres (scatterer), and furan-2 (fluorophore). It is found that this model is able to retrieve the intrinsic fluorescence spectra of the tissue phantoms and recover the intrinsic fluorescence intensity of furan within the phantoms to within a meanrnerror of less than 10%.
机译:建立了基于蒙特卡洛的荧光模型,该模型能够提取组织的固有荧光特性,而固有的荧光特性与组织的吸收和散射特性无关。该模型在适用于不同的照明收集几何形状方面具有灵活性,并且对于代表紫外可见光谱中的组织的广泛光学特性也有效。这在各种生物医学应用中可能有用,包括癌症诊断和监测对治疗的生理反应。使用由血红蛋白(吸收剂),聚苯乙烯球(散射剂)和呋喃2(荧光团)组成的体模对模型进行验证。发现该模型能够检索组织体模的固有荧光光谱,并将体模内呋喃的固有荧光强度恢复到小于10%的平均误差内。

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