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A Theoretical and Experimental Examination of Fluorescence in Enclosed Cavities

机译:封闭腔中荧光的理论和实验性检查

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摘要

Photosensitizer fluorescence emitted during photodynamic therapy (PDT) is of interest for monitoring the local concentration of the photosensitizer and its photobleaching. In this study, we use Monte Carlo (MC) simulations to evaluate the relationship between treatment light and fluorescence, both collected by an isotropic detector placed on the surface of the tissue. In treatment of the thoracic and peritoneal cavities, the light source position changes continually. The MC program is designed to simulate an infinitely broad photon beam incident on the tissue at various angles to determine the effect of angle. For each of the absorbed photons, a fixed number of fluorescence photons are generated and traced. The theoretical results from the MC simulation show that the angle theta has little effect on both the measured fluorescence and the ratio of fluorescence to diffuse reflectance. However, changes in the absorption and scattering coefficients, μa and μs, do cause the fluorescence and ratio to change, indicating that a correction for optical properties will be needed for absolute fluorescence quantification. Experiments in tissue-simulating phantoms confirm that an empirical correction can accurately recover the sensitizer concentration over a physiologically relevant range of optical properties.
机译:在光动力疗法(PDT)过程中发出的光敏剂荧光对于监测光敏剂的局部浓度及其光漂白是令人关注的。在这项研究中,我们使用蒙特卡洛(MC)模拟来评估治疗光和荧光之间的关系,两者均由放置在组织表面的各向同性探测器收集。在治疗胸腔和腹膜腔时,光源位置不断变化。 MC程序设计为模拟以各种角度入射到组织上的无限宽的光子束,以确定角度的影响。对于每个吸收的光子,将生成并跟踪固定数量的荧光光子。 MC模拟的理论结果表明,角度θ对测得的荧光以及荧光与漫反射率之比几乎没有影响。但是,吸收和散射系数μa和 μ s ' ,会引起荧光和比率改变,表明绝对荧光定量需要光学特性的校正。组织模拟体模中的实验证实,经验校正可以在生理相关的光学特性范围内准确恢复敏化剂浓度。

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