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Modeling of photosensitizer fluorescence emission and photobleaching for photodynamic therapy dosimetry

机译:用于光动力疗法剂量测定的光敏剂荧光发射和光漂白建模

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Photon diffusion theory was used to model photobleaching and tissue necrosis resulting from broad-beam therapeutic light irradiation of tissue containing a photosensitizer. The photosensitizer fluorescence signal at the tissue surface was simulated with both broad-beam and pencil-beam excitation.The relationship between the decreasing fluorescence signal and the increasing depth of tissue photodynamic damage during treatment was examined. By analyzing spatially resolved fluorescence measured at the tissue surface in terms of an equivalent virtual point or planar source of fluorescence within the tissue, predictions of necrosis depth that are insensitive to a range of initial treatment parameters were shown to be possible. Preliminary measurements in tissue-simulating phantoms supported the main theoretical findings. The potential value and feasibility of this technique for photodynamic therapy dosimetry are discussed. # 1998 Optical Society of America OCIS codes: 170.5180, 170.5280, 170.6280.
机译:光子扩散理论用于模拟由含有光敏剂的组织的宽束治疗性光辐照导致的光漂白和组织坏死。通过宽束和笔束激发对组织表面的光敏剂荧光信号进行了模拟。研究了处理过程中荧光信号的减少与组织光动力损伤深度的增加之间的关系。通过根据组织内的等效虚拟点或平面荧光源分析在组织表面测得的空间分辨荧光,可以显示出对一系列初始治疗参数不敏感的坏死深度预测。组织模拟体模的初步测量结果支持了主要的理论发现。讨论了该技术在光动力治疗剂量测定中的潜在价值和可行性。 #1998美国光学学会OCIS代码:170.5180、170.5280、170.6280。

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