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A feasibility study of singlet oxygen explicit dosmietry (SOED) of PDT by intercomparison with a singlet oxygen luminescence dosimetry (SOLD) system

机译:与单线态氧发光剂量法(SOLD)系统进行比较,对PDT的单线态氧显式剂量法(SOED)进行可行性研究

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An explicit dosimetry model has been developed to calculate the apparent reacted ~1O_2 concentration ([~1O_2]_(rx)) in an in-vivo model. In the model, a macroscopic quantity, g, is introduced to account for oxygen perfusion to the medium during PDT. In this study, the SOED model is extended for PDT treatment in phantom conditions where vasculature is not present; the oxygen perfusion is achieved through the air-phantom interface instead. The solution of the SOED model is obtained by solving the coupled photochemical rate equations incorporating oxygen perfusion through the air-liquid interface. Experiments were performed for two photosensitizers (PS), Rose Bengal (RB) and Photofrin (PH), in solution, using SOED and SOLD measurements to determine both the instantaneous [~1O_2] as well as cumulative [~1O_2]_(rx) concentrations, where [~1O_2]_(rx) = (l/τ_△)·∫ [~1O_2]dt. The PS concentrations varied between 10 and 100 mM for RB and ~200 mM for Photofrin. The resulting magnitudes of [~1O_2] were compared between SOED and SOLD.
机译:已开发出显式剂量学模型以计算体内模型中的表观反应〜1O_2浓度([〜1O_2] _(rx))。在该模型中,引入了一个宏观量g来解释PDT期间氧气对介质的灌注情况。在这项研究中,将SOED模型扩展为在不存在脉管系统的幻影条件下进行PDT治疗。氧气的灌注是通过空气幻象界面实现的。 SOED模型的求解是通过求解结合了通过气-液界面的氧气灌注的光化学速率方程来获得的。针对溶液中的两种光敏剂(PS),玫瑰红(RB)和光敏剂(PH)进行了实验,使用SOED和SOLD测量来确定瞬时[〜1O_2]和累积[〜1O_2] _(rx)浓度,其中[〜1O_2] _(rx)=(l /τ_△)·∫[〜1O_2] dt。 RB的PS浓度在10至100 mM之间,而Photofrin则在〜200 mM之间。在SOED和SOLD之间比较了[〜1O_2]的大小。

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