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Development of optical phantoms for use in fluorescence-based imaging

机译:开发用于基于荧光成像的光学体模

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摘要

We fabricated permanent solid polyurethane-based phantoms in which fluorophores were homogeneously incorporated. For this study, fluorophores of three different families were used: Cyanines, Alexa Fluor and Quantum Dots. The goal of this study was to evaluate the impact of casting the fluorophores in a polyurethane matrix on their optical properties, more specifically the absorbance, molecular extinction coefficient, emission of fluorescence and the resultant fluorescence intensity. All measurements were carried out with 5 concentrations of each fluorophores embedded in polyurethane and in solution. Stability over time was also monitored for a three months period. The casting of fluorophores affects the optical properties of the three dyes under study. The max absorbance, the fluorescence emission and intensity along with the molar extinction coefficient were all affected. Quantum dots behave differently to the cyanine and Alexa Fluor dyes. It was also observed that the incorporation of dyes enables long-term stability of the fluorescence signal.
机译:我们制造了永久性的固态聚氨酯基体模,其中荧光团被均匀地结合。在这项研究中,使用了三个不同家族的荧光团:花菁,Alexa Fluor和量子点。这项研究的目的是评估将荧光团浇铸在聚氨酯基质中对它们的光学性能的影响,更具体地说,是吸收率,分子消光系数,荧光发射和所得荧光强度。所有测量均使用嵌入聚氨酯和溶液中的5种浓度的每种荧光团进行。在三个月的时间内还监测了一段时间内的稳定性。荧光团的铸型影响所研究的三种染料的光学性能。最大吸光度,荧光发射和强度以及摩尔消光系数都受到影响。量子点的行为与花青和Alexa Fluor染料不同。还观察到染料的掺入使得荧光信号能够长期稳定。

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