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Model-based spectral analysis of photon propagation through nanoparticle-labeled epithelial tissues

机译:基于模型的光子通过纳米粒子标记的上皮组织传播的光谱分析

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Metal nanoparticles can function as optical contrast enhancers for reflectance-based diagnosis of epithelial precancer. We carry out Monte Carlo simulations to model photon propagation through normal tissues, unlabeled precancerous tissues, and precancerous tissues labeled with gold nanospheres and we compute the spectral reflectance response of these different tissue states. The results indicate that nanoparticle-induced changes in the spectral reflectance profile of tissues depend not only on the properties of these particles but also on the source-detector geometry used. When the source and detector fibers are oriented side by side and perpendicular to the tissue surface, the reflectance intensity of precancerous tissue is lower compared to that of normal tissue over the entire wavelength range simulated and addition of nanospheres enhances this negative contrast. When the fibers are tilted toward each other, the reflectance intensity of precancerous tissue is higher compared to that of normal tissue and labeling with nanospheres causes a significant enhancement of this positive contrast. The results also suggest that model-based spectral analysis of photon propagation through nanoparticle-labeled tissues provides a useful framework to quantify the extent of achievable contrast enhancement due to external labeling and to assess the diagnostic potential of nanoparticle-enhanced optical measurements.
机译:金属纳米颗粒可以用作光学对比度增强剂,用于基于反射的上皮癌前诊断。我们进行了蒙特卡洛模拟,以模拟光子在正常组织,未标记的癌前组织和被金纳米球标记的癌前组织中的传播,并计算了这些不同组织状态的光谱反射响应。结果表明,纳米粒子在组织的光谱反射率曲线中引起的变化不仅取决于这些粒子的特性,还取决于所用的源探测器几何形状。当源纤维和检测器纤维并排且垂直于组织表面定向时,在模拟的整个波长范围内,癌前组织的反射强度比正常组织低,并且添加纳米球会增强这种负对比度。当纤维彼此相对倾斜时,癌前组织的反射强度要比正常组织高,并且用纳米球标记会显着增强这种正反差。结果还表明,基于模型的光子通过纳米粒子标记的组织传播的光谱分析提供了一个有用的框架,可以量化由于外部标记而可实现的对比度增强的程度,并评估纳米粒子增强的光学测量的诊断潜力。

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