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首页> 外文期刊>Applied Optics >Reflectance spectroscopy for diagnosis of epithelial precancer: model-based analysis of fiber-optic probe designs to resolve spectral information from epithelium and stroma
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Reflectance spectroscopy for diagnosis of epithelial precancer: model-based analysis of fiber-optic probe designs to resolve spectral information from epithelium and stroma

机译:反射光谱法用于上皮癌的诊断:基于模型的光纤探针设计分析,以解析上皮和基质的光谱信息

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摘要

Reflectance spectroscopy is a promising technology for detection of epithelial precancer. Fiber-optic probes that selectively collect scattered light from both the epithelium and the underlying stroma are likely to improve diagnostic performance of in vivo reflectance spectroscopy by revealing diagnostic features unique to each layer. We present Monte Carlo models with which to evaluate fiber-optic probe geometries with respect to sampling depth and depth resolution. We propose a probe design that utilizes half-ball lens coupled source and detector fibers to isolate epithelial scattering from stromal scattering and hence to resolve spectral information from the two layers. The probe is extremely compact and can provide easy access to different organ sites.
机译:反射光谱法是检测上皮癌前体的有前途的技术。选择性地收集来自上皮和下层基质的散射光的光纤探针可能会通过揭示每一层独特的诊断特征来提高体内反射光谱的诊断性能。我们提出了蒙特卡洛模型,用于评估光纤探头几何形状相对于采样深度和深度分辨率。我们提出了一种探针设计,该探针利用半球形透镜耦合的源纤维和检测器纤维来隔离上皮散射和基质散射,从而解析两层的光谱信息。该探头非常紧凑,可以轻松进入不同器官部位。

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