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使用成角度光纤探头对混浊介质进行深度敏感荧光光谱分析可行性的实验证明。

Experimental proof of the feasibility of using an angled fiber-optic probe for depth-sensitive fluorescence spectroscopy of turbid media.

作者信息

Liu Quan, Ramanujam Nirmala

机构信息

Department of Biomedical Engineering, University of Wisconsin-Madison, Madison, Wisconsin 53706, USA.

出版信息

Opt Lett. 2004 Sep 1;29(17):2034-6. doi: 10.1364/ol.29.002034.

Abstract

An angled fiber-optic probe that facilitates depth-sensitive fluorescence measurements was developed for enhancing detection of epithelial precancers. The probe was tested on solid, two-layered phantoms and proved to be effective in selectively detecting fluorescence from different layers. Specifically, a larger illumination angle provides greater sensitivity to fluorescence from the top layer as well as yielding an overall higher fluorescence signal. Monte Carlo simulations of a theoretical model of the phantoms demonstrate that increasing the illumination angle results in an increased excitation photon density and, thus, in increased fluorescence generated in the top layer.

摘要

为了加强对上皮癌前病变的检测,研发了一种便于进行深度敏感荧光测量的成角度光纤探头。该探头在固态双层模型上进行了测试,结果证明它能有效地选择性检测来自不同层的荧光。具体而言,更大的照明角度对来自顶层的荧光具有更高的灵敏度,同时还能产生总体上更高的荧光信号。对模型理论模型进行的蒙特卡洛模拟表明,增加照明角度会导致激发光子密度增加,进而使顶层产生的荧光增加。

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