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用于从组织进行定量荧光测量的光纤束设计。

Fiber-optic bundle design for quantitative fluorescence measurement from tissue.

作者信息

Pogue B W, Burke G

出版信息

Appl Opt. 1998 Nov 1;37(31):7429-36. doi: 10.1364/ao.37.007429.

Abstract

We demonstrate a new design for a fiber-optic bundle to measure fluorescence signals from tissue. In this design, the intensity of the signal is not significantly affected by the medium's absorption and scattering coefficients and hence depends only on the fluorophore's properties. Monte Carlo simulations of light scattering were used for designing and verifying the results obtained. The fiber-optic bundle was tested on tissue-simulating phantoms and compared with a standard nonimaging fiber-optic bundle. The new bundle was composed of 30 individual 100-mum fibers. Fibers on the end of the bundle that touch the tissue surface were separated from one another by approximately 1 mm. This design permits integration of the signal over several locations while maintaining localized sampling from regions smaller than the average mean free scattering path of the tissue. The bundle was tested by measurement of the fluorescence signals from tissue-simulating solutions containing fluorescent compounds. These studies demonstrate that the new bundle reduces the effect of the intrinsic absorption in the medium, permitting detection of fluorescence that is linearly proportional to the fluorophore concentration.

摘要

我们展示了一种用于测量组织荧光信号的新型光纤束设计。在这种设计中,信号强度不受介质吸收系数和散射系数的显著影响,因此仅取决于荧光团的特性。利用蒙特卡罗光散射模拟来设计和验证所得结果。该光纤束在组织模拟体模上进行了测试,并与标准非成像光纤束进行了比较。新光纤束由30根单独的100微米光纤组成。光纤束末端接触组织表面的光纤彼此间隔约1毫米。这种设计允许在几个位置上对信号进行积分,同时保持从小于组织平均自由散射路径的区域进行局部采样。通过测量含有荧光化合物的组织模拟溶液的荧光信号对该光纤束进行了测试。这些研究表明,新光纤束降低了介质中固有吸收的影响,能够检测与荧光团浓度呈线性比例的荧光。

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