Pfefer T Joshua, Matchette L Stephanie, Ross Amanda M, Ediger Marwood N
Center for Devices and Radiological Health, Food and Drug Administration, 12725 Twinbrook Parkway, Rockville, Maryland 20857, USA.
Opt Lett. 2003 Jan 15;28(2):120-2. doi: 10.1364/ol.28.000120.
Experimental verification of the ability to alter the sensitivity to fluorophore layers in turbid media by varying illumination-collection geometry is presented. Fiber-optic probes and two-layer, fluorophore-doped, turbid phantoms are used to elucidate the roles of spot size, illumination-collection fiber separation, and probe-sample spacing. Variations in single- and multiple-fiber probe design parameters produce significant changes in the relative sensitivity to sample layers in a manner that agrees with prior computational studies.
本文介绍了通过改变照明-采集几何结构来改变浑浊介质中对荧光团层灵敏度的能力的实验验证。使用光纤探头和两层掺杂荧光团的浑浊体模来阐明光斑大小、照明-采集光纤间距以及探头-样品间距的作用。单光纤和多光纤探头设计参数的变化会以与先前计算研究一致的方式,使对样品层的相对灵敏度产生显著变化。