Patwardhan Sachin V, Bloch Sharon, Achilefu Samuel, Culver Joseph P
Dept. of Radiol., Washington Univ. Sch. of Med., St. Louis, MO 63110, USA.
Conf Proc IEEE Eng Med Biol Soc. 2006;2006:2675-8. doi: 10.1109/IEMBS.2006.259942.
Optical approaches to small animal in vivo molecular imaging provide high sensitivity, stable non-radioactive probes, and an extensive array of functional reporting strategies. However, quantitative whole body assays remain illusive. The quantitative accuracy of optical imaging is affected by the depth of the buried target and the heterogeneity of tissue optical properties. Tomography approaches, to obtaining in-vivo optical property maps, and whole body distributions of fluorescing probes, provide a strategy for improving the quality and quantitative accuracy of small animal optical imaging. Here we present a time-resolved, charged coupled device (CCD) based system for quantitative small animal fluorescence tomography.
用于小动物体内分子成像的光学方法具有高灵敏度、稳定的非放射性探针以及大量的功能报告策略。然而,定量全身检测仍然难以实现。光学成像的定量准确性受埋藏目标深度和组织光学特性异质性的影响。断层扫描方法可用于获取体内光学特性图和荧光探针的全身分布,为提高小动物光学成像的质量和定量准确性提供了一种策略。在此,我们展示了一种基于时间分辨电荷耦合器件(CCD)的系统,用于定量小动物荧光断层扫描。