J Biomed Opt. 2013 Feb;18(2):20503. doi: 10.1117/1.JBO.18.2.020503.
In recent years, an increasing effort has been devoted to the optimization of acquisition and reconstruction schemes for fluorescence molecular tomography (FMT). In particular, wide-field structured illumination and compression of the measured images have enabled significant reduction of the data set and, consequently, a decrease in both acquisition and processing times. FMT based on this concept has been recently demonstrated on a cylindrical phantom with a rotating-view scheme that significantly increases the reconstruction quality. In this work, we generalize the rotating-view scheme to arbitrary geometries and experimentally demonstrate its applicability to murine models. To the best of our knowledge this is the first time that FMT based on a rotating-view scheme with structured illumination and image compression has been applied to animals.
近年来,人们越来越致力于优化荧光分子断层成像(FMT)的采集和重建方案。特别是,宽场结构光照和测量图像的压缩使得数据集显著减少,从而减少了采集和处理时间。基于此概念的 FMT 最近已在具有旋转视图方案的圆柱形体模上得到证明,该方案显著提高了重建质量。在这项工作中,我们将旋转视图方案推广到任意几何形状,并通过实验证明其在小鼠模型中的适用性。据我们所知,这是首次将基于旋转视图方案、结构光照和图像压缩的 FMT 应用于动物。