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混合式显微计算机断层扫描-荧光分子断层成像及图像分析。

Hybrid µCT-FMT imaging and image analysis.

作者信息

Gremse Felix, Doleschel Dennis, Zafarnia Sara, Babler Anne, Jahnen-Dechent Willi, Lammers Twan, Lederle Wiltrud, Kiessling Fabian

机构信息

Experimental Molecular Imaging, RWTH Aachen University.

Institute for Biomedical Engineering - Biointerface Laboratory, RWTH Aachen University.

出版信息

J Vis Exp. 2015 Jun 4(100):e52770. doi: 10.3791/52770.

Abstract

Fluorescence-mediated tomography (FMT) enables longitudinal and quantitative determination of the fluorescence distribution in vivo and can be used to assess the biodistribution of novel probes and to assess disease progression using established molecular probes or reporter genes. The combination with an anatomical modality, e.g., micro computed tomography (µCT), is beneficial for image analysis and for fluorescence reconstruction. We describe a protocol for multimodal µCT-FMT imaging including the image processing steps necessary to extract quantitative measurements. After preparing the mice and performing the imaging, the multimodal data sets are registered. Subsequently, an improved fluorescence reconstruction is performed, which takes into account the shape of the mouse. For quantitative analysis, organ segmentations are generated based on the anatomical data using our interactive segmentation tool. Finally, the biodistribution curves are generated using a batch-processing feature. We show the applicability of the method by assessing the biodistribution of a well-known probe that binds to bones and joints.

摘要

荧光介导断层扫描(FMT)能够对体内荧光分布进行纵向和定量测定,可用于评估新型探针的生物分布,并使用已确立的分子探针或报告基因评估疾病进展。与解剖模态(如微型计算机断层扫描(µCT))相结合,有利于图像分析和荧光重建。我们描述了一种多模态µCT-FMT成像方案,包括提取定量测量所需的图像处理步骤。在准备好小鼠并进行成像后,对多模态数据集进行配准。随后,进行改进的荧光重建,该重建考虑了小鼠的形状。为了进行定量分析,使用我们的交互式分割工具基于解剖数据生成器官分割。最后,使用批处理功能生成生物分布曲线。我们通过评估一种与骨骼和关节结合的知名探针的生物分布来展示该方法的适用性。

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