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Optimization of a contrast enhanced micro-CT in a hybrid fluorescence / x-ray tomography system for small animal imaging

机译:混合荧光/ x射线断层扫描系统中用于小动物成像的对比度增强型微CT的优化

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Dual modality imaging is an emerging and fast developing technique due to its advantage in providing complementary anatomical and functional information. Moreover, in the specific case of Fluorescence Molecular Tomography (FMT), knowledge of the detailed anatomical structure of the subject can be very helpful in improving 3D fluorescence reconstruction. In the framework of the FMT-XCT European Project, aimed at the development of a hybrid tomographic x-rays and optical prototype, we propose in this paper a specific micro-CT system, appropriate for small animal imaging and satisfying the needs of the dual-modality approach. The system is minimizing X-ray interference with optical components, and offers improved contrast between internal tissues to be used as prior information for the FMT inversion procedure. For the contrast enhancement goal, a dual-energy approach has been investigated and evaluated. System configuration, acquisition protocol and processing algorithms are described in the following sections. Software simulation has been used for the optimization of the imaging configuration and the suggested specifications and the resulting imaging performances are experimentally validated.
机译:由于双模态成像在提供互补的解剖学和功能信息方面的优势,因此是一种新兴且发展迅速的技术。此外,在荧光分子断层扫描(FMT)的特定情况下,了解对象的详细解剖结构可能对改善3D荧光重建非常有帮助。在FMT-XCT欧洲项目的框架下,旨在开发X射线断层摄影和光学原型的混合体,我们在本文中提出了一种特定的微型CT系统,适用于小动物成像并满足双重成像的需求。 -模态方法。该系统最大程度地减少了对光学组件的X射线干扰,并提供了内部组织之间更好的对比度,可用作FMT反转程序的先验信息。为了增强对比度,已经研究并评估了双能方法。以下各节介绍了系统配置,采集协议和处理算法。软件仿真已用于优化成像配置,建议的规格以及由此产生的成像性能已通过实验验证。

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