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A Combined Fluorescence and Microcomputed Tomography System for Small Animal Imaging

机译:组合荧光和微型计算机断层扫描系统,用于小动物成像

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摘要

Fluorescence molecular tomography (FMT) plays an important role in studying physiological and pathological processes of small animals in vivo at molecular level. However, this technique suffers from relatively low spatial resolution. To complement the problem, there has been a strong demand for providing functional and morphological analysis at the same time. In this paper, we proposed a hybrid full-angle free-space FMT and X-ray micro-cone-beam computed tomography (CT) (micro-CBCT) prototype system, providing both functional and anatomical images. During the whole acquisition, the two subsystems acquire projection images (fluorescence and CT) synchronously to keep consistent body position without moving the animals. The acquired datasets are intrinsically coregistered in the corresponding coordinate and identified geometry. Tomographic fluorescence and CT images are reconstructed using normalized Born-based spatial regularization and Feldkamp–Davis–Kress methods, respectively. The experimental results of both phantom and in vivo mouse preliminarily validate the accuracy and performance of the integrated system.
机译:荧光分子断层扫描(FMT)在研究小动物体内分子水平的生理和病理过程中起着重要作用。但是,该技术的空间分辨率较低。为了补充该问题,强烈要求同时提供功能和形态分析。在本文中,我们提出了一种混合的全角度自由空间FMT和X射线微锥计算机断层扫描(CT)(micro-CBCT)原型系统,可提供功能和解剖学图像。在整个采集过程中,两个子系统同步采集投影图像(荧光和CT),以保持一致的身体位置而无需移动动物。所获取的数据集在相应的坐标和识别的几何体中固有地共配准。层析荧光和CT图像分别使用归一化的基于Born的空间正则化和Feldkamp–Davis–Kress方法重建。幻像和体内小鼠的实验结果初步验证了集成系统的准确性和性能。

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