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360° Fourier Transform Profilometry in Surface Reconstruction for Fluorescence Molecular Tomography

机译:360°傅里叶变换轮廓仪在表面重建中的荧光分子层析成像

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摘要

Fluorescence molecular tomography (FMT) is an emerging tool in the observation of diseases. A fast and accurate surface reconstruction of the experimental object is needed as a boundary constraint for FMT reconstruction. In this paper, an automatic, noncontact, and 3-D surface reconstruction method named 360° Fourier transform profilometry (FTP) is proposed to reconstruct 3-D surface profiles for FMT system. This method can reconstruct 360° integrated surface profiles utilizing the single-frame FTP at different angles. Results show that the relative mean error of the surface reconstruction of this method is less than 1.4% in phantom experiments, and is no more than 2.9% in mouse experiments in vivo. Compared with the Radon transform method, the proposed method reduces the computation time by more than 90% with a minimal error increase. At last, a combined 360° FTP/FMT experiment is conducted on a nude mouse. Not only can the 360° FTP system operate with the FMT system simultaneously, but it can also help to monitor the status of animals. Moreover, the 360° FTP system is independent of FMT system and can be performed to reconstruct the surface by itself.
机译:荧光分子断层扫描(FMT)是观察疾病的新兴工具。需要快速准确地对实验对象进行表面重建,作为FMT重建的边界约束。本文提出了一种称为360°傅里叶变换轮廓仪(FTP)的自动,非接触式3D表面重建方法,以重建FMT系统的3D表面轮廓。这种方法可以利用不同角度的单帧FTP重建360°集成表面轮廓。结果表明,该方法表面重建的相对平均误差在体模实验中小于1.4%,在体内小鼠实验中不大于2.9%。与Radon变换方法相比,该方法将计算时间减少了90%以上,并且误差增加最小。最后,在裸鼠上进行了360°FTP / FMT组合实验。 360°FTP系统不仅可以与FMT系统同时运行,而且还可以帮助监视动物的状况。而且,360°FTP系统独立于FMT系统,并且可以单独执行以重建表面。

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