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首页> 外文期刊>Medical and Biological Engineering and Computing: Journal of the International Federation for Medical and Biological Engineering >Multimodal molecular 3D imaging for the tumoral volumetric distribution assessment of folate-based biosensors
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Multimodal molecular 3D imaging for the tumoral volumetric distribution assessment of folate-based biosensors

机译:基于叶酸类生物传感器的肿瘤体积分布评估多峰分子3D成像

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摘要

The aim of this study was to characterize the in vivo volumetric distribution of three folate-based biosensors by different imaging modalities (X-ray, fluorescence, Cerenkov luminescence, and radioisotopic imaging) through the development of a tridimensional image reconstruction algorithm. The preclinical and multimodal Xtreme imaging system, with a Multimodal Animal Rotation System (MARS), was used to acquire bidimensional images, which were processed to obtain the tridimensional reconstruction. Images of mice at different times (biosensor distribution) were simultaneously obtained from the four imaging modalities. The filtered back projection and inverse Radon transformation were used as main image-processing techniques. The algorithm developed in Matlab was able to calculate the volumetric profiles of Tc-99m-Folate-Bombesin (radioisotopic image), Lu-177-Folate-Bombesin (Cerenkov image), and FolateRSense (TM) 680 (fluorescence image) in tumors and kidneys of mice, and no significant differences were detected in the volumetric quantifications among measurement techniques. The imaging tridimensional reconstruction algorithm can be easily extrapolated to different 2D acquisition-type images. This characteristic flexibility of the algorithm developed in this study is a remarkable advantage in comparison to similar reconstruction methods.
机译:该研究的目的是通过不同的成像模态(X射线,荧光,Cerenkov发光和放射性同位学成像)来表征三种基于叶酸的生物传感器的体内体积分布,通过开发三维图像重建算法。使用多模式动物旋转系统(MARS)的临床前和多模式Xtreme成像系统用于获取双层图像,该图像被加工以获得三维重建。在不同时间(生物传感器分布)的小鼠图像同​​时从四个成像方式获得。过滤的背部投影和逆氡变换用作主要图像处理技术。 Matlab中开发的算法能够计算TC-99M-叶酸爆炸蛋白(放射性同位素图像),Lu-177-叶茂物 - Bombesin(Cerenkov Image)和Folatersense(TM)680(荧光图像)的体积谱小鼠的肾脏,并且在测量技术的体积定量中没有检测到显着差异。成像串行重建算法可以容易地推断到不同的2D采集型图像。与类似的重建方法相比,本研究开发的算法的这种特征灵活性是一个显着的优势。

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