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U-SPECT-II: an ultra-high-resolution device for molecular small-animal imaging

机译:U-spECT-II:用于分子小动物成像的超高分辨率装置

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摘要

We present a new rodent SPECT system (U-SPECT-II) that enables molecular imaging of murine organs down to resolutions of less than half a millimeter and high-resolution total-body imaging. Methods: The U-SPECT-II is based on a triangular stationary detector set-up, an XYZ stage that moves the animal during scanning, and interchangeable cylindric collimators (each containing 75 pinhole apertures) for both mouse and rat imaging. A novel graphical user interface incorporating preselection of the field of view with the aid of optical images of the animal focuses the pinholes to the area of interest, thereby maximizing sensitivity for the task at hand. Images are obtained from list-mode data using statistical reconstruction that takes system blurring into account to increase resolution. Results: For Tc-99m, resolutions determined with capillary phantoms were smaller than 0.35 and 0.45 mm using the mouse collimator with 0.35- and 0.6-mm pinholes, respectively, and less than 0.8 mm using the rat collimator with 1.0-mm pinholes. Peak geometric sensitivity is 0.07% and 0.18% for the mouse collimator with 0.35- and 0.6-mm pinholes, respectively, and 0.09% for the rat collimator. Resolution with In-111, compared with that with Tc-99m, was barely degraded, and resolution with I-125 was degraded by about 10%, with some additional distortion. In vivo, kidney, tumor, and bone images illustrated that U-SPECT-II could be used for novel applications in the study of dynamic biologic systems and radiopharmaceuticals at the suborgan level. Conclusion: Images and movies obtained with U-SPECT-II provide high-resolution radiomolecule visualization in rodents. Discrimination of molecule concentrations between adjacent volumes of about 0.04 mu L in mice and 0.5 mu L in rats with U-SPECT-II is readily possible.
机译:我们提出了一种新的啮齿动物SPECT系统(U-SPECT-II),该系统能够对鼠器官进行低至不到半毫米的分辨率的分子成像和高分辨率的全身成像。方法:U-SPECT-II基于三角形固定检测器设置,在扫描过程中移动动物的XYZ平台以及可互换的圆柱状准直器(每个都包含75个针孔),可用于小鼠和大鼠成像。一种新颖的图形用户界面,结合了借助动物的光学图像对视场进行的预选,将针孔聚焦到感兴趣的区域,从而使手头任务的灵敏度最大化。使用统计重建从列表模式数据中获取图像,该统计重建考虑了系统模糊以提高分辨率。结果:对于Tc-99m,使用带有0.35-和0.6-mm针孔的鼠标准直仪,用毛细管模体测定的分辨率分别小于0.35和0.45 mm,使用带有1.0-mm针孔的大鼠准直仪,其分辨率小于0.8 mm。带有0.35和0.6毫米针孔的鼠标准直仪的峰值几何灵敏度分别为0.07%和0.18%,而对于大鼠准直仪的峰值几何灵敏度为0.09%。与Tc-99m相比,In-111的分辨率几乎没有降低,而I-125的分辨率则降低了约10%,并且还有一些失真。在体内,肾脏,肿瘤和骨骼的图像说明,U-SPECT-II可以用于亚器官一级的动态生物系统和放射性药物研究中的新应用。结论:用U-SPECT-II获得的图像和电影可在啮齿动物中提供高分辨率的放射性分子可视化。区分具有U-SPECT-II的小鼠中约0.04μL和大鼠中的0.5μL的相邻体积之间的分子浓度很容易。

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