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首页> 外文期刊>The Journal of Nuclear Medicine >A feasibility study of a prototype PET insert device to convert a general-purpose animal PET scanner to higher resolution.
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A feasibility study of a prototype PET insert device to convert a general-purpose animal PET scanner to higher resolution.

机译:原型PET插入设备将通用动物PET扫描仪转换为更高分辨率的可行性研究。

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We developed a prototype system to evaluate the feasibility of using a PET insert device to achieve higher resolution from a general-purpose animal PET scanner. METHODS: The system consists of a high-resolution PET detector, a computer-controlled rotation stage, and a custom mounting plate. The detector consists of a cerium-doped lutetium oxyorthosilicate array (12 x 12 crystals, 0.8 x 1.66 x 3.75 mm(3) each) directly coupled to a position-sensitive photomultiplier tube (PS-PMT). The detector signals were fed into the scanner electronics to establish coincidences between the 2 systems. The detector was mounted to a rotation stage that is attached to the scanner via the custom mounting plate after removing the transmission source holder. The rotation stage was concentric with the center of the scanner. The angular offset of the insert detector was calibrated via optimizing point-source images. In all imaging experiments, coincidence data were collected from 9 angles to provide 180 degrees sampling. A (22)Na point source was imaged at different offsets from the center to characterize the in-plane resolution of the insert system. A (68)Ge point source was stepped across the axial field of view to measure the sensitivity of the system. A 23.2-g mouse was injected with 38.5 MBq of (18)F-fluoride and imaged at 3 h after injection for 2 h. RESULTS: The transverse image resolution of the PET insert device ranges from 1.1- to 1.4-mm full width at half maximum (FWHM) without correction for the point-source dimension. This corresponds to approximately 33% improvement over the resolution of the original scanner (1.7- to 1.8-mm FWHM) in 2 of the 3 directions. The sensitivity of the device is 0.064% at the center of the field, 46-fold lower than the sensitivity of an existing animal PET scanner. The mouse bone scan had improved image resolution using the PET insert device over that of the existing animal PET scanner alone. CONCLUSION: We have demonstrated the feasibility of using a high-resolution insert device in an existing PET scanner to provide high-resolution PET. A PET insert device with more detector modules will improve sensitivity and may become an alternative to special-purpose PET systems for high-resolution PET.
机译:我们开发了一个原型系统,以评估使用PET插入设备从通用动物PET扫描仪获得更高分辨率的可行性。方法:该系统由高分辨率PET检测器,计算机控制的旋转台和定制安装板组成。检测器由直接耦合到位置敏感光电倍增管(PS-PMT)的铈掺杂cer正硅酸array阵列(12 x 12晶体,每个0.8 x 1.66 x 3.75 mm(3))组成。检测器信号被馈送到扫描仪电子设备,以在两个系统之间建立一致。将检测器安装到旋转台上,该旋转台在卸下传输源支架后通过定制安装板连接到扫描仪。旋转台与扫描仪的中心同心。插入检测器的角度偏移通过优化点源图像进行校准。在所有成像实验中,从9个角度收集了符合性数据,以提供180度采样。一个(22)Na点源在距中心不同的位置成像,以表征插入系统的面内分辨率。 (68)Ge点源跨轴视场步进,以测量系统的灵敏度。向23.2 g的小鼠注射38.5 MBq的(18)F-氟化物,并在注射2 h后3 h成像。结果:PET插入设备的横向图像分辨率范围为半高全宽(FWHM)从1.1毫米到1.4毫米,而无需校正点源尺寸。在三个方向中的两个方向上,这与原始扫描仪的分辨率(1.7毫米至1.8毫米FWHM)相比提高了约33%。该设备在场中心的灵敏度为0.064%,比现有动物PET扫描仪的灵敏度低46倍。与单独的现有动物PET扫描仪相比,使用PET插入设备进行的小鼠骨骼扫描具有更高的图像分辨率。结论:我们已经证明了在现有的PET扫描仪中使用高分辨率插入设备来提供高分辨率PET的可行性。具有更多检测器模块的PET插入设备将提高灵敏度,并可能成为高分辨率PET专用PET系统的替代产品。

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