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首页> 外文期刊>IEEE Transactions on Nuclear Science >Implementation of a combined X-ray CT-scintillation camera imaging system for localizing and measuring radionuclide uptake: experiments in phantoms and patients
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Implementation of a combined X-ray CT-scintillation camera imaging system for localizing and measuring radionuclide uptake: experiments in phantoms and patients

机译:结合使用X射线CT闪烁相机成像系统来定位和测量放射性核素的吸收:在体模和患者中进行的实验

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摘要

We have developed and demonstrated an imaging system that couples an X-ray CT scanner to a scintillation camera for the localization and absolute measurement of radionuclide uptake. We use the registered CT images to provide physical information to overcome the quantitative errors in nuclear imaging due to attenuation, scattering and limited spatial resolution. The registration accuracy and precision in phantom experiments was 0.0/spl plusmn/0.4 mm. Preliminary patient scans suggest that the registration techniques developed for phantom studies can be used. Conversion of X-ray CT image data to attenuation maps was accomplished by the scaling of calibration data and includes extensions to account for the presence of iodinated contrast agents. Experimental phantom studies with /sup 99m/Tc show absolute quantitation with less than 10% error for up to 2:1 target:background activity concentration for objects as small as 2.7 ml. We are currently evaluating the imaging methods for the localization and absolute quantitation of /sup 131/I-MIBG (metaiodobenzylguanidine) in neuroblastoma patients.
机译:我们已经开发并演示了一种成像系统,该系统将X射线CT扫描仪耦合到闪烁照相机上,以进行放射性核素吸收的定位和绝对测量。我们使用已注册的CT图像来提供物理信息,以克服由于衰减,散射和有限的空间分辨率而导致的核成像定量误差。幻像实验中的套准精度和精度为0.0 / spl plusmn / 0.4 mm。初步的患者扫描表明,可以使用为幻像研究开发的注册技术。 X射线CT图像数据到衰减图的转换是通过校准数据的缩放完成的,并且包括扩展以解决碘化造影剂的存在。使用/ sup 99m / Tc进行的实验体模研究显示,对于小至2.7 ml的目标物,高达2:1的目标:背景活性浓度的绝对定量误差小于10%。我们目前正在评估成神经母细胞瘤患者中/ sup 131 / I-MIBG(甲亚氨基苄基胍)的定位和绝对定量的成像方法。

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