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首页> 外文期刊>Nuclear Medicine Communications >A positron emission tomography/computed tomography (PET/CT) acquisition protocol for CT radiation dose optimization.
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A positron emission tomography/computed tomography (PET/CT) acquisition protocol for CT radiation dose optimization.

机译:用于CT辐射剂量优化的正电子发射断层扫描/计算机断层扫描(PET / CT)采集方案。

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BACKGROUND: In current combined positron emission tomography/computed tomography (PET/CT) systems, high-quality CT images not only increase diagnostic value by providing anatomic delineation of hyper- and hypometabolic tissues, but also shorten the acquisition time for attenuation correction compared with standard PET imaging. However, this technique potentially introduces more radiation burden to patients as a result of the higher radiation exposure from CT. METHODS: In this study, the radiation doses delivered from typical germanium-based and CT-based transmission scans were measured and compared using an anthropomorphic Rando Alderson phantom with insertions of thermoluminescent dosimeters. Image geometric distortion and quantified uptake values in PET images with different manipulating CT acquisition protocols for attenuation correction were also evaluated. RESULTS: It was found that radiation doses during germanium-based transmission scans were almost negligible, while doses from CT-based transmission scans were significantly higher. Using a lower radiation dose, the CT acquisition protocol did not significantly affect attenuation correction and anatomic delineation in PET. CONCLUSIONS: This study revealed the relation between image information and dose. The current PET/CT imaging acquisition protocol was improved by decreasing the radiation risks without sacrificing the diagnostic values.
机译:背景:在当前的正电子发射断层扫描/计算机断层扫描(PET / CT)组合系统中,高质量的CT图像不仅通过提供高代谢和低代谢组织的解剖特征来提高诊断价值,而且与衰减校正相比,缩短了获取时间标准PET成像。但是,由于CT的辐射量较高,该技术可能给患者带来更多的辐射负担。方法:在这项研究中,使用拟人化的Rando Alderson幻像并插入了热发光剂量计,测量并比较了典型的基于锗和基于CT的透射扫描的辐射剂量。还评估了使用不同的CT采集协议进行衰减校正的PET图像中的图像几何畸变和定量摄取值。结果:发现基于锗的透射扫描的辐射剂量几乎可以忽略不计,而基于CT的透射扫描的辐射剂量则明显更高。使用较低的辐射剂量,CT采集协议不会显着影响PET中的衰减校正和解剖学轮廓。结论:这项研究揭示了图像信息和剂量之间的关系。在不牺牲诊断价值的前提下,通过降低辐射风险改善了当前的PET / CT成像采集协议。

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