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影响全身正电子发射断层扫描/计算机断层扫描中计算机断层扫描部分剂量长度乘积的因素。

Factors affecting dose-length product of computed tomography component in whole-body positron emission tomography/computed tomography.

机构信息

Department of Diagnostic Radiology, Kitasato University School of Medicine, 1-15-1 Kitasato, Minami-ku, Sagamihara, Kanagawa, Japan.

Department of Radiology, Kitasato University Hospital, 1-15-1 Kitasato, Minami-ku, Sagamihara, Kanagawa, Japan.

出版信息

J Radiol Prot. 2022 Jun 1;42(2). doi: 10.1088/1361-6498/ac6a89.

Abstract

In whole-body positron emission tomography (PET)/computed tomography (CT), it is important to optimise the CT radiation dose. We have investigated factors affecting the dose-length product (DLP) of the CT component of whole-body PET/CT and derived equations to predict the DLP. In this retrospective study, 1596 whole-body oncology PET/CT examinations withF-fluorodeoxyglucose were analysed. Automatic exposure control was used to modulate radiation dose in CT. Considering age, weight, sex, arm position (up, down, one arm up), scan range (up to the mid-thigh or feet), scan mode (spiral or respiratory-triggered nonspiral) and the presence of a metal prosthesis as potential factors, multivariate analysis was performed to identify independent predictors of DLP and to determine equations to predict DLP. DLP values were predicted using the obtained equations, and compared with actual values. Among body size indices, weight best correlated with DLP in examinations performed under the standard imaging conditions (arms: up; scan range: up to the mid-thigh; scan mode: spiral; and no metal prosthesis). Multivariate analysis indicated that weight, arm position, scan range and scan mode were substantial independent predictors; lowering the arms, extending the scan range and using respiratory-triggered imaging, as well as increasing weight, increased DLP. The degree of the DLP increase tended to increase with increasing weight. The DLP values were predicted using equations that considered these parameters were in excellent agreement with the actual values. The DLP for the CT component of whole-body PET/CT is affected by weight, arm position, scan range and scan mode, and can be predicted with excellent accuracy using these factors.

摘要

在全身正电子发射断层扫描(PET)/计算机断层扫描(CT)中,优化 CT 辐射剂量非常重要。我们研究了影响全身 PET/CT 中 CT 成分剂量长度乘积(DLP)的因素,并得出了预测 DLP 的方程。在这项回顾性研究中,我们分析了 1596 例全身肿瘤 F-氟脱氧葡萄糖 PET/CT 检查。自动曝光控制用于调节 CT 中的辐射剂量。考虑到年龄、体重、性别、手臂位置(向上、向下、一只手臂向上)、扫描范围(直至大腿中部或脚部)、扫描模式(螺旋或呼吸触发非螺旋)以及是否存在金属假体作为潜在因素,我们进行了多变量分析,以确定 DLP 的独立预测因素,并确定预测 DLP 的方程。使用获得的方程预测 DLP 值,并与实际值进行比较。在体型指数中,体重与标准成像条件下(手臂:向上;扫描范围:直至大腿中部;扫描模式:螺旋;无金属假体)的 DLP 相关性最好。多变量分析表明,体重、手臂位置、扫描范围和扫描模式是实质性的独立预测因素;降低手臂位置、延长扫描范围并使用呼吸触发成像以及增加体重都会增加 DLP。随着体重的增加,DLP 增加的程度也趋于增加。使用考虑这些参数的方程预测 DLP 值与实际值非常吻合。全身 PET/CT 中 CT 成分的 DLP 受体重、手臂位置、扫描范围和扫描模式的影响,这些因素可以准确预测。

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