优化低和超低剂量扫描方案的超扩展视野PET在现实世界的临床设置。

IF 3.5 2区 医学 Q2 ONCOLOGY
Johanna Ingbritsen, Jason Callahan, Hugh Morgan, Melissa Munro, Robert E Ware, Rodney J Hicks
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引用次数: 0

摘要

真正的全身和扩展轴向视野(AFOV) PET/CT具有1米或更大的身体覆盖范围,现在已经上市,并且比传统的AFOV PET/CT显着提高了系统灵敏度。西门子Biograph Vision Quadra (Quadra)的AFOV为106cm,可以显著降低放射性药物的使用剂量,并缩短扫描时间。本研究的目的是优化在Quadra上使用FDG进行常规临床成像的采集方案,考虑到我们设施中物理基础设施的限制,减少活动的优先级。低剂量(1 MBq/kg)和超低剂量(0.5 MBq/g)队列,每20名患者分别在单床位置扫描10和15分钟,采用列表模式数据采集。然后重建这些数据,模拟逐渐缩短的获取时间,分别减少到30秒和1分钟,然后由2名经验丰富的PET读取器根据个人偏好选择最短的最佳和最小的获取持续时间。定量分析也进行了图像噪声,以评估其与定性偏好的关系。在两种剂量水平的共识最小采集持续时间下,肝脏中作为图像噪声度量的方差系数为10%或更低,并且在最佳和最长采集持续时间之间的该度量中有最小的减少。这些数据支持在Quadra上减少常规临床FDG PET/CT的给药活动和扫描采集时间,为工作人员和患者提供高效的工作流程和低辐射剂量,同时获得高质量的图像。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimisation of low and ultra-low dose scanning protocols for ultra-extended field of view PET in a real-world clinical setting.

True total-body and extended axial field-of-view (AFOV) PET/CT with 1m or more of body coverage are now commercially available and dramatically increase system sensitivity over conventional AFOV PET/CT. The Siemens Biograph Vision Quadra (Quadra), with an AFOV of 106cm, potentially allows use of significantly lower administered radiopharmaceuticals as well as reduced scan times. The aim of this study was to optimise acquisition protocols for routine clinical imaging with FDG on the Quadra the prioritisation of reduced activity given physical infrastructure constraints in our facility. Low-dose (1 MBq/kg) and ultra-low dose (0.5 MBq/g) cohorts, each of 20 patients were scanned in a single bed position for 10 and 15 min respectively with list-mode data acquisition. These data were then reconstructed simulating progressively shorter acquisition times down to 30 s and 1 min, respectively and then reviewed by 2 experienced PET readers who selected the shortest optimal and minimal acquisition durations based on personal preferences. Quantitative analysis was also performed of image noise to assess how this correlated with qualitative preferences. At the consensus minimum acquisition durations at both dosing levels, the coefficient of variance in the liver as a measure of image noise was 10% or less and there was minimal reduction in this measure between the optimal and longest acquisition durations. These data support the reduction in both administered activity and scan acquisition times for routine clinical FDG PET/CT on the Quadra providing efficient workflows and low radiation doses to staff and patients, while achieving high quality images.

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来源期刊
Cancer Imaging
Cancer Imaging ONCOLOGY-RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING
CiteScore
7.00
自引率
0.00%
发文量
66
审稿时长
>12 weeks
期刊介绍: Cancer Imaging is an open access, peer-reviewed journal publishing original articles, reviews and editorials written by expert international radiologists working in oncology. The journal encompasses CT, MR, PET, ultrasound, radionuclide and multimodal imaging in all kinds of malignant tumours, plus new developments, techniques and innovations. Topics of interest include: Breast Imaging Chest Complications of treatment Ear, Nose & Throat Gastrointestinal Hepatobiliary & Pancreatic Imaging biomarkers Interventional Lymphoma Measurement of tumour response Molecular functional imaging Musculoskeletal Neuro oncology Nuclear Medicine Paediatric.
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