Time-of-Flight PET/CT Imaging of Ga-68-Dotatate: Normal Pattern, SUV Quantification, and Differences from Non-Time-of-Flight Imaging

IF 0.6 Q4 RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING World Journal of Nuclear Medicine Pub Date : 2024-05-07 DOI:10.1055/s-0044-1786529
Matthew Clifton Miller, Avani T. Bansal, Daniel Wingard, M. Lindenberg, Derek J. Stocker, Stephen Adler, Kalpna Prasad
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Abstract

Purpose The biodistribution of gallium-68-dotatate (Ga-68-dotatate) and standardized uptake values (SUVs) using non-time-of-flight (TOF) positron emission tomography/computed tomography (PET/CT) cameras is well established. However, with the eventual retirement of older PET cameras and their replacement with newer, highly sensitive TOF PET/CT cameras, where SUVmax measurements are reportedly higher, updated knowledge of normal SUVmax range is needed and, to our knowledge, not previously reported. Our objectives are as follows: Methods Fifty consecutive patients referred routinely to our nuclear medicine service (20 men, 30 women; median age 55 years) with presumed neuroendocrine tumors underwent Ga-68-dotatate scans on a PET-CT camera having capability of reconstructing both TOF/non-TOF images. Region of interests (ROIs) were drawn around 24 normal structures as well as the primary lesion with abnormal radiotracer uptake and SUVmax was measured. The same ROI was analyzed using both algorithms simultaneously and both TOF and non-TOF SUVmax values were compared. Results Twelve hundred ROIs were evaluated. Non-TOF Ga-68-dotatate uptake in normal structures was in alignment with previously published studies. As compared to non-TOF, TOF images had better target to background ratios visually. TOF SUVmax was higher for all structures except for lung and brain. TOF SUVmax was more than double in adrenals/uncinate process of the pancreas; approximately 1.8 times in abnormal lesions, lymph nodes, pineal gland; and greater than 1.5 times in thyroid, breast, and pancreatic head. Conclusion Normal database of Ga-68-dotatate TOF SUVmax is provided for common structures to aid visual detection of abnormalities objectively. Overall, TOF SUVmax measures higher in identical ROIs, with abnormal lesions measuring approximately 1.8 times higher versus non-TOF technology. These findings need to be taken in consideration when comparing patient scans imaged on different PET/CT technologies.
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Ga-68-Dotatate的飞行时间 PET/CT 成像:正常模式、SUV 定量以及与非飞行时间成像的差异
目的 使用非飞行时间(TOF)正电子发射断层扫描/计算机断层扫描(PET/CT)照相机测量68-点位酸镓(Ga-68-dotatate)的生物分布和标准化摄取值(SUV)已得到公认。然而,随着老式正电子发射计算机断层照相机的最终退役,取而代之的是据报道 SUVmax 测量值更高的新型高灵敏度 TOF 正电子发射计算机断层照相机,因此需要更新有关正常 SUVmax 范围的知识,而据我们所知,以前还没有这方面的报道。我们的目标如下:方法 连续 50 名常规转诊到我们核医学服务部门的推测为神经内分泌肿瘤的患者(20 名男性,30 名女性;中位年龄 55 岁)在一台具有 TOF/non-TOF 图像重建能力的 PET-CT 相机上接受了 Ga-68 点阵扫描。在 24 个正常结构和放射性示踪剂摄取异常的原发病灶周围绘制感兴趣区(ROI),并测量 SUVmax。同时使用两种算法对同一 ROI 进行分析,并比较 TOF 和非 TOF SUVmax 值。结果 评估了 1200 个 ROI。正常结构的非TOF摄取Ga-68-dotatate与之前发表的研究结果一致。与非TOF相比,TOF图像在视觉上具有更好的目标与背景比率。除肺部和大脑外,所有结构的TOF SUVmax都更高。肾上腺/胰腺未突的 TOF SUVmax 高出一倍多;异常病变、淋巴结、松果体的 TOF SUVmax 高出约 1.8 倍;甲状腺、乳腺和胰腺头部的 TOF SUVmax 高出 1.5 倍。结论 为常见结构提供了正常的 Ga-68 点阵 TOF SUVmax 数据库,以帮助视觉客观检测异常。总体而言,TOF SUVmax 在相同 ROI 中的测量值较高,异常病变的测量值是非 TOF 技术的约 1.8 倍。在比较使用不同 PET/CT 技术成像的患者扫描结果时,需要考虑这些发现。
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来源期刊
World Journal of Nuclear Medicine
World Journal of Nuclear Medicine RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING-
自引率
16.70%
发文量
118
审稿时长
48 weeks
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