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全身生物分布以及身体活动对C-PiB正电子发射断层扫描(PET)脑部动力学分析的影响。

Whole-body biodistribution and the influence of body activity on brain kinetic analysis of the C-PiB PET scan.

作者信息

Akamatsu Go, Nishio Tomoyuki, Adachi Kazuhiko, Ikari Yasuhiko, Senda Michio

机构信息

Division of Molecular Imaging, Institute of Biomedical Research and Innovation, 2-2, Minatojima-Minamimachi, Chuo-ku, Kobe, 650-0047, Japan.

Department of Mechanical Engineering, Chubu University, 1200 Matsumoto-cho, Kasugai, 487-8501, Japan.

出版信息

Radiol Phys Technol. 2017 Dec;10(4):464-474. doi: 10.1007/s12194-017-0419-0. Epub 2017 Sep 11.

Abstract

Dynamic C-PiB PET imaging with kinetic analysis has been performed for accurate quantification of amyloid binding in patients with Alzheimer's disease (AD). In this study, we measured the whole-body biodistribution of C-PiB in nine subjects. We then evaluated the effect of body activity on quantitative accuracy of brain C-PiB three-dimensional (3D) dynamic PET. Based on clinical biodistribution data, we conducted phantom experiments to estimate the effect of body activity on quantification of the brain 3D dynamic C-PiB PET data and the error introduced by body activity using six different PET camera models. One of the PET cameras was used to acquire C-PiB brain 3D dynamic PET data on a patient with AD. We calculated the distribution volume ratio (DVR) in two kinetic methods using both the original human time-activity-curve (TAC) data and the TAC corrected for the error caused by body activity. In the early phase, both healthy subjects and patients with AD showed a biodistribution of C-PiB that reflected regional blood flow. In the simulated early phase of the phantom experiments, activity outside the field of view led to a maximum 6.0% overestimation of brain activity in the vertex region. Conversely, the effect of body activity on the DVR estimate was small (≤1.2%), probably because the tested kinetic methods did not rely heavily on early phase data. These results indicate that the effect of body activity on brain C-PiB PET quantification is generally small and that it depends on the method of kinetic analysis, the region of interest, and the PET camera model used.

摘要

采用动态C-PiB正电子发射断层显像(PET)及动力学分析技术,对阿尔茨海默病(AD)患者的淀粉样蛋白结合情况进行精确量化。在本研究中,我们测量了9名受试者体内C-PiB的全身生物分布。然后,我们评估了身体活动对脑C-PiB三维(3D)动态PET定量准确性的影响。基于临床生物分布数据,我们进行了体模实验,以评估身体活动对脑3D动态C-PiB PET数据定量的影响,以及使用6种不同PET相机模型时身体活动所引入的误差。其中一台PET相机用于采集一名AD患者的脑C-PiB 3D动态PET数据。我们使用原始人体时间-活度曲线(TAC)数据以及针对身体活动引起的误差进行校正后的TAC数据,通过两种动力学方法计算分布容积比(DVR)。在早期阶段,健康受试者和AD患者的C-PiB生物分布均反映了局部血流情况。在体模实验的模拟早期阶段,视野外的活动导致顶点区域的脑活动高估最多达6.0%。相反,身体活动对DVR估计值的影响较小(≤1.2%),这可能是因为所测试的动力学方法不太依赖早期阶段的数据。这些结果表明,身体活动对脑C-PiB PET定量的影响通常较小,并且它取决于动力学分析方法、感兴趣区域以及所使用的PET相机模型。

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