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使用两阶段图形分析对用于神经受体的PET探针的动力学特性进行视觉评估。

Visual evaluation of kinetic characteristics of PET probe for neuroreceptors using a two-phase graphic plot analysis.

作者信息

Ito Hiroshi, Ikoma Yoko, Seki Chie, Kimura Yasuyuki, Kawaguchi Hiroshi, Takuwa Hiroyuki, Ichise Masanori, Suhara Tetsuya, Kanno Iwao

机构信息

Department of Functional Brain Imaging Research, National Institute of Radiological Sciences, 4-9-1 Anagawa, Inage-ku, Chiba, 263-8555, Japan.

Department of Radiology and Nuclear Medicine, Fukushima Medical University, 1 Hikarigaoka, Fukushima, Fukushima, 960-1295, Japan.

出版信息

Ann Nucl Med. 2017 May;31(4):273-282. doi: 10.1007/s12149-017-1155-6. Epub 2017 Feb 8.

Abstract

Objectives In PET studies for neuroreceptors, tracer kinetics are described by the two-tissue compartment model (2-TCM), and binding parameters, including the total distribution volume (V ), non-displaceable distribution volume (V ), and binding potential (BP), can be determined from model parameters estimated by kinetic analysis. The stability of binding parameter estimates depends on the kinetic characteristics of radioligands. To describe these kinetic characteristics, we previously developed a two-phase graphic plot analysis in which V and V can be estimated from the x-intercept of regression lines for early and delayed phases, respectively. In this study, we applied this graphic plot analysis to visual evaluation of the kinetic characteristics of radioligands for neuroreceptors, and investigated a relationship between the shape of these graphic plots and the stability of binding parameters estimated by the kinetic analysis with 2-TCM in simulated brain tissue time-activity curves (TACs) with various binding parameters. Methods 90-min TACs were generated with the arterial input function and assumed kinetic parameters according to 2-TCM. Graphic plot analysis was applied to these simulated TACs, and the curvature of the plot for each TAC was evaluated visually. TACs with several noise levels were also generated with various kinetic parameters, and the bias and variation of binding parameters estimated by kinetic analysis were calculated in each TAC. These bias and variation were compared with the shape of graphic plots. Results The graphic plots showed larger curvature for TACs with higher specific binding and slower dissociation of specific binding. The quartile deviations of V and BP determined by kinetic analysis were smaller for radioligands with slow dissociation. Conclusions The larger curvature of graphic plots for radioligands with slow dissociation might indicate a stable determination of V and BP by kinetic analysis. For investigation of the kinetics of radioligands, such kinetic characteristics should be considered.

摘要

目的 在用于神经受体的正电子发射断层扫描(PET)研究中,示踪剂动力学由双组织室模型(2-TCM)描述,并且包括总分布容积(V )、非置换分布容积(V )和结合势(BP)在内的结合参数可从通过动力学分析估计的模型参数中确定。结合参数估计的稳定性取决于放射性配体的动力学特征。为了描述这些动力学特征,我们先前开发了一种两相图形分析方法,其中V 和V 可分别从早期和延迟期回归线的x轴截距估计得出。在本研究中,我们将这种图形分析应用于神经受体放射性配体动力学特征的视觉评估,并在具有各种结合参数的模拟脑组织时间-活度曲线(TAC)中,研究了这些图形的形状与通过2-TCM动力学分析估计的结合参数稳定性之间的关系。方法 根据2-TCM,利用动脉输入函数和假定的动力学参数生成90分钟的TAC。将图形分析应用于这些模拟的TAC,并直观评估每个TAC图形的曲率。还利用各种动力学参数生成了具有几种噪声水平的TAC,并计算了每个TAC中通过动力学分析估计的结合参数的偏差和变化。将这些偏差和变化与图形的形状进行比较。结果 对于具有较高特异性结合和较慢特异性结合解离的TAC,图形显示出更大的曲率。对于解离较慢的放射性配体,通过动力学分析确定的V 和BP的四分位数偏差较小。结论 解离较慢的放射性配体的图形曲率较大可能表明通过动力学分析可以稳定地确定V 和BP。在研究放射性配体的动力学时,应考虑这种动力学特征。

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