Clinical Neuroimaging Team, Molecular Neuroimaging Group, Molecular Imaging Center, National Institute of Radiological Sciences, 4-9-1 Anagawa, Inage-ku, Chiba, Japan.
Neuroimage. 2010 Jan 1;49(1):578-86. doi: 10.1016/j.neuroimage.2009.07.021. Epub 2009 Jul 23.
In positron emission tomography (PET) studies with radioligands for neuroreceptors, tracer kinetics have been described by the standard two-tissue compartment model that includes the compartments of nondisplaceable binding and specific binding to receptors. In the present study, we have developed a new graphic plot analysis to determine the total distribution volume (V(T)) and nondisplaceable distribution volume (V(ND)) independently, and therefore the binding potential (BP(ND)). In this plot, Y(t) is the ratio of brain tissue activity to time-integrated arterial input function, and X(t) is the ratio of time-integrated brain tissue activity to time-integrated arterial input function. The x-intercept of linear regression of the plots for early phase represents V(ND), and the x-intercept of linear regression of the plots for delayed phase after the equilibrium time represents V(T). BP(ND) can be calculated by BP(ND)=V(T)/V(ND)-1. Dynamic PET scanning with measurement of arterial input function was performed on six healthy men after intravenous rapid bolus injection of [(11)C]FLB457. The plot yielded a curve in regions with specific binding while it yielded a straight line through all plot data in regions with no specific binding. V(ND), V(T), and BP(ND) values calculated by the present method were in good agreement with those by conventional non-linear least-squares fitting procedure. This method can be used to distinguish graphically whether the radioligand binding includes specific binding or not.
在正电子发射断层扫描(PET)研究中,放射性配体用于神经受体,示踪剂动力学已被描述为标准的两组织室模型,该模型包括不可置换结合和与受体特异性结合的室。在本研究中,我们开发了一种新的图形分析方法,以独立确定总分布容积(V(T))和不可置换分布容积(V(ND)),从而确定结合潜力(BP(ND))。在该图中,Y(t)是脑组织活性与时间积分动脉输入函数的比值,X(t)是时间积分脑组织活性与时间积分动脉输入函数的比值。早期阶段图形线性回归的 x 截距表示 V(ND),平衡时间后延迟阶段图形线性回归的 x 截距表示 V(T)。BP(ND)可通过 BP(ND)=V(T)/V(ND)-1 计算。在静脉内快速推注[(11)C]FLB457 后,对 6 名健康男性进行动态 PET 扫描,以测量动脉输入功能。在具有特异性结合的区域中,该图生成了一条曲线,而在没有特异性结合的所有区域中,该图生成了一条直线。通过本方法计算的 V(ND)、V(T)和 BP(ND)值与传统非线性最小二乘拟合程序的结果非常吻合。该方法可用于直观地区分放射性配体结合是否包括特异性结合。