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首页> 外文期刊>NeuroImage >Measurement of GABAA receptor binding in vivo with (11C)flumazenil: a test-retest study in healthy subjects.
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Measurement of GABAA receptor binding in vivo with (11C)flumazenil: a test-retest study in healthy subjects.

机译:(11C)氟马西尼体内GABAA受体结合的测量:一项针对健康受试者的重新测试研究。

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摘要

[(11)C]Flumazenil is widely used in positron emission tomography (PET) studies to measure GABA(A) receptors in vivo in humans. Although several different methods have been applied for the quantification of [(11)C]flumazenil binding, the reproducibility of these methods has not been previously examined. The reproducibility of a single bolus [(11)C]flumazenil measurements was studied by scanning eight healthy volunteers twice during the same day. Grey matter regions were analyzed using both regions-of-interest (ROI) and voxel-based analysis methods. Compartmental kinetic modelling using both arterial and reference region input function were applied to derive the total tissue distribution volume (V(T)) and the binding potential (BP) (BP(P) and BP(ND)) of [(11)C]flumazenil. To measure the reproducibility and reliability of each [(11)C]flumazenil binding parameter, absolute variability values (VAR) and intraclass correlation coefficients (ICC) were calculated. Tissue radioactivity concentration over time was best modelled with a 2-tissue compartmental model. V(T) showed with all methods good to excellent reproducibility and reliability with low VARs (mean of all brain regions) (5.57%-6.26%) and high ICCs (mean of all brain regions) (0.83-0.88) when using conventional ROI analysis. Also voxel-based analysis methods yielded excellent reproducibility (VAR 5.75% and ICC 0.81). In contrast, the BP estimates using pons as the reference tissue yielded higher VARs (8.08%-9.08%) and lower ICCs (0.35-0.80). In conclusion, the reproducibility of [(11)C]flumazenil measurements is considerably better with outcome measures based on arterial input function than those using pons as the reference tissue. The voxel-based analysis methods are proper alternative as the reliability is preserved and analysis automated.
机译:[(11)C]氟马西尼广泛用于正电子发射断层扫描(PET)研究中,以在人体中测量GABA(A)受体。尽管已将几种不同的方法应用于[(11)C]氟马西尼结合的定量分析,但这些方法的重现性尚未进行过检查。通过在同一天两次扫描八位健康志愿者,研究了单次推注[(11)C]氟马西尼测量的可重复性。使用关注区域(ROI)和基于体素的分析方法对灰质区域进行了分析。使用动脉和参考区域输入函数的室动力学建模被应用于得出[(11)C]的总组织分布体积(V(T))和结合电位(BP)(BP(P)和BP(ND)) ]氟马西尼。为了测量每个[(11)C]氟马西尼结合参数的可重复性和可靠性,计算了绝对变异性值(VAR)和组内相关系数(ICC)。用2组织隔室模型最好模拟随时间变化的组织放射性浓度。使用传统的ROI时,V(T)的所有方法均显示出优异的重现性和可靠性,具有低VAR(所有脑区域的平均值)(5.57%-6.26%)和高ICC(所有脑区域的平均值)(0.83-0.88)分析。此外,基于体素的分析方法还具有出色的重现性(VAR 5.75%和ICC 0.81)。相反,使用pons作为参考组织的BP估计产生了较高的VAR(8.08%-9.08%)和较低的ICC(0.35-0.80)。总之,与基于脑桥作为参考组织的结果相比,基于动脉输入功能的[(11)C]氟马西尼测量的可重复性要好得多。基于体素的分析方法是正确的选择,因为可以保留可靠性并自动进行分析。

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