18F-DOPA PET 评估纹状体和纹状体外前突触多巴胺能功能的重测信度。

The test-retest reliability of 18F-DOPA PET in assessing striatal and extrastriatal presynaptic dopaminergic function.

机构信息

Psychiatric Imaging, Medical Research Council Clinical Sciences Centre, Imperial College London, Hammersmith Hospital, Du Cane Road, London W12 0NN, United Kingdom.

Division of Neurosciences & Mental Health, Imperial College London, United Kingdom.

出版信息

Neuroimage. 2010 Apr 1;50(2):524-531. doi: 10.1016/j.neuroimage.2009.12.058. Epub 2009 Dec 23.

Abstract

Brain presynaptic dopaminergic function can be assessed using 18F-DOPA positron emission tomography (PET). Regional 18F-DOPA utilization may be used to index dopaminergic abnormalities over time or dopaminergic response to treatment in clinical populations. Such studies require prior knowledge of the stability of the 18F-DOPA signal in the brain regions of interest. Test-retest reliability was examined in eight healthy volunteers who each received two 18F-DOPA PET scans, approximately 2 years apart. 18F-DOPA utilization (k(i)(cer)) was determined using graphical analysis relative to a reference tissue input (Patlak and Blasberg, 1985). Reproducibility (measured as the within-subjects variation) and reliability (measured as intraclass correlation coefficients, ICCs) of 18F-DOPA k(i)(cer) were assessed in the structural and functional subdivisions of the striatum and select extrastriatal brain regions. Voxel-based median ICC maps were used to visualize the distribution of 18F-DOPA k(i)(cer) reliability across the brain. The caudate and putamen, and associative and sensorimotor, striatal subdivisions showed good reliability across the two scan sessions with bilateral ICCs ranging from 0.681 to 0.944. Reliability was generally lower in extrastriatal regions, with bilateral ICCs ranging from 0.235 in the amygdala to 0.894 in the thalamus. These data confirm the utility of 18F-DOPA PET in assessing dopaminergic function in the striatum and select extrastriatal areas but highlight the limitations in using this approach to measure dopaminergic function in low uptake extrastriatal brain areas. This information can be used to optimize the experimental design of future studies investigating changes in brain dopaminergic function with 18F-DOPA.

摘要

脑内突触前多巴胺能功能可以通过 18F-DOPA 正电子发射断层扫描(PET)进行评估。18F-DOPA 的利用可以用来随时间评估多巴胺能的异常或多巴胺能对临床人群的治疗反应。此类研究需要事先了解脑内感兴趣区域中 18F-DOPA 信号的稳定性。在 8 名健康志愿者中检查了测试-重测信度,他们每人接受了两次 18F-DOPA PET 扫描,大约相隔 2 年。18F-DOPA 的利用(k(i)(cer))是通过相对于参考组织输入(Patlak 和 Blasberg,1985)的图形分析来确定的。在纹状体的结构和功能细分以及选择的纹状体外脑区中,评估了 18F-DOPA k(i)(cer)的可重复性(以个体内变异来衡量)和可靠性(以组内相关系数,ICC 来衡量)。基于体素的中位数 ICC 图用于可视化 18F-DOPA k(i)(cer)可靠性在整个大脑中的分布。尾状核和壳核以及联合和感觉运动纹状体细分区域在两次扫描中均表现出良好的可靠性,双侧 ICC 范围为 0.681 至 0.944。纹状体外区域的可靠性通常较低,双侧 ICC 范围从杏仁核的 0.235 到丘脑的 0.894。这些数据证实了 18F-DOPA PET 在评估纹状体和选择的纹状体外区域中的多巴胺能功能方面的效用,但强调了在使用这种方法来测量低摄取纹状体外脑区中的多巴胺能功能方面的局限性。这些信息可以用于优化未来使用 18F-DOPA 研究脑内多巴胺能功能变化的研究的实验设计。

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