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Reproducibility of striatal and thalamic dopamine D2 receptor binding using [11C]raclopride with high-resolution positron emission tomography

机译:[11C]雷氯必利与正电子发射断层扫描的高分辨率结合,可重现纹状体和丘脑多巴胺D2受体

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摘要

Positron emission tomography (PET) imaging of small striatal brain structures such as the ventral striatum (VST) has been hampered by low spatial resolution causing partial-volume effects. The high-resolution research tomograph (HRRT) is a brain-dedicated PET scanner that has considerably better spatial resolution than its predecessors. However, its superior spatial resolution is associated with a lower signal-to-noise ratio. We evaluated the test–retest reliability of the striatal and thalamic dopamine D2 receptor binding using the HRRT scanner. Seven healthy male volunteers underwent two [11C]raclopride PET scans with a 2.5-hour interval. Dopamine D2 receptor availability was quantified as binding potential (BPND) using the simplified reference tissue model. To evaluate the reproducibility of repeated BPND estimations, absolute variability (VAR) and intraclass correlation coefficients (ICCs) were calculated. VAR values indicated fairly good reproducibility and were 3.6% to 4.5% for the caudate nucleus and putamen and 4.5% to 6.4% for the lateral and medial part of the thalamus. In the VST, the VAR value was 5.8% when the definition was made in the coronal plane. However, the ICC values were only moderate, in the range of 0.34 to 0.66, for all regions except the putamen (0.87). Experimental signal processing methods improved neither ICC nor VAR values significantly.
机译:较小的纹状体大脑结构(如腹侧纹状体(VST))的正电子发射断层扫描(PET)成像受到空间分辨率低的影响,从而导致部分体积效应。高分辨率研究型断层扫描仪(HRRT)是一种大脑专用的PET扫描仪,其空间分辨率比以前的扫描仪好得多。但是,其出色的空间分辨率与较低的信噪比相关。我们使用HRRT扫描仪评估了纹状体和丘脑多巴胺D2受体结合的重测可靠性。七名健康的男性志愿者接受了两次[11C]雷氯必利PET扫描,间隔时间为2.5小时。使用简化的参考组织模型,将多巴胺D2受体的有效性量化为结合电位(BPND)。为了评估重复BPND估计的可重复性,计算了绝对变异性(VAR)和类内相关系数(ICC)。 VAR值显示出相当好的重现性,尾状核和壳状核为3.6%至4.5%,丘脑的外侧和内侧部分为4.5%至6.4%。在VST中,当在冠状平面内进行定义时,VAR值为5.8%。但是,除核壳蛋白(0.87)以外的所有区域的ICC值均中等,在0.34至0.66的范围内。实验信号处理方法均未显着改善ICC和VAR值。

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