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Performance of a high-sensitivity dedicated cardiac SPECT scanner for striatal uptake quantification in the brain based on analysis of projection data

机译:基于投影数据分析的高灵敏度专用心脏SPECT扫描仪在大脑中纹状体摄取量化中的性能

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Purpose: The authors have previously reported the advantages of high-sensitivity single-photon emission computed tomography (SPECT) systems for imaging structures located deep inside the brain. DaTscan (Isoflupane 1-123) is a dopamine transporter (DaT) imaging agent that has shown potential for early detection of Parkinson disease (PD), as well as for monitoring progression of the disease. Realizing the full potential of DaTscan requires efficient estimation of striatal uptake from SPECT images. They have evaluated two SPECT systems, a conventional dual-head gamma camera with low-energy high-resolution collimators (conventional) and a dedicated high-sensitivity multidetector cardiac imaging system (dedicated) for imaging tasks related to PD. Methods: Cramer-Rao bounds (CRB) on precision of estimates of striatal and background activity concentrations were calculated from high-count, separate acquisitions of the compartments (right striata, left striata, background) of a striatal phantom. CRB on striatal and background activity concentration were calculated from essentially noise-free projection datasets, synthesized by scaling and summing the compartment projection datasets, for a range of total detected counts. They also calculated variances of estimates of specific-to-nonspecific binding ratios (BR) and asymmetry indices from these values using propagation of error analysis, as well as the precision of measuring changes in BR on the order of the average annual decline in early PD. Results: Under typical clinical conditions, the conventional camera detected 2 M counts while the dedicated camera detected 12 M counts. Assuming a normal BR of 5, the standard deviation of BR estimates was 0.042 and 0.021 for the conventional and dedicated system, respectively. For an 8% decrease to BR = 4.6, the signal-to-noise ratio were 6.8 (conventional) and 13.3 (dedicated); for a 5% decrease, they were 4.2 (conventional) and 8.3 (dedicated). Conclusions: This implies that PD can be detected earlier with the dedicated system than with the conventional system; therefore, earlier identification of PD progression should be possible with the high-sensitivity dedicated SPECT camera.
机译:目的:作者先前已经报道了高灵敏度单光子发射计算机断层摄影(SPECT)系统对位于大脑深处的结构成像的优势。 DaTscan(Isoflupane 1-123)是一种多巴胺转运蛋白(DaT)成像剂,已显示出早期发现帕金森氏病(PD)以及监测疾病进展的潜力。要实现DaTscan的全部潜能,需要从SPECT图像有效估计纹状体吸收。他们评估了两个SPECT系统,一个具有低能量高分辨率准直仪的常规双头伽马相机(常规)和一个用于PD成像任务的专用高灵敏度多探测器心脏成像系统(专用)。方法:根据大量,单独采集的纹状体模的隔室(右纹状体,左纹状体,背景),计算出纹状体和背景活性浓度估计值的精确度的克莱默-拉奥界限(CRB)。从基本无噪声的投影数据集中,计算出纹状体和背景活性浓度的CRB,并通过对隔室投影数据集进行缩放和求和,得出一定范围的总检测计数。他们还使用误差分析的传播,根据这些值计算了特定对非特定结合比(B​​R)和不对称指数的估计值的方差,以及按照早期PD平均每年下降的顺序测量BR变化的精度。 。结果:在典型的临床条件下,常规摄像机检测到2 M计数,而专用摄像机检测到12 M计数。假设正常BR为5,则传统系统和专用系统的BR估计值的标准偏差分别为0.042和0.021。当BR降低至4.6时降低8%,则信噪比分别为6.8(常规)和13.3(专用);下降5%,分别为4.2(常规)和8.3(专用)。结论:这意味着专用系统可以比传统系统更早地检测到PD。因此,应该可以使用高灵敏度的专用SPECT摄像机更早地识别PD进程。

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