首页> 外文OA文献 >Reduction in camera-specific variability in 123IFP-CIT SPECT outcome measures by image reconstruction optimized for multisite settings: impact on age-dependence of the specific binding ratio in the ENC-DAT database of healthy controls
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Reduction in camera-specific variability in 123IFP-CIT SPECT outcome measures by image reconstruction optimized for multisite settings: impact on age-dependence of the specific binding ratio in the ENC-DAT database of healthy controls

机译:通过针对多站点设置进行了优化的图像重建,可以减少123I FP-CIT SPECT结果测量结果中摄像机特有的可变性:对健康对照组的ENC-DAT数据库中特定结合率的年龄依赖性产生影响

摘要

Purpose Quantitative estimates of dopamine transporter availability, determined with [123I]FP-CIT SPECT, depend on the SPECT equipment, including both hardware and (reconstruction) software, which limits their use in multicentre research and clinical routine. This study tested a dedicated reconstruction algorithm for its ability to reduce camera-specific intersubject variability in [123I]FP-CIT SPECT. The secondary aim was to evaluate binding in whole brain (excluding striatum) as a reference for quantitative analysis. Methods Of 73 healthy subjects from the European Normal Control Database of [123I]FP-CIT recruited at six centres, 70 aged between 20 and 82 years were included. SPECT images were reconstructed using the QSPECT software package which provides fully automated detection of the outer contour of the head, camera-specific correction for scatter and septal penetration by transmission-dependent convolution subtraction, iterative OSEMreconstruction including attenuation correction, and camera-specific Bto kBq/ml^ calibration. LINK and HERMES reconstruction were used for head-to-head comparison. The specific striatal [123I]FP-CIT binding ratio (SBR) was computed using the Southampton method with binding in the whole brain, occipital cortex or cerebellum as the reference. The correlation between SBR and age was used as the primary quality measure. Results The fraction of SBR variability explained by age was highest (1) with QSPECT, independently of the reference region, and (2) with whole brain as the reference, independently of the reconstruction algorithm. Conclusion QSPECT reconstruction appears to be useful for reduction of camera-specific intersubject variability of [123I]FP-CIT SPECT in multisite and single-site multicamera settings. Whole brain excluding striatal binding as the reference provides more stable quantitative estimates than occipital or cerebellar binding.
机译:目的用[123I] FP-CIT SPECT确定的多巴胺转运蛋白可用性的定量估计取决于SPECT设备,包括硬件和(重建)软件,这限制了它们在多中心研究和临床常规中的使用。这项研究针对[123I] FP-CIT SPECT减少相机特定主体间差异的能力测试了专用的重建算法。次要目的是评估全脑(纹状体除外)的结合,以作为定量分析的参考。方法从六个中心招募的[123I] FP-CIT欧洲正常对照数据库的73名健康受试者中,纳入70名年龄在20至82岁之间的受试者。使用QSPECT软件包重构了SPECT图像,该软件包提供了对头部外轮廓的全自动检测,通过依赖于传输的卷积减法对摄像机进行散射和间隔穿透的摄像机特定校正,包括衰减校正的迭代OSEM重构以及摄像机特定的Bto kBq / ml ^校准。 LINK和HERMES重建用于头对头比较。具体的纹状体[123I] FP-CIT结合率(SBR)是使用Southampton方法以在整个大脑,枕叶皮质或小脑中的结合为参考计算的。 SBR与年龄之间的相关性被用作主要质量指标。结果年龄解释的SBR变异率最高(1)QSPECT,与参考区域无关,(2)全脑作为参考,与重建算法无关。结论QSPECT重建对于减少多站点和单站点多摄像机设置中[123I] FP-CIT SPECT特定于摄像机的受试者间变异性似乎很有用。剔除纹状体结合的全脑比枕骨或小脑结合提供了更稳定的定量估计。

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