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首页> 外文期刊>The Journal of Nuclear Medicine >Optimization of the Injected Activity in Dynamic 3D PET: A Generalized Approach Using Patient-Specific NECs as Demonstrated by a Series of 15O-H2O Scans
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Optimization of the Injected Activity in Dynamic 3D PET: A Generalized Approach Using Patient-Specific NECs as Demonstrated by a Series of 15O-H2O Scans

机译:动态3D PET中注射活性的优化:通过一系列15O-H2O扫描证明的使用患者特定NEC的通用方法

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id="p-1">The magnitude of the injected activity (A0) has a direct impact on the statistical quality of PET images. This study aimed to develop a generalized method for maximizing the statistical quality of dynamic PET images by optimizing A0. >Methods: Patient-specific noise-equivalent counts (PS-NECs) were used as a metric of the statistical quality of each time frame of a dynamic PET image. Previous methodology developed to extrapolate the NEC as a function of A0 was extended to dynamic PET, enabling the NEC to be extrapolated as a function of both A0 and the time after injection. This method allowed A0 to be optimized after a single scan (at a single A0), by maximizing the NEC within the time interval for which the parameter estimation is most sensitive. The extrapolation method was validated by a series of 15O-H2O scans of the body acquired in 3-dimensional mode. Each patient (n = 6) underwent between 3 and 6 scans at 1 bed position. The injected activities were varied over a wide range (140-840 MBq). Noise-equivalent counting rate (NECR) versus A0 curves and the optimal injected activities were calculated from each injection. >Results: PS-NECR versus A0 curves as extrapolated from different injected activities were consistent (coefficient of variation, typically 5%). The optimal injected activities for an individual, as derived from these curves, were also consistent (maximum coefficient of variation, 4.3%). For abdominal (n = 4) and chest (n = 1) scans, we found optimal injected activities of 15O-H2O in the range of 220-350 MBq for estimating blood perfusion (F) and 660-1,070 MBq for estimating the volume of distribution (VT). Higher optimal injected activities were found in the case of a pelvic scan (n = 1; 570 MBq for F and 1,530 MBq for VT). >Conclusion: PS-NECs are a valid and generic method for optimizing the injected activity in PET, allowing scanning protocols to be improved after the collection of an initial, single dynamic dataset. This generic method can be used to estimate the optimal injected activity, which is specific to the patient, tracer, PET scanner, and body region being scanned.
机译:id =“ p-1”>注入的活性(A 0 )的大小直接影响PET图像的统计质量。本研究旨在开发一种通过优化A 0 来最大化动态PET图像统计质量的通用方法。 >方法:患者特定的噪声当量计数(PS-NEC)被用作动态PET图像每个时间帧的统计质量的度量。先前开发的将NEC作为A 0 的函数进行外推的方法已扩展到动态PET,从而使NEC可以作为A 0 和之后的时间进行函数的外推注射。通过在参数估计最敏感的时间间隔内最大化NEC,此方法允许在一次扫描后(一次A 0 )优化A 0 。外推方法通过在三维模式下获取的一系列身体的 15 O-H 2 O扫描进行了验证。每位患者( n = 6)在1个床位接受了3到6次扫描。注入的活动范围很广(140-840 MBq)。从每次注射计算等效当量计数率(NECR)对A 0 曲线和最佳注射活性。 >结果:从不同的注入活动推断出的PS-NECR与A 0 曲线是一致的(变异系数,通常<5%)。从这些曲线得出的个人最佳注射活性也是一致的(最大变异系数为4.3%)。对于腹部( n = 4)和胸部( n = 1)扫描,我们发现 15 OH 2 < / sub> O在220-350 MBq范围内用于估计血液灌注(F),在660-1,070 MBq范围内用于估计分布体积(V T )。在骨盆扫描的情况下发现更高的最佳注射活性( n = 1; F为570 MBq,V T 为1,530 MBq)。 >结论:PS-NEC是用于优化PET中注入活性的有效且通用的方法,可以在收集初始的单个动态数据集后改进扫描协议。此通用方法可用于估计最佳注射活性,该活性特定于患者,示踪剂,PET扫描仪和正在扫描的身体部位。

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