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Validation of GATE Monte Carlo simulations of the GE Advance/Discovery LS PET scanners.

机译:GE Advance / Discovery LS PET扫描仪的GATE蒙特卡罗模拟的验证。

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The recently developed GATE (GEANT4 application for tomographic emission) Monte Carlo package, designed to simulate positron emission tomography (PET) and single photon emission computed tomography (SPECT) scanners, provides the ability to model and account for the effects of photon noncollinearity, off-axis detector penetration, detector size and response, positron range, photon scatter, and patient motion on the resolution and quality of PET images. The objective of this study is to validate a model within GATE of the General Electric (GE) Advance/Discovery Light Speed (LS) PET scanner. Our three-dimensional PET simulation model of the scanner consists of 12 096 detectors grouped into blocks, which are grouped into modules as per the vendor's specifications. The GATE results are compared to experimental data obtained in accordance with the National Electrical Manufactures Association/Society of Nuclear Medicine (NEMA/SNM), NEMA NU 2-1994, and NEMA NU 2-2001 protocols. The respective phantoms are alsoaccurately modeled thus allowing us to simulate the sensitivity, scatter fraction, count rate performance, and spatial resolution. In-house software was developed to produce and analyze sinograms from the simulated data. With our model of the GE Advance/Discovery LS PET scanner, the ratio of the sensitivities with sources radially offset 0 and 10 cm from the scanner's main axis are reproduced to within 1% of measurements. Similarly, the simulated scatter fraction for the NEMA NU 2-2001 phantom agrees to within less than 3% of measured values (the measured scatter fractions are 44.8% and 40.9 +/- 1.4% and the simulated scatter fraction is 43.5 +/- 0.3%). The simulated count rate curves were made to match the experimental curves by using deadtimes as fit parameters. This resulted in deadtime values of 625 and 332 ns at the Block and Coincidence levels, respectively. The experimental peak true count rate of 139.0 kcps and the peak activity concentration of 21.5 kBq/cc were matched by the simulated results to within 0.5% and 0.1% respectively. The simulated count rate curves also resulted in a peak NECR of 35.2 kcps at 10.8 kBq/cc compared to 37.6 kcps at 10.0 kBq/cc from averaged experimental values. The spatial resolution of the simulated scanner matched the experimental results to within 0.2 mm.
机译:最近开发的GATE(X射线断层摄影的GEANT4应用程序)Monte Carlo软件包设计用于模拟正电子发射断层摄影(PET)和单光子发射计算机断层摄影(SPECT)扫描仪,能够对光子非共线性的影响进行建模和计算。轴探测器穿透力,探测器尺寸和响应,正电子范围,光子散射以及患者运动对PET图像的分辨率和质量的影响。这项研究的目的是验证通用电气(GE)提前/发现光速(LS)PET扫描仪的GATE模型。我们的三维扫描仪PET模拟模型由12 096个检测器组成,这些检测器分为若干块,这些块根据供应商的规范分为若干模块。将GATE结果与根据美国国家电气制造商协会/核医学学会(NEMA / SNM),NEMA NU 2-1994和NEMA NU 2-2001协议获得的实验数据进行比较。还对各个体模进行了精确建模,从而使我们能够模拟灵敏度,散射分数,计数率性能和空间分辨率。开发了内部软件,以根据模拟数据生成和分析正弦图。使用我们的GE Advance / Discovery LS PET扫描仪模型,可以将放射源与扫描仪主轴线径向偏移0和10 cm的灵敏度之比复制到测量值的1%以内。同样,NEMA NU 2-2001体模的模拟散射分数在小于测量值的3%之内(测量的散射分数为44.8%和40.9 +/- 1.4%,模拟的散射分数为43.5 +/- 0.3 %)。通过使用死区时间作为拟合参数,制作了模拟计数率曲线以与实验曲线匹配。这导致在块和巧合级别的死区时间分别为625和332 ns。模拟结果表明,实验峰值真实计数率为139.0 kcps,峰值活性浓度为21.5 kBq / cc,分别在0.5%和0.1%以内。根据平均实验值,模拟的计数率曲线还得出了10.8 kBq / cc时NECR的峰值为35.2 kcps,而10.0 kBq / cc时NECR的峰值为37.6 kcps。模拟扫描仪的空间分辨率与实验结果相匹配,误差在0.2 mm以内。

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