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Assessment of scatter for the micro-CT subsystem of the trimodality FLEX Triumph preclinical scanner.

机译:三峰FLEX Triumph临床前扫描仪的微型CT子系统的散射评估。

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PURPOSE: This work aims at assessing, through experimental measurements and Monte Carlo calculations, the scatter to primary ratio (SPR) for the micro-CT subsystem of the FLEX Triumph preclinical PET-CT scanner to improve its quantitative capabilities. METHODS: Experimental measurements were carried out using the single blocker method, where five cylindrical blockers with diameters ranging between 3 and 11.65 mm were used to assess the SPR without the blocker through interpolation. Because of the vertical layout of the imaging device, the blocker was placed over rat-sized and mouse-sized phantoms and central and peripheral SPR values were obtained by rotating the source and detector. The influence of beam energy (30, 50, and 80 kVp), geometrical magnification (1.3 and 2.0) and phantom diameter (25 and 50 mm) and density (polyethylene and water) were investigated. Monte Carlo (MC) simulations using the MCNP4C code were also performed and compared to experimental results to validate their accuracy. RESULTS: The highest difference was found in the extreme peripheral region of the small phantom, while the maximum difference at the center of the phantom is about 6%, indicating that MC simulations can reproduce well the experimental results, at least in the region inside the phantom. The maximal SPR (0.562) was obtained for the large phantom at 30 kVp and a magnification of 1.3. The full SPR profile was calculated using MC simulations and used to express its dependency on beam energy (quadratic), air gap (asymptotic), and phantom diameter (quadratic). CONCLUSIONS: The obtained results are in good agreement with theoretical predictions. MC simulations were valuable for the evaluation of the influence of various acquisition parameters on the SPR estimates.
机译:目的:这项工作旨在通过实验测量和蒙特卡洛计算,评估FLEX Triumph临床前PET-CT扫描仪的micro-CT子系统的散布比(SPR),以提高其定量能力。方法:使用单一阻滞剂方法进行实验测量,其中使用五个直径在3至11.65 mm之间的圆柱形阻滞剂通过插值法评估无阻滞剂的SPR。由于成像设备的垂直布局,因此将阻断器放置在大鼠大小和小鼠大小的体模上,并通过旋转光源和检测器获得中心和外围SPR值。研究了束能量(30、50和80 kVp),几何放大率(1.3和2.0)以及幻影直径(25和50 mm)和密度(聚乙烯和水)的影响。还进行了使用MCNP4C代码的蒙特卡洛(MC)仿真,并将其与实验结果进行比较以验证其准确性。结果:在小体模的最外围区域发现了最大的差异,而在体模中心的最大差异为大约6%,这表明MC模拟可以很好地再现实验结果,至少在模型内部。幻影。对于大型体模,在30 kVp和1.3的放大倍数下,获得了最大SPR(0.562)。使用MC模拟计算完整的SPR轮廓,并用来表示其对光束能量(二次),气隙(渐近)和幻影直径(二次)的依赖性。结论:所得结果与理论预测吻合良好。 MC模拟对于评估各种采集参数对SPR估计值的影响非常有价值。

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