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The accuracy of estimated organ doses from Monte Carlo CT simulations using cylindrical regions of interest within organs

机译:估计器官从蒙特卡罗CT模拟中使用圆柱形地区内器官内的墨西哥克洛CT模拟的准确性

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The purpose of this study was to investigate the accuracy of Monte Carlo simulated organ doses using cylindrical ROIs within the organs of patient models as an alternative method to full organ segmentations. Full segmentation and placement of circular ROIs at the approximate volumetric centroid of liver, kidneys and spleen were performed for 20 patient models. For liver and spleen, ROIs with 2cm diameter were placed on 5 consecutive slices; for the kidneys 1 cm ROIs were used. Voxelized models were generated and both fixed and modulated tube current simulations were performed and organ doses for each method (full segmentation and ROIs) were recorded. For the fixed tube current simulations, doses simulated using circular ROIs differed from those simulated using full segmentations: for liver, these differences ranged from -5.6% to 10.8% with a Root Mean Square (RMS) difference of 5.9%. For spleen these differences ranged from -9.5% to 5.7% with an RMS of 5.17%; and for kidney the differences ranged from -12.9% to 14.4% for left kidney with an RMS of 6.8%, and from -12.3% to 12.8% for right kidney with an RMS of 6.6%. Full body segmentations need expertise and are time consuming. Instead using circular ROIs to approximate the full segmentation would simplify this task and make dose calculations for a larger set of models feasible. It was shown that dose calculations using ROIs are comparable to those using full segmentations. For the fixed current simulations the maximum RMS value was 6.8% and for the TCM it was 6.9%.
机译:本研究的目的是研究Monte Carlo模拟器官剂量的准确性,在患者模型的器官内使用圆柱形ROIS作为全器官分割的替代方法。对20例患者模型进行了肝脏,肾脏和脾脏近似体积质心的全分割和放置圆形rOI。对于肝脏和脾,直径2厘米的ROI被置于5个连续切片上;对于肾脏,使用1厘米的ROI。生成体素模型,并进行固定和调制管电流模拟,并记录每种方法(全分割和ROI)的器官剂量。对于固定管电流模拟,使用圆形ROI模拟的剂量与使用全部分割的模拟的剂量不同:对于肝脏,这些差异范围为-5.6%至10.8%,均线平方(RMS)差为5.9%。对于脾脏,这些差异的范围从-9.5%到5.7%,RMS为5.17%;对于肾脏而言,左肾的差异范围为-12.9%至14.4%,RMS为6.8%,右肾的右肾增长率为-12.3%至12.8%,RMS为6.6%。全身细分需要专业知识,并且是耗时的。相反,使用循环ris近似完全分割将简化此任务,并对可行的较大模型进行剂量计算。结果表明,使用ROI的剂量计算与使用全部分割的剂量计算。对于固定电流模拟,最大RMS值为6.8%,对于TCM为6.9%。

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