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Calculation of Normalized Organ Doses for Pediatric Patients Undergoing CT Examinations on Four Types of CT Scanner

机译:用于四种CT扫描仪CT检查的小儿患者标准化器官剂量的计算

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Patient doses due to Computed Tomography (CT) are becoming increasingly important in diagnostic radiology, with there being particular concern about examinations on children owing to their increased radiosensitivity. We have computed organ doses normalized to CTDIair using the University of Florida (LIF) voxelized pediatric phantoms in relation to the General Electric 9800, Philips LX, Siemens DRH and Siemens Sensation 16 CT scanners. For a whole body examination, the normalized effective dose E,03 (as a convenient summary of organ doses) increases by 30% when the age decreases from 14 years to 9 months. This trend is consistent with published results from our previous study based on pediatric and adult mathematical phantoms. Further calculations of normalized effective doses for adult mathematical phantoms also show good agreement with that study under similar conditions of modeling, although updated dose coefficients differ from the previously published data by +35% ± 2%, +16% ± 8% and -6% ± 5%, for examinations of the head & neck, chest, and abdomen & pelvis, respectively. These differences are due to changes in both the definition of effective dose (E60 to El9i) and the adult MIRD-like phantom (from NRPB18+ to HPA18+) to incorporate the new risk and remainder organs.
机译:由于计算机断层扫描(CT)引起的患者剂量在诊断放射学时越来越重要,特别关注儿童的辐射敏感性的检查。我们使用佛罗里达大学(LIF)Voxelized儿科幻影与Ctdiair的计算器官剂量相对于通用电气9800,飞利浦LX,西门子DRH和西门子传感16 CT扫描仪。对于全身检查,归一化有效剂量E,03(作为器官剂量的方便摘要)当年龄从14岁降至9个月时增加了30%。这种趋势与我们以前的研究结果的发布结果一致,基于儿科和成人数学幽灵。进一步计算成人数学幽灵的正常化有效剂量也与在类似的建模条件下表现出良好的一致性,尽管更新的剂量系数与先前公布的数据不同+ 35%±2%,+ 16%±8%和-6 %±5%,分别检查头部和颈部,胸部和腹部和骨盆的检查。这些差异是由于有效剂量(E60至EL9I)的定义的变化以及成年人的关系般的幻像(来自NRPB18 +至HPA18 +),以包含新的风险和余数器官。

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