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Computed tomography dose assessment for a 160 mm wide, 320 detector row, cone beam CT scanner.

机译:160毫米宽,320排检测器,锥形束CT扫描仪的计算机断层摄影剂量评估。

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Computed tomography (CT) dosimetry should be adapted to the rapid developments in CT technology. Recently a 160 mm wide, 320 detector row, cone beam CT scanner that challenges the existing Computed Tomography Dose Index (CTDI) dosimetry paradigm was introduced. The purpose of this study was to assess dosimetric characteristics of this cone beam scanner, to study the appropriateness of existing CT dose metrics and to suggest a pragmatic approach for CT dosimetry for cone beam scanners. Dose measurements with a small Farmer-type ionization chamber and with 100 mm and 300 mm long pencil ionization chambers were performed free in air to characterize the cone beam. According to the most common dose metric in CT, namely CTDI, measurements were also performed in 150 mm and 350 mm long CT head and CT body dose phantoms with 100 mm and 300 mm long pencil ionization chambers, respectively. To explore effects that cannot be measured with ionization chambers, Monte Carlo (MC) simulations of the dose distribution in 150 mm, 350 mm and 700 mm long CT head and CT body phantoms were performed. To overcome inconsistencies in the definition of CTDI100 for the 160 mm wide cone beam CT scanner, doses were also expressed as the average absorbed dose within the pencil chamber (D100). Measurements free in air revealed excellent correspondence between CTDI300air and D100air, while CTDI100air substantially underestimates CTDI300air. Results of measurements in CT dose phantoms and corresponding MC simulations at centre and peripheral positions were weighted and revealed good agreement between CTDI300w, D100w and CTDI600w, while CTDI100w substantially underestimates CTDI300w. D100w provides a pragmatic metric for characterizing the dose of the 160 mm wide cone beam CT scanner. This quantity can be measured with the widely available 100 mm pencil ionization chamber within 150 mm long CT dose phantoms. CTDI300w measured in 350 mm long CT dose phantoms serves as an appropriate standard of reference for characterizing the dose of this CT scanner. A CT dose descriptor that is based on an integration length smaller than the actual beam width is preferably expressed as an (average) dose, such as D100 for the 160 mm wide cone beam CT scanner, and not as CTDI100.
机译:计算机断层扫描(CT)剂量测定应适应CT技术的快速发展。最近,推出了一种160毫米宽,320排探测器的锥形束CT扫描仪,该扫描仪挑战了现有的计算机断层摄影剂量指数(CTDI)剂量学范式。这项研究的目的是评估这种锥形束扫描仪的剂量特性,研究现有CT剂量度量的适用性,并提出一种实用的锥束扫描仪CT剂量测定方法。在空气中自由进行小型Farmer型电离室以及100 mm和300 mm长的铅笔电离室的剂量测量,以表征锥束。根据CT中最常用的剂量度量,即CTDI,还分别在150 mm和350 mm长的CT头和带有100 mm和300 mm长的铅笔电离室的CT体剂量体模中进行了测量。为了探索电离室无法测量的效果,对150 mm,350 mm和700 mm长的CT头和CT体模进行了剂量分布的Monte Carlo(MC)模拟。为了克服针对160 mm宽锥束CT扫描仪的CTDI100定义的不一致,剂量还表示为铅笔室内(D100)的平均吸收剂量。空气中的自由测量表明CTDI300air与D100air之间具有极好的对应关系,而CTDI100air大大低估了CTDI300air。加权了CT剂量模型的测量结果以及相应的中心和周围位置的MC模拟,发现CTDI300w,D100w和CTDI600w之间具有良好的一致性,而CTDI100w大大低估了CTDI300w。 D100w提供了一种实用的度量标准,用于表征160毫米宽的锥形束CT扫描仪的剂量。可以使用广泛使用的100毫米铅笔电离室在150毫米长的CT剂量体模中测量该数量。在350毫米长的CT剂量体模中测得的CTDI300w是表征此CT扫描仪剂量的适当参考标准。基于小于实际光束宽度的积分长度的CT剂量描述符最好表示为(平均)剂量,例如160 mm宽锥束CT扫描仪的D100,而不是CTDI100。

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