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Precision of dosimetry-related measurements obtained on current multidetector computed tomography scanners

机译:在当前的多探测器计算机断层扫描仪上获得与剂量学相关的测量精度

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摘要

>Purpose: Computed tomography (CT) intrascanner and interscanner variability has not been well characterized. Thus, the purpose of this study was to examine the within-run, between-run, and between-scanner precision of physical dosimetry-related measurements collected over the course of 1 yr on three different makes and models of multidetector row CT (MDCT) scanners.>Methods: Physical measurements were collected using nine CT scanners (three scanners each of GE VCT, GE LightSpeed 16, and Siemens Sensation 64 CT). Measurements were made using various combinations of technical factors, including kVp, type of bowtie filter, and x-ray beam collimation, for several dosimetry-related quantities, including (a) free-in-air CT dose index (CTDI100,air); (b) calculated half-value layers and quarter-value layers; and (c) weighted CT dose index (CTDIw) calculated from exposure measurements collected in both a 16 and 32 cm diameter CTDI phantom. Data collection was repeated at several different time intervals, ranging from seconds (for CTDI100,air values) to weekly for 3 weeks and then quarterly or triannually for 1 yr. Precision of the data was quantified by the percent coefficient of variation (%CV).>Results: The maximum relative precision error (maximum %CV value) across all dosimetry metrics, time periods, and scanners included in this study was 4.33%. The median observed %CV values for CTDI100,air ranged from 0.05% to 0.19% over several seconds, 0.12%–0.52% over 1 week, and 0.58%–2.31% over 3–4 months. For CTDIw for a 16 and 32 cm CTDI phantom, respectively, the range of median %CVs was 0.38%–1.14% and 0.62%–1.23% in data gathered weekly for 3 weeks and 1.32%–2.79% and 0.84%–2.47% in data gathered quarterly or triannually for 1 yr.>Conclusions: From a dosimetry perspective, the MDCT scanners tested in this study demonstrated a high degree of within-run, between-run, and between-scanner precision (with relative precision errors typically well under 5%).
机译:>目的:尚未很好地表征计算机断层扫描(CT)的内部扫描仪和内部扫描仪的变异性。因此,本研究的目的是检查在3年内在多探测器行CT(MDCT)的三种不同型号和模型上收集的与剂量学相关的与物理剂量相关的测量值的运行内,运行间和扫描仪之间的精度。 >方法:使用九台CT扫描仪(GE VCT,GE LightSpeed 16和Siemens Sensation 64 CT分别配备三台扫描仪)收集了物理测量结果。使用各种技术因素组合进行测量,包括kVp,领结滤波器的类型和X射线束准直,以测量与剂量学相关的几种量,包括:(a)空中CT剂量指数(CTDI100,空气); (b)计算的半值层和四分之一值层; (c)根据在16厘米和32厘米直径的CTDI体模中收集的暴露测量值计算得出的加权CT剂量指数(CTDIw)。在几个不同的时间间隔内重复数据收集,范围从秒(对于CTDI100,空气值)到每周3周,然后每季度或每三年1年。数据的精度通过变异系数百分比(%CV)进行量化。>结果:此剂量计所有度量标准,时间段和扫描仪中的最大相对精度误差(最大%CV值)研究为4.33%。 CTDI100空气在几秒钟内的中位%CV值范围在几秒钟内为0.05%至0.19%,在1周内为0.12%-0.52%,在3-4个月内为0.58%-2.31%。对于16厘米和32厘米CTDI体模的CTDIw,在每周收集的3周数据中,%CVs的中值范围分别为0.38%–1.14%和0.62%–1.23%,以及1.32%–2.79%和0.84%–2.47%在每季度或每三年一次收集的1年数据中。>结论:从剂量学角度来看,本研究中测试的MDCT扫描仪显示出较高的运行内,运行间和扫描间精度(相对精度误差通常在5%以下)。

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