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在诊断 X 射线束条件下评估固态探测器的测量精度和不确定度。

Evaluation of the measurement accuracy and uncertainty of a solid-state detector under diagnostic x-ray beam conditions.

机构信息

Department of Radiological Technology, Gunma Prefectural College of Health Sciences, Gunma, Japan.

Department of Medical Radiology, Faculty of Medical Technology, Teikyo University, Tokyo, Japan.

出版信息

J Appl Clin Med Phys. 2024 Sep;25(9):e14476. doi: 10.1002/acm2.14476. Epub 2024 Jul 19.

Abstract

OBJECTIVE

An accurate measurement of x-ray beams is expected to reduce the uncertainties associated with estimating radiation risk to patients in clinical settings. To perform assessment tasks based on the readings of a solid-state detector (SSD) using semiconductor technology, the characteristics of the detector should be elucidated. In this study, we evaluated the measurement accuracy of a new SSD under diagnostic x-ray beam conditions in terms of air kerma, tube voltage, and half-value layer (HVL). The performance of the SSD was then compared with those of reference instruments.

METHODS

The tube voltage was varied within the range of 50-120 kV in steps of 10 kV and the thickness and materials of additional filters were concurrently changed (several combinations were tested). In addition, the dose rate and energy dependence of the SSD were also investigated. These effects were analyzed based on statistical significance tests. Furthermore, the expanded uncertainties in the series of measurements were meticulously calculated.

RESULTS

The results showed average relative differences of -3.26 ± 1.33%, 0.44 ± 1.01%, and -2.60 ± 3.31% for air kerma, tube voltage, and HVL, respectively. Furthermore, air kerma did not exhibit any dependence on dose rate and energy, in contrast to tube voltage and HVL measurements.

CONCLUSION

The measurement values of the SSD fall within the acceptable range of uncertainty, highlighting its measurement accuracy and reliability. Furthermore, based on the characteristics elucidated by this study, valuable insights are provided concerning the assurance of appropriate measurement values in clinical settings.

摘要

目的

准确测量 X 射线束有望降低临床环境中评估患者辐射风险时的不确定性。为了基于半导体技术的固态探测器(SSD)的读数执行评估任务,需要阐明探测器的特性。在这项研究中,我们评估了在诊断 X 射线束条件下新 SSD 的空气比释动能、管电压和半价层(HVL)的测量精度。然后将 SSD 的性能与参考仪器进行了比较。

方法

在 50-120kV 的范围内以 10kV 的步长改变管电压,并同时改变附加滤光片的厚度和材料(测试了几种组合)。此外,还研究了 SSD 的剂量率和能量依赖性。基于统计显着性检验分析了这些影响。此外,还仔细计算了一系列测量中的扩展不确定度。

结果

结果表明,空气比释动能、管电压和 HVL 的平均相对差异分别为-3.26±1.33%、0.44±1.01%和-2.60±3.31%。此外,与管电压和 HVL 测量相比,空气比释动能与剂量率和能量无关。

结论

SSD 的测量值落在可接受的不确定度范围内,突出了其测量精度和可靠性。此外,基于本研究阐明的特性,为在临床环境中确保适当的测量值提供了有价值的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f664/11492300/6a1b4fbb3653/ACM2-25-e14476-g004.jpg

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