首页> 外文期刊>International Journal of Radiation Oncology, Biology, Physics >On the dosimetric accuracy of a Sievert integration model in the proximity of 192Ir HDR sources.
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On the dosimetric accuracy of a Sievert integration model in the proximity of 192Ir HDR sources.

机译:关于Sievert集成模型在192Ir HDR源附近的剂量精确度。

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PURPOSE: To investigate the efficacy of a Sievert integration model in dosimetry close to 192Ir high-dose-rate brachytherapy sources and validate its accuracy and potential to resolve dosimetric differences between these sources in the cm and mm distance ranges relevant to interstitial and intravascular brachytherapy applications, respectively.METHODS AND MATERIALS: The dosimetric quantities of the generalized Task Group 43 formalism, as well as dose rate profiles in polar and Cartesian coordinates, are calculated, and results are compared to corresponding Monte Carlo data in the literature.RESULTS: Sievert calculations were found in excellent agreement with corresponding Monte Carlo published results. Dose rate polar angle profiles in the cm distance range depended significantly on corresponding anisotropy function data, whereas in the mm distance range, dose rate polar angle profiles are governed by the corresponding geometry function profiles, because anisotropy proved insignificant. Radial dose functions of the sources were found comparable. A simple equation for the calculation of the dose rate constant of the sources within clinically acceptable accuracy is provided.CONCLUSIONS: The particular Sievert model proved capable of resolving dosimetric differences of the sources and provides results within clinical accuracy. Therefore, it constitutes a useful tool for dosimetry in clinical practice and especially in intravascular applications, where there is currently a lack of available dosimetric data.
机译:目的:研究Sievert集成模型在接近192Ir高剂量率近距离放射治疗源的剂量学中的功效,并验证其准确性和潜力,以解决这些源之间在cm和mm距离范围内与间质和血管内近距离放射治疗相关的剂量学差异方法和材料:计算了广义任务组43形式主义的剂量学量以及极坐标和笛卡尔坐标中的剂量率分布,并将结果与​​文献中相应的蒙特卡洛数据进行了比较。结果:Sievert计算被发现与相应的蒙特卡洛出版的结果非常吻合。 cm距离范围内的剂量率极角分布很大程度上取决于相应的各向异性函数数据,而在mm距离范围内,剂量率极角分布由相应的几何函数分布决定,因为各向异性被证明无关紧要。发现放射源的径向剂量函数具有可比性。提供了一个简单的方程式,用于在临床可接受的精度范围内计算放射源的剂量率常数。结论:特定的Sievert模型证明能够解决放射源的剂量学差异,并在临床准确性范围内提供结果。因此,它构成了在临床实践中尤其是在目前缺乏可用剂量学数据的血管内应用中进行剂量学测定的有用工具。

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