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首页> 外文期刊>Medical Physics >Dosimetric characterization of a new design 103 palladium brachytherapy source.
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Dosimetric characterization of a new design 103 palladium brachytherapy source.

机译:新型103钯近距离放射治疗源的剂量学表征。

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Low-energy gamma emitting isotopes encapsulated for permanent implant are in routine use in the treatment of prostate cancer. New source designs require full dosimetric analysis and calibration standardization before responsible clinical application. The results of one such experimental measurement and analysis are here reported for a new design of 103palladium source, model MED3633 (North American Scientific, Inc.). By AAMP Task Group #43 recommendations, the reference material for brachytherapy dosimetry is liquid water. The dose measurements were made using standard methods employing thermoluminescent dosimeters in a water equivalent plastic phantom. Precision machined bores in the phantom located dosimeters and source(s) in a reproducible fixed geometry providing for transverse-axis and angular dose profiles over a range of distances from 0.17 to 7 cm. The data were analyzed in terms of parameters recommended by AAPM TG43. The dose-rate constant, lambda, was evaluated with reference to a 60 cobalt standard, accounting for response variation with isotope energy spectrum. The radial dose function, g(r), the anisotropy function, F(r, theta), the anisotropy factor, phi,un(r), and the point-source approximation anisotropy constant, phi(un), were derived from one- and two-dimensional dose distribution data measured in the phantom, accounting for finite dosimeter volume and with attention to interchip effects. The results are compared to TG43 and other existing data for 103Pd sources. The new source is comparable to the model 200 103Pd source design, demonstrating equivalent radial dose function, g(r). The dose surrounding a MED3633 source may be slightly more isotropic than for the model 200 source. The air-kerma strength of the MED3633 source used in this study was provided by the manufacturer and is traceable to the NIST 1999 standard. The evaluated dose-rate constant, lambda, with NIST traceable strength calibration is lower than that of the model 200 source, with that manufacturer's strength calibration.
机译:封装用于永久性植入的低能伽马射线发射同位素正常规用于治疗前列腺癌。在负责任的临床应用之前,新的源设计需要全面的剂量学分析和校准标准化。本文报道了一种新的实验测量和分析结果,用于MED3633型新的103钯源设计(North American Scientific,Inc.)。根据AAMP Task Group#43的建议,近距离放射剂量学的参考材料是液态水。剂量测量是使用标准方法进行的,该方法使用等效于水的塑料体模中的热发光剂量计。幻影定位剂量计和源中的精密加工孔具有可重现的固定几何形状,可在0.17至7 cm的距离范围内提供横轴和角剂量分布。根据AAPM TG43推荐的参数对数据进行了分析。参照60钴标准样品评估剂量率常数lambda,考虑到响应随同位素能谱的变化。径向剂量函数g(r),各向异性函数F(r,θ),各向异性因子phi,un(r)和点源近似各向异性常数phi(un)均来自-和幻影中测量的二维剂量分布数据,说明了有限的剂量计体积,并注意芯片间的影响。将结果与TG43和103Pd源的其他现有数据进行比较。新的源与模型200 103Pd的源设计相当,展示了等效的径向剂量函数g(r)。 MED3633源周围的剂量可能比200型源的各向同性略大。这项研究中使用的MED3633源的空气比释动能强度是由制造商提供的,可追溯到NIST 1999标准。通过NIST可溯源的强度校准评估的剂量率常数lambda低于使用该制造商的强度校准的200型源的剂量率常数。

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