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首页> 外文期刊>Medical Physics >Dosimetry characterization of 32P catheter-based vascular brachytherapy source wire.
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Dosimetry characterization of 32P catheter-based vascular brachytherapy source wire.

机译:基于32P导管的血管近距离放射治疗源线的剂量学表征。

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摘要

Dosimetry measurements and Monte Carlo simulations for a catheter-based 32P endovascular brachytherapy source wire are described. The measured dose rates were obtained using both radiochromic dye film and an automated plastic scintillator. The investigated source has dimensions of 27 mm in length and 0.24 mm in diameter, and is encapsulated in NiTi. For the radiochromic film measurements, calibrated radiochromic dye film was irradiated at distances between 1 and 5 mm from the source axis in A-150 plastic, and read out with a high-resolution scanning densitometer. The depth-dose curve measured in A-150 is then converted to that in water using correction factors obtained from Monte Carlo calculations. For the scintillator system, direct measurements in water were acquired at distances between 1 and 6 mm from the center of the source, along the perpendicular bisector of the source axis. The scintillator was calibrated in terms of absorbed-dose rate in a reference beta-particle field at multiple depths. The measured dose rates obtained from the film and scintillator measurements were then normalized to the measured source activity, i.e., to convert the measured data to units of cGy/s/mCi. Theoretical dosimetry calculations of the catheter-based 32P wire geometry were also obtained from Monte Carlo simulations using the Electron Gamma Shower code (EGS4), the Monte Carlo N-particle transport code (MCNP4B), and CYLTRAN from the Integrated Tiger Series codes (ITS v.3) and found to be in good agreement. The results of both measurements and calculations are expressed as absorbed-dose rate in water per unit of contained activity (cGy/s/mCi). Comparisons indicate that the measured and calculated dosimetry are in good agreement (<10%) within the relevant treatment distances (1-5 mm). This work fully characterizes the radiation field around a novel 32P beta brachytherapy source in water. The depth-dose curve can be used to calculate the dose to the vessel wall from a 27 mm 32P source wire centered within the vessel lumen.
机译:描述了基于导管的32P血管内近距离放射治疗源线的剂量测定和蒙特卡罗模拟。使用放射致变色染料膜和自动塑料闪烁器均可获得测得的剂量率。被研究的源长27毫米,直径0.24毫米,并封装在NiTi中。对于放射变色膜的测量,在距源轴1至5 mm的距离内,在A-150塑料中辐照校准的放射变色染料膜,并用高分辨率扫描光密度计读出。然后使用从蒙特卡洛计算中获得的校正因子,将A-150中测得的深度-剂量曲线转换为水中的深度-剂量曲线。对于闪烁体系统,沿水源轴的垂直平分线,在距水源中心1到6 mm的距离内,直接在水中进行了测量。根据在多个深度的参考β粒子场中的吸收剂量率,对闪烁体进行了校准。然后将从薄膜和闪烁体测量获得的测量剂量率归一化为所测量的源活性,即,将所测量的数据转换为cGy / s / mCi的单位。基于导管的32P导线几何结构的理论剂量学计算也可以从Monte Carlo模拟中获得,该模拟使用电子伽玛阵雨代码(EGS4),蒙特卡罗N粒子传输代码(MCNP4B)和CYLTRAN从Integrated Tiger Series代码(ITS)获得v.3),并发现双方意见一致。测量和计算的结果均表示为每单位所含活性的水中吸收剂量率(cGy / s / mCi)。比较表明,在相关的治疗距离(1-5毫米)内,所测得的剂量和所计算出的剂量是一致的(<10%)。这项工作充分表征了水中新型32P beta近距离放射治疗源周围的辐射场。深度剂量曲线可用于计算从位于血管腔内中心的27 mm 32P放射线到血管壁的剂量。

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