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首页> 外文期刊>Danishgah-i Ulum-i Pizishki va Khadamat-i Bihdashti-Darmani Shahid Sadugi Yazd. Majallah >Study of Dose Distribution 103Pd Source Brachytherapy in Treatment of Cancer Adjacent to Fat and Muscle Tissues by the Monte Carlo method using MCNP4C code
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Study of Dose Distribution 103Pd Source Brachytherapy in Treatment of Cancer Adjacent to Fat and Muscle Tissues by the Monte Carlo method using MCNP4C code

机译:应用MCNP4C代码的Monte Carlo方法研究103Pd源近距离放射治疗邻近脂肪和肌肉组织的剂量分布

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Introduction: The dosimetry of the brachytherapy sources is performed in the water source medium according to protocol TG-43U1. To achieve a resonable results on treatment, the use of the water material for all body tissues can be one of the faulty sources in delivering the correct dose to the tumor. Thus, we have focused on the dosimetry parameters in fat density 0.95 gr/cm3 and the muscle with density 1.05 gr/cm3 in the present study. The results are compared with the results of the water phantom to show the accurate accessment via the differences of the results.Methods: Dissymmetry simulations for determining the parameters of the radial dose function and the anisotropy function in fat tissues, muscle and water phantom distances and different angles has been using MCNP4C code.Results: The greatest relative differences of the phantom radial dose function of the fat tissue at distances below 1cm approximately reached 13%; and this rate increased, when the distance from the source increased; whereas at the distance of 5cm from the source, it approximately reached 167%. In the muscle tissue, the relative difference of these parameters was about 3% at the distance of 0.5cm, while at the distance of 5cm from the source, it approximately increased 16%. The maximum relative difference of the anisotropy parameter of the fat and muscle tissue phantom compared with the water were observed more than 2% and 3%, respectively.Conclusion: In the clinical application of the 103Pd brachytherapy source, which is contracted in the treatment of the adjacent malignant tumors to the fat and muscle tissues, the correct decisions must be applied on the tissue dosimetry parameters in the treatment planings according to the tables  of 3, 4, 5 and 6 in this study.
机译:简介:近距离放射治疗源的剂量测定是根据TG-43U1协议在水源介质中进行的。为了在治疗上取得合理的结果,在所有组织中使用水材料可能是向肿瘤输送正确剂量的不良来源之一。因此,在本研究中,我们集中于脂肪密度0.95 gr / cm3和密度1.05 gr / cm3的肌肉的剂量学参数。将结果与水模的结果进行比较,以通过结果的差异显示准确的访问方法。方法:不对称模拟,用于确定脂肪组织中的径向剂量函数和各向异性函数的参数,肌肉和水体的距离以及结果:在小于1cm的距离处,脂肪组织的幻像径向剂量函数的最大相对差异约为13%。到源的距离增加时,该比率增加;而在距光源5厘米的距离处,大约达到了167%。在肌肉组织中,这些参数的相对差在0.5cm处约为3%,而在距源5cm处约增加16%。与水相比,脂肪和肌肉组织模型的各向异性参数的最大相对差异分别超过2%和3%。结论:在临床上应用的103Pd近距离放射治疗源是收缩的,在治疗对于脂肪和肌肉组织附近的恶性肿瘤,必须根据本研究的3、4、5和6表对治疗计划中的组织剂量参数进行正确的决策。

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