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首页> 外文期刊>Majallah-i pizishki-i Urumiyah. >EVALUATING DOSE DISTRIBUTION OF BLADDER AND ORGANS AT RISK DOSES IN 6 AND 15 MV PHOTON ENERGIES AND 3 AND 4 RADIATIONFIELDS IN THE EXTERNAL BEAM RADIATION THERAPY OF BLADDER CANCER
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EVALUATING DOSE DISTRIBUTION OF BLADDER AND ORGANS AT RISK DOSES IN 6 AND 15 MV PHOTON ENERGIES AND 3 AND 4 RADIATIONFIELDS IN THE EXTERNAL BEAM RADIATION THERAPY OF BLADDER CANCER

机译:膀胱癌外束放射治疗中6和15 MV光子能量和3和4放射线的风险剂量下的膀胱和器官剂量分布评估

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摘要

Background & Aims: The main aim of this study was to evaluate the effect of the photon energies (6 and 15 MV) and the number of radiation fields (3 fields and 4 fields) on tumor dose distribution and dose received by organs at risk in radiation therapy of bladder cancer. Materials & Methods: In this study, CT images of 12 patients with bladder cancer were used. And 8 different radiation treatment plans were designed for each patient (with energies of 6 and 15 MV and 3 and 4 fields), and a total dose of 6100 cGy (4500 cGy for pelvic and 1600 cGy for bladder) was used. Results: The results showed that the use of 15-MV energies for radiation of the pelvic and bladder using 3 radiation fields lead to maximum uniformity and homogeneity of dose in the irradiated tumor tissue. The results also showed that the use of 15-MV energies for radiation of the pelvic and bladder and the use of 4 radiation fields in patients decrease the average integrated dose in the prostate and femur heads. However, based on the results obtained to reduce the average integrated dose of rectum in bladder radiation therapy, 3 radiation fields with energy of 15 MV for pelvic and 6 MV for bladder should be used. Conclusion: The results indicate a significant effect of photon energy and the number of radiation fields on distribution of dose in the tumor tissue and also the amount of dose received by organs at risk in radiotherapy of patients with bladder cancer.
机译:背景与目的:本研究的主要目的是评估光子能量(6和15 MV)和辐射场数量(3场和4场)对肿瘤剂量分布和处于危险中的器官所接受剂量的影响。膀胱癌的放射治疗。材料与方法:本研究使用12例膀胱癌患者的CT图像。针对每位患者设计了8种不同的放射治疗计划(能量分别为6和15 MV,3和4场),总剂量为6100 cGy(骨盆为4500 cGy,膀胱为1600 cGy)。结果:结果表明,使用15-MV能量通过3个辐射场对骨盆和膀胱进行辐射,可以在被辐射的肿瘤组织中实现最大的均匀性和剂量均匀性。结果还表明,使用15-MV能量辐射盆腔和膀胱以及使用4个辐射场降低患者前列腺和股骨头的平均综合剂量。但是,根据减少膀胱放射治疗中直肠平均平均剂量所获得的结果,应使用3个辐射场,盆腔能量为15 MV,膀胱能量为6 MV。结论:结果表明光子能量和辐射场数量对膀胱癌患者放疗中肿瘤组织剂量分布以及有风险的器官所接受剂量的影响显着。

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