Calculation of energy loss of proton beam on thyroid tumor

K. Giri, B. Paudel, B. Gautam
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引用次数: 1

Abstract

Proton beam therapy is an emerging technique in radiotherapy. The Bragg peak of a proton enables it to lose most of its energy to the targeted tissue like tumor cells, with less impact of healthy tissues and organs. This property of a proton beam makes it ideal for clinical applications. When organ safekeeping is our priority then proton beam therapy is the most effective tool to damage nearby affected tissues. For efficient treatment planning in thyroid tumor, the maximal energy loss of proton beam in its tissues must be exactly calculated. The method of computer simulation is employed for the calculation of energy loss by energized proton beam irradiation on thyroid tumor at a depth of 22 mm. The stopping power and range data agrees with standard reference data. Of the 50 MeV energy of proton beam, the most of the energy is absorbed on various layers viz. skin, adipose tissue, skeletal muscles and thyroid which are approximately 1.5 MeV, 5.3 MeV, 10.5 MeV and 33.5 MeV respectively. In total 99.96% of energy of proton beam is absorbed by the targeted tissues.
甲状腺肿瘤上质子束能量损失的计算
质子束治疗是一种新兴的放射治疗技术。质子的布拉格峰使它能够将大部分能量损失到目标组织,如肿瘤细胞,对健康组织和器官的影响较小。质子束的这一特性使其成为临床应用的理想选择。当器官安全是我们的首要任务时,质子束治疗是损伤附近病变组织的最有效工具。为了制定有效的治疗方案,必须精确计算质子束在甲状腺肿瘤组织中的最大能量损失。采用计算机模拟的方法计算了带能量质子束照射甲状腺肿瘤22 mm深度时的能量损失。停车功率和里程数据与标准参考数据一致。在质子束的50 MeV能量中,大部分能量被皮肤、脂肪组织、骨骼肌和甲状腺等各层吸收,分别约为1.5 MeV、5.3 MeV、10.5 MeV和33.5 MeV。质子束的能量有99.96%被靶组织吸收。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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