评估Axesse linac接受鼻咽癌治疗的环境辐射

IF 1.5 4区 医学 Q3 SURGERY
L. F. Chen, H. Tseng, L. Pan, J. B. Lin, H. S. Huang, W. Lai, C. Y. Chen
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引用次数: 3

摘要

摘要:本文在医科大学附属医院使用热释光剂量计(TLDs)对使用Axesse直线加速器治疗鼻咽癌(NPC)的拱顶室环境辐射进行了评估。TLD-100H使用直线加速器6 MV光子进行校准。利用TLD-100H的75个测点进行环境监测。然后将测量到的环境辐射可视化为三维图形表示。环境辐射使用彩色三维图形表示可视化。在NPC治疗中发现Rando幻影的辐射水平高达370毫西弗/次治疗。许多研究人员认为TLD是最具成本效益的环境辐射处理方法。还确定了最小可检测剂量(MDD),以证明TLD方法的可靠性。定量结果为有关辐射防护提供实用指导。根据对病人和公众的潜在健康影响,评估了操作直线机二次辐射的潜在危害。本工作试图评价LINAC迷宫内的环境辐射和TLD的最低检测限值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evaluating environment radiations at Axesse linac undergoing NPC treatment of VMAT
Abstract Environment radiations in vault rooms resulting from Axesse linac use was assessed at Medical University Hospital using Thermoluminescent dosimeters (TLDs) during the use of the new radiation treatment known as volumetric modulated arc therapy (VMAT) in the treatment of nasopharyngeal cancer (NPC). The TLD-100H was calibrated using linac 6 MV photons. A total of 75 measurement points of the TLD-100H were utilized for environmental monitoring. The measured environment radiations were then visualized as three-dimensional graphical representations. Environment radiations were visualized using colored three-dimentional graphical representations. The radiations in NPC treatment of Rando phantom was found to reach levels up to 370 mSv/treatment. Many researchers consider TLD, which is the most cost-effective method to environment radiations. The minimum detectable dose (MDD) was also identified to demonstrate the reliability of the TLD approach. Quantitative results that provide practical guidance with regarded radiation protections. Potentially hazardous of secondary radiations from the operating linac is evaluated with regard to its potential health effects on both patients and the public. KEY POINTS This work tried to evaluate the environment radiation and minimal detectable limit of TLD inside the LINAC maze.
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来源期刊
Computer Assisted Surgery
Computer Assisted Surgery Medicine-Surgery
CiteScore
2.30
自引率
0.00%
发文量
13
审稿时长
10 weeks
期刊介绍: omputer Assisted Surgery aims to improve patient care by advancing the utilization of computers during treatment; to evaluate the benefits and risks associated with the integration of advanced digital technologies into surgical practice; to disseminate clinical and basic research relevant to stereotactic surgery, minimal access surgery, endoscopy, and surgical robotics; to encourage interdisciplinary collaboration between engineers and physicians in developing new concepts and applications; to educate clinicians about the principles and techniques of computer assisted surgery and therapeutics; and to serve the international scientific community as a medium for the transfer of new information relating to theory, research, and practice in biomedical imaging and the surgical specialties. The scope of Computer Assisted Surgery encompasses all fields within surgery, as well as biomedical imaging and instrumentation, and digital technology employed as an adjunct to imaging in diagnosis, therapeutics, and surgery. Topics featured include frameless as well as conventional stereotactic procedures, surgery guided by intraoperative ultrasound or magnetic resonance imaging, image guided focused irradiation, robotic surgery, and any therapeutic interventions performed with the use of digital imaging technology.
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