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Radiation protection and dosimetry issues in the medical applications of ionizing radiation

机译:电离辐射医学应用中的辐射防护和剂量学问题

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摘要

The technological advances that occurred during the last few decades paved the way to the dissemination of CT-based procedures in radiology, to an increasing number of procedures in interventional radiology and cardiology as well as to new techniques and hybrid modalities in nuclear medicine and in radiotherapy. These technological advances encompass the exposure of patients and medical staff to unprecedentedly high dose values that are a cause for concern due to the potential detrimental effects of ionizing radiation to the human health. As a consequence, new issues and challenges in radiological protection and dosimetry in the medical applications of ionizing radiation have emerged. The scientific knowledge of the radiosensitivity of individuals as a function of age, gender and other factors has also contributed to raising the awareness of scientists, medical staff, regulators, decision makers and other stakeholders (including the patients and the public) for the need to correctly and accurately assess the radiation induced long-term health effects after medical exposure. Pediatric exposures and their late effects became a cause of great concern. The scientific communities of experts involved in the study of the biological effects of ionizing radiation have made a strong case about the need to undertake low dose radiation research and the International System of Radiological Protection is being challenged to address and incorporate issues such as the individual sensitivities, the shape of dose-response relationship and tissue sensitivity for cancer and non-cancer effects. Some of the answers to the radiation protection and dosimetry issues and challenges in the medical applications of ionizing radiation lie in computational studies using Monte Carlo or hybrid methods to model and simulate particle transport in the organs and tissues of the human body. The development of sophisticated Monte Carlo computer programs and voxel phantoms paves the way to an accurate dosimetric assessment of the medical applications of ionizing radiation. In this paper, the aforementioned topics will be reviewed. The current status and the future trends in the implementation of the justification and optimization principles, pillars of the International System of Radiological Protection, in the medical applications of ionizing radiation will be discussed. Prospective views will be provided on the future of the system of radiological protection and on dosimetry issues in the medical applications of ionizing radiation.
机译:近几十年来发生的技术进步为放射学中基于CT的程序的传播,介入放射学和心脏病学中越来越多的程序以及核医学和放射疗法中的新技术和混合模式铺平了道路。这些技术进步包括使患者和医护人员暴露于前所未有的高剂量值,这由于离子化辐射对人体健康的潜在有害作用而引起人们的关注。结果,在电离辐射的医学应用中在放射防护和剂量测定中出现了新的问题和挑战。随着年龄,性别和其他因素而变的个人放射敏感性的科学知识,也有助于提高科学家,医务人员,管理人员,决策者和其他利益相关者(包括患者和公众)对以下方面的认识:正确和准确地评估医学照射后辐射诱发的长期健康影响。小儿暴露及其后期影响成为引起人们极大关注的原因。从事电离辐射生物效应研究的专家科学界已为需要进行低剂量辐射研究提供了强有力的证据,国际放射防护系统正在面临挑战,以解决和纳入个人敏感性等问题,对癌症和非癌症效应的剂量反应关系和组织敏感性的形状。在电离辐射的医学应用中,辐射防护和剂量学问题以及挑战的一些答案在于使用蒙特卡洛或混合方法对人体器官和组织中的粒子传输进行建模和模拟的计算研究。先进的蒙特卡洛计算机程序和体素体模的开发为电离辐射医学应用的精确剂量学评估铺平了道路。本文将对上述主题进行回顾。将讨论实施合理化和最优化原则(国际放射防护系统的支柱)在电离辐射的医学应用中的现状和未来趋势。将就放射防护系统的未来以及电离辐射医学应用中的剂量学问题提供前瞻性意见。

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