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粒子治疗基础I:物理学

Basics of particle therapy I: physics.

作者信息

Park Seo Hyun, Kang Jin Oh

机构信息

Department of Radiation Oncology, Kyung Hee University School of Medicine, Seoul, Korea.

出版信息

Radiat Oncol J. 2011 Sep;29(3):135-46. doi: 10.3857/roj.2011.29.3.135. Epub 2011 Sep 30.

Abstract

With the advance of modern radiation therapy technique, radiation dose conformation and dose distribution have improved dramatically. However, the progress does not completely fulfill the goal of cancer treatment such as improved local control or survival. The discordances with the clinical results are from the biophysical nature of photon, which is the main source of radiation therapy in current field, with the lower linear energy transfer to the target. As part of a natural progression, there recently has been a resurgence of interest in particle therapy, specifically using heavy charged particles, because these kinds of radiations serve theoretical advantages in both biological and physical aspects. The Korean government is to set up a heavy charged particle facility in Korea Institute of Radiological & Medical Sciences. This review introduces some of the elementary physics of the various particles for the sake of Korean radiation oncologists' interest.

摘要

随着现代放射治疗技术的进步,放射剂量适形和剂量分布有了显著改善。然而,这一进展并未完全实现癌症治疗的目标,如改善局部控制或生存率。与临床结果的不一致源于光子的生物物理特性,光子是当前放疗领域的主要辐射源,其对靶标的线性能量传递较低。作为自然发展的一部分,最近人们对粒子治疗重新产生了兴趣,特别是使用重带电粒子,因为这类辐射在生物学和物理学方面都具有理论优势。韩国政府将在韩国放射医学科学研究所建立一个重带电粒子设施。为了引起韩国放射肿瘤学家的兴趣,本综述介绍了各种粒子的一些基本物理知识。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fff0/3429896/3f532d4888cd/roj-29-135-g001.jpg

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