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纳米-X直线加速器:一种集成患者旋转功能的紧凑型经济癌症放射治疗系统。

The Nano-X Linear Accelerator: A Compact and Economical Cancer Radiotherapy System Incorporating Patient Rotation.

作者信息

Eslick Enid M, Keall Paul J

机构信息

Radiation Physics Laboratory, Sydney Medical School, University of Sydney, NSW 2006, Australia School of Physics, University of Sydney, NSW 2006, Australia.

Radiation Physics Laboratory, Sydney Medical School, University of Sydney, NSW 2006, Australia

出版信息

Technol Cancer Res Treat. 2015 Oct;14(5):565-72. doi: 10.7785/tcrt.2012.500436. Epub 2014 Nov 26.

Abstract

Rapid technological improvements in radiotherapy delivery results in improved outcomes to patients, yet current commercial systems with these technologies on board are costly. The aim of this study was to develop a state-of-the-art cancer radiotherapy system that is economical and space efficient fitting with current world demands. The Nano-X system is a compact design that is light weight combining a patient rotation system with a vertical 6 MV fixed beam. In this paper, we present the Nano-X system design configuration, an estimate of the system dimensions and its potential impact on shielding cost reductions. We provide an assessment of implementing such a radiotherapy system clinically, its advantages and disadvantages compared to a compact conventional gantry rotating linac. The Nano-X system has several differentiating features from current radiotherapy systems, it is [1] compact and therefore can fit into small vaults, [2] light weight, and [3] engineering efficient, i.e., it rotates a relatively light component and the main treatment delivery components are not under rotation (e.g., DMLCs). All these features can have an impact on reducing the costs of the system. In terms of shielding requirements, leakage radiation was found to be the dominant contributor to the Nano-X vault and as such no primary shielding was necessary. For a low leakage design, the Nano-X vault footprint and concrete volume required is 17 m2 and 35 m3 respectively, compared to 54 m2 and 102 m3 for a conventional compact linac vault, resulting in decreased costs in shielding. Key issues to be investigated in future work are the possible patient comfort concerns associated with the patient rotation system, as well as the magnitude of deformation and subsequent adaptation requirements.

摘要

放射治疗技术的快速进步使患者的治疗效果得到改善,但目前搭载这些技术的商业系统成本高昂。本研究的目的是开发一种符合当前全球需求的、经济且节省空间的先进癌症放射治疗系统。Nano-X系统设计紧凑、重量轻,将患者旋转系统与垂直6兆伏固定束相结合。在本文中,我们介绍了Nano-X系统的设计配置、系统尺寸估算及其对降低屏蔽成本的潜在影响。我们评估了在临床中实施这种放射治疗系统的情况,以及与紧凑型传统龙门旋转直线加速器相比它的优缺点。Nano-X系统与当前的放射治疗系统有几个不同之处,它[1]紧凑,因此可以安装在小治疗室中;[2]重量轻;[3]工程效率高,即它旋转的是相对较轻的部件,主要治疗输送部件不旋转(例如动态多叶准直器)。所有这些特点都可能对降低系统成本产生影响。在屏蔽要求方面,发现泄漏辐射是Nano-X治疗室的主要辐射源,因此不需要主屏蔽。对于低泄漏设计,Nano-X治疗室占地面积和所需混凝土体积分别为17平方米和35立方米,而传统紧凑型直线加速器治疗室为54平方米和102立方米,从而降低了屏蔽成本。未来工作中有待研究的关键问题是与患者旋转系统相关的患者舒适度问题,以及变形程度和后续适应要求。

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