arXiv : Dose Delivery Concept and Instrumentation

S. Giordanengo, M. Donetti
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引用次数: 1

Abstract

Radiation therapy aims to deliver the prescribed amount of dose to a tumour at the same time as sparing the surrounding tissues as much as possible. In charged particle therapy, delivering the prescribed dose is equivalent to delivering the prescribed number of ions of a given energy at each position of the irradiation field. The accurate delivery is committed to a dose delivery (DD) system that shapes, guides and controls the beam before the patient entrance. Most of the early DD systems provided uniform lateral dose profiles by using different devices, mainly patient-specific, placed in the beam line to shape the three-dimensional final target dose. More recently, systems that provide highly conformal dose distributions using thousands of narrow beams at well-defined energy were developed which feature advanced scanning magnets and real-time beam monitors, without patient-specific hardware. This lecture will cover the general dose delivery concept as well as the different DD instrumentations depending mainly on the beam delivery technique and on the particle and accelerator types. Some characteristic worldwide DD and beam monitor systems will be mentioned.
剂量传递概念和仪器
放射治疗的目的是在尽可能保留肿瘤周围组织的同时,向肿瘤提供规定剂量。在带电粒子治疗中,提供规定剂量相当于在照射场的每个位置提供规定数量的给定能量的离子。在患者进入之前,剂量输送(DD)系统可以对光束进行塑形、引导和控制,从而实现精确的输送。大多数早期DD系统通过使用不同的装置(主要是针对患者的)来提供均匀的横向剂量分布,这些装置放置在束流线上以形成三维最终目标剂量。最近,开发了使用数千窄光束在明确能量下提供高度适形剂量分布的系统,该系统具有先进的扫描磁铁和实时光束监视器,而无需患者特定的硬件。本讲座将涵盖一般剂量传递概念,以及不同的DD仪器,主要取决于光束传递技术和粒子和加速器类型。本文将介绍世界范围内DD和波束监测系统的一些特点。
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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