O'Keeffe S, McCarthy D, Woulfe P, Grattan M W D, Hounsell A R, Sporea D, Mihai L, Vata I, Leen G, Lewis E
1 Optical Fibre Sensors Research Centre, Department of Electronic and Computer Engineering, University of Limerick, Limerick, Ireland.
Br J Radiol. 2015 Jun;88(1050):20140702. doi: 10.1259/bjr.20140702. Epub 2015 Mar 11.
This article presents an overview of the recent developments and requirements in radiotherapy dosimetry, with particular emphasis on the development of optical fibre dosemeters for radiotherapy applications, focusing particularly on in vivo applications. Optical fibres offer considerable advantages over conventional techniques for radiotherapy dosimetry, owing to their small size, immunity to electromagnetic interferences, and suitability for remote monitoring and multiplexing. The small dimensions of optical fibre-based dosemeters, together with being lightweight and flexible, mean that they are minimally invasive and thus particularly suited to in vivo dosimetry. This means that the sensor can be placed directly inside a patient, for example, for brachytherapy treatments, the optical fibres could be placed in the tumour itself or into nearby critical tissues requiring monitoring, via the same applicators or needles used for the treatment delivery thereby providing real-time dosimetric information. The article outlines the principal sensor design systems along with some of the main strengths and weaknesses associated with the development of these techniques. The successful demonstration of these sensors in a range of different clinical environments is also presented.
本文概述了放射治疗剂量学的最新进展和要求,特别强调了用于放射治疗应用的光纤剂量计的发展,尤其侧重于体内应用。与传统的放射治疗剂量学技术相比,光纤具有诸多优势,这归因于其尺寸小、不受电磁干扰以及适用于远程监测和多路复用。基于光纤的剂量计尺寸小,重量轻且灵活,意味着它们微创性极小,因此特别适合体内剂量测定。这意味着传感器可以直接放置在患者体内,例如,对于近距离放射治疗,光纤可以通过用于治疗输送的相同施源器或针,放置在肿瘤本身或需要监测的附近关键组织中,从而提供实时剂量信息。本文概述了主要的传感器设计系统以及与这些技术发展相关的一些主要优缺点。还介绍了这些传感器在一系列不同临床环境中的成功示范。