首页> 外文会议>Hard X-Ray and Gamma-Ray Detector Physics IX; Proceedings of SPIE-The International Society for Optical Engineering; vol.6706 >Study and realization of Real-Time, in-depth dosimetry system for IORT (Intra Operative Radiation Therapy)
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Study and realization of Real-Time, in-depth dosimetry system for IORT (Intra Operative Radiation Therapy)

机译:IORT(手术中放射治疗)实时深入剂量测定系统的研究与实现

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Intra Operative Radiation Therapy (IORT) is a technique based on delivery of a high dose of ionising radiation to the cancer tissue, after tumour ablation, during surgery, while reducing the exposure of normal surrounding tissue. Novac7 and Liac are new linear accelerators expressly conceived to perform in the operating room. These accelerators supply electron beams with high dose rate. Because of this peculiar characteristic, classical dosimetric techniques are not able to give at once a real-time response and an extensive measure of the absorbed dose. In past years the authors realized a prototype for IORT dosimetry able to give the real time bi-dimensional image of dose distribution on a single layer. In the framework of a research project funded by the INFN (Italian National Institute of Nuclear Physics), a collaboration between the Physics Department of Bologna, Italy, the Physics Department of Cosenza and the Medicine Department of Catanzaro, Italy, has studied a new system composed of six layers. Each layer includes two orthogonal bundles of scintillating optical fibres. The fibres are optically coupled with four arrays of photodiodes as read-out system. This new system will be able to characterize completely the electron beam in energy, intensity and spatial distribution. In real time it will be able to measure the 3D dose distribution, providing a full check of quality assurance for IORT. The various phases of design, development and characterization of the instrument will be illustrated, as well as some experimental tests performed with the prototype. We verified that the system is able to give a real time response, which is linear versus dose and not affected by the high dose rate. The conclusions confirm the capability of the instrument to overcome problems encountered with classic dosimetry, showing that the obtained results strongly encourage the continuation of this research.
机译:术中放射疗法(IORT)是一种基于肿瘤消融后,手术期间向癌症组织输送高剂量电离辐射,同时减少正常周围组织暴露的技术。 Novac7和Liac是新型直线加速器,专门设计用于在手术室中使用。这些加速器提供高剂量率的电子束。由于这种独特的特性,经典的剂量学技术无法立即给出实时响应和对吸收剂量的广泛测量。在过去的几年中,作者实现了IORT剂量学的原型,能够在单层上提供剂量分布的实时二维图像。在INFN(意大利国家核物理研究所)资助的研究项目的框架内,意大利博洛尼亚物理系,科森扎物理系和意大利卡坦扎罗医学系之间的合作研究了一种新系统由六层组成。每一层包括两个正交的闪烁光纤束。光纤与四个光电二极管阵列光学耦合,作为读出系统。这个新系统将能够在能量,强度和空间分布上完全表征电子束。它将能够实时测量3D剂量分布,从而全面检查IORT的质量保证。将说明仪器设计,开发和表征的各个阶段,以及对原型进行的一些实验测试。我们验证了该系统能够给出实时响应,该响应与剂量呈线性关系,并且不受高剂量率的影响。结论证实了该仪器克服经典剂量法遇到的问题的能力,表明所获得的结果极大地鼓励了这项研究的继续。

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