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A new active method for the measurement of slow-neutron fluence in modern radiotherapy treatment rooms.

机译:一种新的主​​动方法,用于测量现代放射治疗室中的慢中子注量。

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This work focuses on neutron monitoring at clinical linac facilities during high-energy modality radiotherapy treatments. Active in-room measurement of neutron fluence is a complex problem due to the pulsed nature of the fluence and the presence of high photon background, and only passive methods have been considered reliable until now. In this paper we present a new active method to perform real-time measurement of neutron production around a medical linac. The device readout is being investigated as an estimate of patient neutron dose exposure on each radiotherapy session. The new instrument was developed based on neutron interaction effects in microelectronic memory devices, in particular using neutron-sensitive SRAM devices. This paper is devoted to the description of the instrument and measurement techniques, presenting the results obtained together with their comparison and discussion. Measurements were performed in several standard clinical linac facilities, showing high reliability, being insensitive to the photon fluence and EM pulse present inside the radiotherapy room, and having detector readout statistical relative uncertainties of about 2% on measurement of neutron fluence produced by 1000 monitor units irradiation runs.
机译:这项工作的重点是在高能模态放射治疗过程中对临床直线加速器设施进行中子监测。由于能量密度的脉冲特性和高光子背景的存在,在室内对中子能量密度进行主动测量是一个复杂的问题,迄今为止,仅被动方法被认为是可靠的。在本文中,我们提出了一种新的主​​动方法,可以实时测量医用直线加速器周围的中子产生量。正在对设备的读数进行研究,以估计每次放疗期间患者中子剂量的暴露量。该新仪器是基于微电子存储设备中的中子相互作用效应而开发的,特别是使用中子敏感的SRAM器件。本文专门介绍仪器和测量技术,介绍获得的结果以及它们的比较和讨论。在几个标准临床直线加速器设施中进行了测量,这些测量结果显示出高可靠性,对放射治疗室内的光子注量和EM脉冲不敏感,并且检测器读数对由1000个监控器产生的中子注量的统计相对不确定度约为2%辐照运行。

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