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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research >Medical beam monitor-Pre-clinical evaluation and future applications
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Medical beam monitor-Pre-clinical evaluation and future applications

机译:医用射线监测器-临床前评估和未来应用

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Future medical ion beam applications for cancer therapy which are based on scanning technology will require advanced beam diagnostics equipment. For a precise analysis of beam parameters we want to resolve time structures in the range of microseconds to nanoseconds. A prototype of an advanced beam monitor was developed by the University of Applied Sciences Wiener Neustadt and its research subsidiary Fotec in co-operation with CERN RD42, Ohio State University and the Jozef Stefan Institute in Ljubljana. The detector is based on polycrystalline Chemical Vapor Deposition (pCVD) diamond substrates and is equipped with readout electronics up to 2 GHz analog bandwidth.rnIn this paper we present the design of the pCVD-detector system and results of tests performed in various particle accelerator based facilities. Measurements performed in clinical high energy photon beams agreed within 1.2% with results obtained by standard ionization chambers.
机译:基于扫描技术的未来医学离子束在癌症治疗中的应用将需要先进的束诊断设备。为了精确分析光束参数,我们希望解析微秒至纳秒范围内的时间结构。应用科学大学Wiener Neustadt及其研究子公司Fotec与CERN RD42,俄亥俄州立大学和卢布尔雅那的约瑟夫·斯特凡研究所合作开发了一种先进的束束监测器的原型。该探测器基于多晶化学气相沉积(pCVD)金刚石基板,并配备了高达2 GHz模拟带宽的读出电子设备。在本文中,我们介绍了pCVD探测器系统的设计以及在各种基于粒子加速器的环境下进行的测试结果。设备。在临床高能光子束中进行的测量与标准电离室获得的结果相差1.2%以内。

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