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A time-of-flight detector for thermal neutrons from radiotherapy Linacs

机译:飞行时间直线加速器的热中子飞行时间探测器

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Boron Neutron Capture Therapy (BNCT) is a therapeutic technique exploiting the release of dose inside the tumour cell after a fission of a ~(10)B nucleus following the capture of a thermal neutron. BNCT could be the treatment for extended tumors (liver, stomach, lung), radio-resistant ones (melanoma) or tumours surrounded by vital organs (brain). The application of BNCT requires a high thermal neutron flux ( > 5 × 10~8 n cm~(-2) s~(-1)) with the correct energy spectrum (neutron energy < 10keV), two requirements that for the moment are fulfilled only by nuclear reactors. The INFN PhoNeS (Photo Neutron Source) project is trying to produce such a neutron beam with standard radiotherapy Linacs, maximizing with a dedicated photo-neutron converter the neutrons produced by Giant Dipole Resonance by a high energy ( > 8MeV) photon beam. In this framework, we have developed a real-time detector to measure the thermal neutron time-of -flight to compute the flux and the energy spectrum. Given the pulsed nature of Linac beams, the detector is a single neutron counting system made of a scintillator detecting the photon emitted after the neutron capture by the hydrogen nuclei. The scintillator signal is sampled by a dedicated FPGA clock thus obtaining the exact arrival time of the neutron itself. The paper will present the detector and its electronics, the feasibility measurements with a Varian Clinac 1800/2100CD and comparison with a Monte Carlo simulation.
机译:硼中子俘获疗法(BNCT)是一种利用热中子俘获后〜(10)B核裂变后在肿瘤细胞内部释放剂量的治疗技术。 BNCT可以用于治疗扩展性肿瘤(肝,胃,肺),抗放射性肿瘤(黑素瘤)或被重要器官包围的肿瘤(脑)。 BNCT的应用需要具有正确的能谱(中子能<10keV)的高热中子通量(> 5×10〜8 n cm〜(-2)s〜(-1)),目前有两个要求:仅由核反应堆完成。 INFN PhoNeS(光中子源)项目正在尝试使用标准的放射治疗直线加速器产生这种中子束,并通过专用的光中子转换器将巨能偶极子共振产生的中子通过高能(> 8MeV)光子束最大化。在此框架中,我们开发了一种实时探测器,用于测量热中子飞行时间以计算通量和能谱。考虑到直线加速器束的脉冲特性,该探测器是一个由闪烁器组成的单中子计数系统,该探测器可检测中子被氢核俘获后发出的光子。闪烁器信号由专用的FPGA时钟采样,从而获得中子本身的精确到达时间。本文将介绍探测器及其电子设备,使用Varian Clinac 1800 / 2100CD进行的可行性测量以及与Monte Carlo模拟的比较。

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