首页> 外文会议>Nuclear Science Symposium Conference Record, 2004 >Deep characterization of a fast monitoring system for radiotherapeutic proton beams based on scintillating screens and a CCD camera
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Deep characterization of a fast monitoring system for radiotherapeutic proton beams based on scintillating screens and a CCD camera

机译:基于闪烁屏和CCD相机的放射治疗质子束快速监控系统的深度表征

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On August 2004, in the issue of IEEE Transaction on Nuclear Science Vol. 51, n. 4 was published a manuscript describing extensively a fast and accurate quality control system for radiotherapeutic proton beams. The system was developed for a facility, active since March 2002 at Laboratori Nazionali del Sud (Catania, Italy), in which 62 MeV proton beams are employed for treatment of ocular diseases. It consists of a scintillating screen mounted perpendicularly to the beam axis at a fixed distance and observed by a highly sensitive CCD (charge-coupled device) camera. In the manuscript were reported preliminary experimental results and the comparison of the system performances with respect to other conventional systems. In this work is presented a deeper physics characterization of the system in terms of system yield versus proton beam dose rate and its linearity, contrast and background correction, signal to noise ratio and spatial resolution measured as MTF values. The latter was measured using both a sinusoidal pattern method and an edge pattern method. The equivalence between these two methods of MTF evaluation is demonstrated for proton beams. Finally, MTF values calculated for the presented system by means of the edge pattern method is compared with routine dosimetric system values together with associated spatial resolutions.
机译:2004年8月,在IEEE Transactions on Nuclear Science Vol。 51,n。 4出版了一份手稿,广泛描述了放射治疗质子束的快速,准确的质量控制系统。该系统是为自2002年3月起在位于意大利卡塔尼亚的Nazionali del Sud实验室工作的设施开发的,该设施使用62 MeV质子束治疗眼病。它由一个闪烁屏幕组成,该屏幕垂直于光束轴以固定距离安装,并由高灵敏度的CCD(电荷耦合器件)相机进行观察。在手稿中报告了初步的实验结果以及与其他常规系统相比的系统性能比较。在这项工作中,根据系统产量与质子束剂量率及其线性,对比度和背景校正,信噪比和以MTF值测量的空间分辨率,对系统进行了更深入的物理表征。后者是使用正弦图案法和边缘图案法来测量的。质子束证明了这两种MTF评估方法之间的等效性。最后,将通过边缘模式方法计算得出的系统的MTF值与常规剂量系统值以及相关的空间分辨率进行比较。

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