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CMOS Active Pixel Sensors as energy-range detectors for proton Computed Tomography

机译:CMOS有源像素传感器作为质子计算机断层扫描的能量范围检测器

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摘要

Since the first proof of concept in the early 70s, a number of technologies has been proposed to perform proton CT (pCT), as means of mapping tissue stopping power for accurate treatment planning in proton therapy. Previous prototypes of energy-range detectors for pCT have been mainly based on the use of scintillator-based calorimeters, to measure proton residual energy. However, such an approach is limited by the need for only a single proton passing through the\udenergy-range detector per read-out cycle. A novel approach to this problem could be the use of pixelated detectors, where the independent read-out of each pixel allows to measure simultaneously\udthe residual energy of a number of protons in the same read-out cycle, facilitating a faster and more efficient pCT scan.\udThis paper investigates the suitability of CMOS Active Pixel Sensors (APSs) to track individual protons as they go through a number of CMOS layers, forming an energy-range telescope. Measurements performed at the iThemba Laboratories will be presented and analysed in terms of\udcorrelation, to confirm capability of proton tracking for CMOS APSs.
机译:自70年代初期首次概念验证以来,已提出了许多技术来执行质子CT(pCT),作为绘制组织停止能力以进行质子治疗中准确治疗计划的手段。以前用于pCT的能量范围检测器原型主要基于使用基于闪烁体的量热仪来测量质子残余能量。但是,这种方法受到每个读出周期仅需要一个质子通过\能级范围检测器的限制。解决此问题的一种新颖方法可能是使用像素化检测器,其中每个像素的独立读出允许在同一读出周期中同时测量多个质子的剩余能量,从而有助于更快,更高效pCT扫描。\ ud本文研究了CMOS有源像素传感器(APS)跟踪各个质子穿过多个CMOS层时形成能量范围望远镜的适用性。 iThemba实验室执行的测量将按照\不相关性进行介绍和分析,以确认质子跟踪CMOS APS的能力。

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