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Single photon detection imaging of Cherenkov light emitted during radiation therapy

机译:放射治疗期间发射的Cherenkov光的单光子检测成像

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Cherenkov imaging during radiation therapy has been developed as a tool for dosimetry, which could have applications in patient delivery verification or in regular quality audit. The cameras used are intensified imaging sensors, either ICCD or ICMOS cameras, which allow important features of imaging, including: (1) nanosecond time gating, (2) amplification by 10~3-10~4, which together allow for imaging which has (1) real time capture at 10-30 frames per second, (2) sensitivity at the level of single photon event level, and (3) ability to suppress background light from the ambient room. However, the capability to achieve single photon imaging has not been fully analyzed to date, and as such was the focus of this study. The ability to quantitatively characterize how a single photon event appears in amplified camera imaging from the Cherenkov images was analyzed with image processing. The signal seen at normal gain levels appears to be a blur of about 90 counts in the CCD . detector, after going through the chain of photocathode detection, amplification through a microchannel plate PMT, excitation onto a phosphor screen and then imaged on the CCD. The analysis of single photon events requires careful interpretation of the fixed pattern noise, statistical quantum noise distributions, and the spatial spread of each pulse through the ICCD.
机译:放射治疗期间的Cherenkov成像已被开发为用于剂量测定的工具,可用于患者分娩验证或常规质量审核中。所使用的摄像机是增强型成像传感器,即ICCD或ICMOS摄像机,它们具有重要的成像功能,其中包括:(1)纳秒级时间选通,(2)放大10〜3-10〜4,共同进行成像(1)以每秒10-30帧的速度实时捕获,(2)在单光子事件级别的灵敏度,以及(3)抑制来自周围房间的背景光的能力。但是,迄今为止,尚未对实现单光子成像的能力进行全面分析,因此,这是本研究的重点。通过图像处理分析了定量表征单个光子事件如何在来自Cherenkov图像的放大相机成像中出现的能力。在正常增益水平下看到的信号在CCD中似乎出现约90个计数的模糊。探测器通过光阴极检测链后,通过微通道板PMT进行放大,激发到荧光屏上,然后在CCD上成像。对单光子事件的分析需要仔细解释固定模式噪声,统计量子噪声分布以及每个脉冲通过ICCD的空间扩展。

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