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Theoretical count rate capabilities of polycrystalline silicon photon counting imagers for CBCT applications

机译:CBCT应用的多晶硅光子计数成像仪的理论计数能力

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Photon counting detectors are of increasing interest for clinical imaging. By measuring and digitally recording the deposited energy of each detected x-ray photon, these detectors can decrease the effect of electronic readout noise and Swank noise, potentially leading to improved image quality at decreased dose. The energy information of each photon can also be used to perform advanced imaging techniques such as material separation and k-edge imaging. Photon counting detectors employing crystalline silicon for the detector backplane are currently used for mammographic imaging and are under active investigation for fan-beam breast computed tomography (BCT). Our group has been exploring the possibility of creating monolithic, large-area photon counting detectors in order to perform cone-beam CT (CBCT) for BCT and radiation therapy (kV CBCT) applications. The detectors employ polycrystalline silicon (poly-Si) - a thin-film material that can be used to economically manufacture monolithic, large-area backplanes. In addition, poly-Si transistors have demonstrated good radiation damage resistance. The introduction of poly-Si-based photon counting detectors to BCT and kV CBCT would combine the benefits of photon counting with those of CBCT. However, one major challenge is designing circuits that are capable of handling the x-ray fluxes associated with these applications. A previously developed simulation methodology has been employed to model various levels of input flux in order to evaluate the count rate capabilities of poly-Si circuit designs. In this paper, the count rate capabilities of a promising poly-Si amplifier design under BCT and kV CBCT conditions are reported.
机译:光子计数探测器对临床成像的兴趣越来越令人兴趣。通过测量和数字记录每个检测到的X射线光子的沉积能量,这些检测器可以降低电子读出噪声和速噪的效果,可能导致剂量下降的图像质量。每个光子的能量信息也可用于执行高级成像技术,例如材料分离和k边缘成像。用于检测器背板的光子计数检测器,用于检测器背板的晶体硅的滤芯用于乳房X光学成像,并在风扇束乳房计算机断层扫描(BCT)下积极研究。我们的小组一直在探索创造单片,大面积光子计数探测器的可能性,以便对BCT和放射治疗(KV CBCT)应用进行锥形束CT(CBCT)。探测器采用多晶硅(Poly-Si) - 一种薄膜材料,可用于经济地制造整体的大面积窗口。此外,Poly-Si晶体管已经表现出良好的辐射损伤阻力。将基于Poly-Si的光子计数检测器引入BCT和KV CBCT将结合光子计数与CBCT的那些益处。然而,一个主要挑战是设计能够处理与这些应用相关的X射线通量的电路。已经采用先前开发的仿真方法来模拟各种输入通量,以评估多Si电路设计的计数率能力。本文报道了BCT和KV CBCT条件下有希望的多Si放大器设计的计数率能力。

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