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Signal and noise characteristics of a CdTe-based photon counting detector: Cascaded systems analysis and experimental studies

机译:基于CdTe的光子计数检测器的信号和噪声特性:级联系统分析和实验研究

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Recent advances in single photon counting detectors (PCDs) are opening up new opportunities in medical imaging. However, the performance of PCDs is not flawless. Problems such as charge sharing may deteriorate the performance of PCD. This work studied the dependence of the signal and noise properties of a cadmium telluride (CdTe)-based PCD on the charge sharing effect and the anti-charge sharing (ACS) capability offered by the PCD. Through both serial and parallel cascaded systems analysis, a theoretical model was developed to trace the origin of charge sharing in CdTe-based PCD, which is primarily related to remote k-fiuorescence re-absorption and spatial spreading of charge cloud. The ACS process was modeled as a sub-imaging state prior to the energy thresholding stage, and its impact on the noise power spectrum (NPS) of PCD can be qualitatively determined by the theoretical model. To validate the theoretical model, experimental studies with a CdTe-based PCD system (XC-FLITE X1, XCounter AB) was performed. Two x-ray radiation conditions, including an RQA-5 beam and a 40 kVp beam, were used for the NPS measurements. Both theoretical predictions and experimental results showed that ACS makes the NPS of the CdTe-based PCD flatter, which corresponds to reduced noise correlation length. The flatness of the NPS is further boosted by increasing the energy threshold or reducing the x-ray energy, both of which reduce the likelihood of registering multiple counts from the same incidenting x-ray photon.
机译:单光子计数检测器(PCD)的最新进展为医学成像开辟了新的机遇。但是,PCD的性能并非完美无缺。电荷共享之类的问题可能会使PCD的性能下降。这项工作研究了基于碲化镉(CdTe)的PCD的信号和噪声特性对PCD提供的电荷共享效果和抗电荷共享(ACS)能力的依赖性。通过串行和并行级联系统分析,建立了一个理论模型来追踪基于CdTe的PCD中电荷共享的起源,这主要与远程k荧光重吸收和电荷云的空间扩展有关。 ACS过程在能量阈值阶段之前被建模为亚成像状态,其对PCD噪声功率谱(NPS)的影响可以通过理论模型定性地确定。为了验证理论模型,进行了基于CdTe的PCD系统(XC-FLITE X1,XCounter AB)的实验研究。 NPS测量使用了两个X射线辐射条件,包括RQA-5光束和40 kVp光束。理论预测和实验结果均表明,ACS使基于CdTe的PCD的NPS变得更平坦,这与减小的噪声相关长度相对应。通过增加能量阈值或减少X射线能量,可以进一步提高NPS的平坦度,这两者都降低了从同一入射X射线光子记录多个计数的可能性。

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