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Spectroscopy with a CdTe-based photon-counting imaging detector (PCD) having charge sharing correction capability

机译:具有基于CDTE的光子计数成像检测器(PCD)的光谱学,其具有充电共享校正能力

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The spectroscopic capabilities of a newly upgraded version of a prototype imaging photon counting detector (PCD) was investigated. The XCounter Actaeon has four acquisition modes in which signal processing is varied including one mode having a charge sharing correction so that neighboring pixels that share a detected event will not be erroneously counted twice, hence it is designated the Anti-Coincidence Circuit On or ACC On mode. Since this CdTe-based direct conversion PCD has 100 μm pixels, such charge sharing may frequently occur for typical medical x-ray energies. Each pixel of this PCD has two scalers and two energy discriminators that enable counting without instrumentation noise of events above each threshold level; hence, a spectrum can be obtained by sequentially moving the thresholds of both discriminators. It became evident from the spectra for the various acquisition modes that only those obtained with the charge sharing correction enabled, compared favorably with theoretically predicted spectra. After verifying the energy calibration using the mono-energetic emissions from an Am-241 source, spectra at various kVps from a standard medical x-ray generator were obtained. The spectra generated by ACC On mode for 70 kVp and 110 kVp were the closest match to the theoretical spectra generated by SpekCal. For dual energy applications, ACC On mode with charge sharing correction circuitry would be the best choice among various acquisition modes. Also investigated was the dual energy imaging capability of the Actaeon PCD with ACC On mode to separate Aluminum and Iodine while imaging an artery stenosis phantom.
机译:研究了新升级的原型成像光子计数检测器(PCD)的新升级版本的光谱能力。 Xcounter Actaeon具有四种采集模式,其中通过电荷共享校正的一种模式改变信号处理,使得共享检测到的事件的相邻像素不会被错误地计算两次,因此它被指定为抗巧合电路或接通模式。由于这种基于CDTE的直接转换PCD具有100μm像素,因此可以经常出现这种电荷共享对于典型的医疗X射线能量。该PCD的每个像素有两个缩放器和两个能量鉴别器,可以在没有每个阈值水平上方的事件的仪器噪声的情况下进行计数;因此,可以通过顺序地移动两个鉴别器的阈值来获得光谱。它与各种采集模式的光谱变得明显,只有通过电荷共享校正获得的那些,与理论上预测的光谱有利地比较。在验证使用来自AM-241源的单能级排放的能量校准后,获得了来自标准医用X射线发生器的各种KVP的光谱。 ACC ON模式为70 kVP和110 kVP产生的光谱是由SPEKCAL产生的理论光谱最接近的匹配。对于双能应用,ACC ON模式具有充电共享校正电路将是各种采集模式的最佳选择。还研究了ACTAEON PCD的双能成像能力与ACC ON模式以分离铝和碘,同时成像动脉狭窄幻影。

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