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Contrast-to-Noise of a Non-Ideal,Multi-bin, Photon Counting X-ray Detector

机译:非理想,多箱,光子计数X射线探测器的对比度 - 噪声

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The contrast-to-noise (CNR) is optimized over the weights and energy threshold settings of energy bins in a photon counting detector using "delta-pulse" model simulations. Comparison is made to single-bin photon counting and energy integration detectors. The CNR2 for iodine imaging is about a factor of 2.5X higher for a perfect, photon counting detector compared to energy integration. Monte Carlo simulations are used to determine the impact of pile-up and other factors that degrade the spectral performance. The benefits of multi-bin photon counting vanish at about 40-60% tail fraction and 20-30 keV RMS noise. Because of pile-up, the CNR~2 benefit also decreases as the incident count rate approaches the maximum periodic rate (MPR). However the impact of pile-up is less for a three-bin detector than for a two-bin detector when the multiple bins are weighted optimally.
机译:使用“Delta-Pulse”模拟模拟,通过在光子计数检测器中的能量箱的权重和能量阈值设置上优化对比度和能量阈值。对单箱光子计数和能量集成探测器进行比较。与能量集成相比,碘成像的CNR2为完美的光子计数检测器的倍数为2.5倍。 Monte Carlo模拟用于确定堆积和降低光谱性能的其他因素的影响。多箱光子计数的益处在约40-60%的尾部分数和20-30keV rms噪声中消失。由于堆积,CNR〜2的益处也会随着入射率接近最大定期率(MPR)而降低。然而,当多个箱最佳加权时,堆积的冲击比三箱检测器的影响更小于两个箱子检测器。

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