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The effect of detector performance on high count rate PET imaging with a tomograph based on position-sensitive detectors

机译:检测器性能对基于位置敏感检测器的X线断层扫描仪对高计数率PET成像的影响

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Emission-computed tomography systems using large position-sensitive detectors must handle high event rates per detector during dynamic studies. To determine the ability of their positron-emission tomograph (PET) to perform high-count-rate scans, the authors have studied detector performance up to single rates in excess of 2 million counts per second per detector. To evaluate the quality of images resulting from data acquired at these rates, signal-to-noise ratio analyses were applied to both simulated and experimental high-count-rate images of a cold-spot phantom. Changes in image quality were quantitated, allowing the testing of combinations of high-count-rate event processing techniques to produce optimal high-count-rate images. It was found that severe image degradation occurs when the centroid positioning algorithm is used, due to the long tails in the detector point speed function that result at high count rates. Image quality is greatly improved when the local centroid event-positioning algorithm is used to eliminate the tails. Further improvements are possible with shorter integration time and an upper-level energy discriminator set at 600 keV, close to the photopeak.
机译:使用大型位置敏感探测器的发射计算机断层扫描系统必须在动态研究期间为每个探测器处理高事件率。为了确定他们的正电子发射断层扫描仪(PET)执行高计数率扫描的能力,作者研究了探测器的性能,单个探测器的速度高达每秒超过200万个计数/探测器。为了评估以这些速率获取的数据所产生的图像质量,将信噪比分析应用于冷点体模的模拟和实验高计数率图像。对图像质量的变化进行了量化,从而可以测试高计数率事件处理技术的组合,以生成最佳的高计数率图像。发现使用质心定位算法时,由于在高计数率下导致的检测器点速度函数中的长尾巴,会导致严重的图像劣化。当使用局部质心事件定位算法消除尾部时,图像质量会大大提高。较短的积分时间和接近光电峰值的600 keV的上级能量鉴别器可以进一步改进。

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