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首页> 外文期刊>IEEE Transactions on Nuclear Science >Measuring PET scanner sensitivity: relating countrates to image signal-to-noise ratios using noise equivalents counts
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Measuring PET scanner sensitivity: relating countrates to image signal-to-noise ratios using noise equivalents counts

机译:测量PET扫描仪的灵敏度:使用噪声当量计数将计数率与图像信噪比相关

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摘要

True coincidence count (TCC) and noise equivalent count (NEC) curves were measured with a standardized 20-cm-diameter nylon cylinder for five different CTI/Siemens PET (positron emission tomography) scanners with several scanner-collimator combinations: (1) 831/08-12 with 1-mm collimator septa; (2) 933/08-12 and 933/08-16 with 3 to 1-mm tapered collimator septa; and (3) 931/08-12 with 3 to 1-mm tapered and a 1-mm collimator septa and the 931/08-16 with 3 to 1-mm tapered collimator septa. In addition, TCC and NEC curves on the 933/08-12 were compared with those from an Alderson brain phantom. In general, it is found that the TCC curves indicated peak count rates and activity levels that were as much as 50% higher than the corresponding values from NEC curves. The primary factor causing this difference is the noise effect of the randoms component. It is demonstrated that, compared to the Alderson brain phantom, the standard 20-cm cylinder is a poor predictor of count rate performance for PET brain imaging.
机译:真重合计数(TCC)和噪声当量计数(NEC)曲线是使用标准的20厘米直径尼龙圆柱体针对五种不同的CTI / Siemens PET(正电子发射断层扫描)扫描仪和几种扫描仪-准直仪组合进行测量的:(1)831 / 08-12,带有1毫米准直器隔片; (2)933 / 08-12和933 / 08-16,带有3至1毫米的锥形准直器隔片; (3)931 / 08-12带有3到1毫米的锥形和1毫米的准直器隔片,以及931 / 08-16带有3到1毫米的锥形准直器隔片。另外,将933 / 08-12的TCC和NEC曲线与Alderson脑模型的曲线进行了比较。通常,发现TCC曲线显示的峰计数率和活性水平比NEC曲线的相应值高50%。造成这种差异的主要因素是随机分量的噪声影响。结果表明,与Alderson脑幻影相比,标准的20厘米圆柱体不能很好地预测PET脑成像的计数率性能。

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