Imaging Sciences and Biomedical Engineering, King's College London, SE1 7EH London, UK.
IEEE Trans Med Imaging. 2012 Dec;31(12):2234-40. doi: 10.1109/TMI.2012.2213827. Epub 2012 Aug 17.
Positron emission tomography (PET) image quality in both clinical and preclinical environments highly depends on an accurate knowledge of the detector hardware to correct for image quality degrading effects like gain, temperature, and photon detection efficiency variations of the individual crystals. In conventional PET systems some of these variations are typically corrected using a dedicated calibration scan in which the scanner performance for a well-known activity source is measured. We propose an alternative method for estimating the relative sensitivity of each detector pixel using the coincidences as well as the singles emission data of each PET scan. The overall idea is to compare the total sum of all measured single photons before coincidence processing in each crystal with a steadily low-frequent distribution that can normally be expected. Both the estimated activity and the estimated detector sensitivity are simultaneously improved by using an extended iterative reconstruction scheme. This way we ensure the use of an optimal calibration correction (with the exception of a global factor) for each data set, even if the scanner performance has changed between two scans. Data measured with a preclinical PET scanner (HYPERIon-I) which uses analog silicon photomultipliers in combination with a custom-made ASIC shows a significant increase of image quality and homogeneity using the proposed method.
正电子发射断层扫描(PET)的图像质量在临床和临床前环境中都高度依赖于对探测器硬件的准确了解,以便纠正图像质量下降的影响,如个体晶体的增益、温度和光子探测效率变化。在传统的 PET 系统中,这些变化中的一些通常使用专门的校准扫描来校正,其中测量了扫描仪对已知活性源的性能。我们提出了一种使用符合事件以及每个 PET 扫描的单发射数据来估计每个探测器像素相对灵敏度的替代方法。总的想法是将每个晶体在符合处理之前测量的所有单个光子的总和与通常可以预期的稳定低频率分布进行比较。通过使用扩展的迭代重建方案,同时提高了估计的活动和估计的探测器灵敏度。这样,即使在两次扫描之间扫描仪性能发生了变化,我们也可以确保为每个数据集使用最佳的校准校正(除了全局因素)。使用模拟硅光电倍增管与定制 ASIC 相结合的临床前 PET 扫描仪(HYPERIon-I)测量的数据表明,使用所提出的方法可以显著提高图像质量和均匀性。