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A Count Rate-Dependent Method for Spectral Distortion Correction in Photon Counting CT

机译:光子计数CT中一种基于计数率的光谱畸变校正方法

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Rawdata based material decomposition in spectral CT using photon counting energy selective detectors relies on a precise forward model that predicts a count-rate given intersection lengths for each material. This requires extensive system-specific measurements or calibration techniques. Existing calibrations either estimate a detected spectrum and are able to account for spectrally distorted assumptions or correct the predicted count rate using a correction function and can accommodate for count rate-dependent effects such as pulse pileup. We propose a calibration method that uses transmission measurements to optimize a correction function that, unlike existing methods, depends both on the photon energy and the count rate. It is thus able to correct for both kinds of distortions. In a simulated material decomposition into water and iodine, the error was reduced by 96 % compared to the best performing reference method if only pulse pileup was present and reduced by 23 % if additionally spectral distortions were taken into account. In phantom measurements using a Dectris SANTIS prototype detector, the proposed method allowed to reduce the error by 29 % compared to the best performing reference method. Artifacts were below the noise level for the proposed method, while the reference methods either showed an offset in the water region or ring artifacts.
机译:使用光子计数能量选择性检测器的光谱CT中基于原始数据的材料分解依赖于精确的正向模型,该模型预测每种材料给定的相交长度的计数率。这需要广泛的系统特定的测量或校准技术。现有的校准要么估计检测到的频谱,要么考虑频谱失真的假设,要么使用校正函数校正预测的计数率,并且可以适应计数率相关的影响,例如脉冲堆积。我们提出一种校准方法,该方法使用透射率测量来优化校正函数,该校正函数与现有方法不同,它既取决于光子能量又取决于计数率。因此,它能够校正两种失真。在模拟的材料分解为水和碘的过程中,如果仅存在脉冲堆积,则与最佳性能的参考方法相比,误差降低了96%,而如果考虑到其他光谱畸变,则误差降低了23%。在使用Dectris SANTIS原型检测器进行幻像测量中,与性能最佳的参考方法相比,该方法可以将误差降低29%。伪影低于所提出方法的噪声水平,而参考方法则显示出水域有偏移或环状伪影。

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