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An Accurate Timing Alignment Method with Time-to-Digital Converter Linearity Calibration for High-Resolution TOF PET

机译:具有高分辨率TOF PET的具有时间数字转换器线性校准的精确定时对准方法

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摘要

Accurate PET system timing alignment minimizes the coincidence time window and therefore reduces random events and improves image quality. It is also critical for time-of-flight (TOF) image reconstruction. Here, we use a thin annular cylinder (shell) phantom filled with a radioactive source and located axially and centrally in a PET camera for the timing alignment of a TOF PET system. This timing alignment method involves measuring the time differences between the selected coincidence detector pairs, calibrating the differential and integral nonlinearity of the time-to-digital converter (TDC) with the same raw data and deriving the intrinsic time biases for each detector using an iterative algorithm. The raw time bias for each detector is downloaded to the front-end electronics and the residual fine time bias can be applied during the TOF list-mode reconstruction. Our results showed that a timing alignment accuracy of better than ±25 ps can be achieved, and a preliminary timing resolution of 473 ps (full width at half maximum) was measured in our prototype TOF PET/CT system.
机译:准确的PET系统定时对准可最大程度地减少重合时间窗口,从而减少随机事件并提高图像质量。这对于飞行时间(TOF)图像重建也至关重要。在这里,我们使用一个薄的环形圆柱体(壳)体模填充放射源,并将其轴向和中央放置在PET相机中,以实现TOF PET系统的时间对准。这种时序对准方法包括测量选定的重合检测器对之间的时间差,使用相同的原始数据校准时间数字转换器(TDC)的差分和积分非线性,并使用迭代方法得出每个检测器的固有时间偏差算法。将每个检测器的原始时间偏差下载到前端电子设备,并且可以在TOF列表模式重构期间应用剩余的精细时间偏差。我们的结果表明,可以达到优于±25 ps的时序对准精度,并且在我们的原型TOF PET / CT系统中测得的初步时序分辨率为473 ps(半峰全宽)。

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