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Correction of count losses due to deadtime on a DST-XLi (SMVi-GE) camera during dosimetric studies in patients injected with iodine-131

机译:在剂量学研究期间,对注射碘131的患者进行的DST-XLi(SMVi-GE)相机死区时间导致的计数损失的校正

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In dosimetric studies performed after therapeutic injection, it is essential to correct count losses due to deadtime on the gamma camera. This note describes four deadtime correction methods, one based on the use of a standard source without preliminary calibration, and three requiring specific calibration and based on the count rate observed in different spectrometric windows (20%, 20% plus a lower energy window and the full spectrum of 50-750 keV). Experiments were conducted on a phantom at increasingly higher count rates to check correction accuracy with the different methods. The error was less than +7% with a standard source, whereas count-ratebased methods gave more accurate results. On the assumption that the model was paralysable, preliminary calibration allowed an observed count rate curve to be plotted as a function of the real count rate. The use of the full spectrum led to a 3.0% underestimation for the highest activity imaged. As count losses depend on photon flux independent of energy, the use of the full spectrum during measurement allowed scatter conditions to be taken into account. A protocol was developed to apply this correction method to whole-body acquisitions.
机译:在治疗性注射后进行的剂量学研究中,必须纠正由于伽玛相机的死区时间造成的计数损失。本说明描述了四种停滞时间校正方法,一种是基于使用标准光源而不进行初步校准的,另一种是需要进行特定校准的,并且是基于在不同光谱窗口中观察到的计数率(20%,20%加上较低的能量窗口以及全光谱为50-750 keV)。在幻像上以越来越高的计数率进行了实验,以检查采用不同方法的校正准确性。使用标准源时,误差小于+ 7%,而基于计数率的方法给出的结果更准确。假设模型是可瘫痪的,则初步校准允许将观察到的计数率曲线绘制成实际计数率的函数。全光谱的使用导致所成像的最高活性被低估了3.0%。由于计数损耗取决于与能量无关的光子通量,因此在测量过程中使用全光谱可以考虑散射条件。开发了一种协议,将该校正方法应用于全身采集。

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