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Multiple window spatial registration error of a gamma camera: 133Ba point source as a replacement of the NEMA procedure

机译:伽马相机的多窗口空间配准错误:133Ba点源替代了NEMA程序

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Background The accuracy of multiple window spatial resolution characterises the performance of a gamma camera for dual isotope imaging. In the present study we investigate an alternative method to the standard NEMA procedure for measuring this performance parameter. Methods A long-lived 133Ba point source with gamma energies close to 67Ga and a single bore lead collimator were used to measure the multiple window spatial registration error. Calculation of the positions of the point source in the images used the NEMA algorithm. The results were validated against the values obtained by the standard NEMA procedure which uses a liquid 67Ga source with collimation. Results Of the source-collimator configurations under investigation an optimum collimator geometry, consisting of a 5 mm thick lead disk with a diameter of 46 mm and a 5 mm central bore, was selected. The multiple window spatial registration errors obtained by the 133Ba method showed excellent reproducibility (standard deviation 133Ba point source method proved to be much easier to use. A Bland-Altman analysis showed that the 133Ba and the 67Ga Method can be used interchangeably. Conclusion The 133Ba point source method measures the multiple window spatial registration error with essentially the same accuracy as the NEMA-recommended procedure, but is easier and safer to use and has the potential to replace the current standard procedure.
机译:背景技术多窗口空间分辨率的准确性表征了伽马相机用于双同位素成像的性能。在本研究中,我们调查了用于测量此性能参数的标准NEMA程序的替代方法。方法采用伽玛能量接近 67 Ga的长寿命 133 Ba点源和单孔准直仪,测量多窗口空间配准误差。使用NEMA算法计算图像中点源的位置。根据标准NEMA程序(使用液体 67 Ga源和准直仪)获得的值验证了结果。结果在所研究的源准直仪配置中,选择了最佳的准直仪几何形状,包括5 mm厚的直径为46 mm的铅盘和5 mm的中心孔。通过 133 Ba方法获得的多个窗口空间配准误差显示出极好的可重复性(标准偏差133 Ba点源方法被证明更易于使用。Bland-Altman分析表明, 133 Ba方法和 67 Ga方法可以互换使用结论结论 133 Ba点源方法测量的多窗口空间配准误差实质上是与NEMA推荐的程序具有相同的精度,但使用起来更容易,更安全,并且有可能取代当前的标准程序。

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