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Problems created in attenuation corrected SPECT images by artifacts in the attenuation maps

机译:衰减图中的伪影在衰减校正的SPECT图像中产生的问题

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Attenuation of photons is a well recognized problem in SPECT, leading to artifacts and inaccuracies in reconstructed images. Most of the correction methods available in clinics use attenuation maps obtained with different transmission scanning systems. However, when maps are inaccurate this procedure may introduce artifacts to the final images which are difficult to identify, but which could inadvertently alter diagnosis and study outcome. The objective of this study was to investigate the issues of quality of the attenuation map and the effects that map artifacts may have on the attenuation corrected emission images. The investigated topics were related to the problem of low transmission counts, the cross-talk contributions from emission isotope, truncation of the transmission data and the methods of map reconstruction, segmentation and scaling. Examples of patient studies displaying particular problems guided our investigation and simulations were used in the analysis. Attenuation maps and final emission images were visually checked for artifacts and for presence of perfusion defects. Quantitative evaluation of map uniformity and defect visibility and size variations was performed.
机译:在SPECT中,光子的衰减是一个公认的问题,会导致重建图像中出现伪影和不准确之处。临床上可用的大多数校正方法都使用通过不同透射扫描系统获得的衰减图。但是,当地图不准确时,此过程可能会将伪影引入最终图像,这些伪影很难识别,但可能会无意中改变诊断和研究结果。这项研究的目的是研究衰减图的质量问题以及地图伪影可能对校正后的发射图像产生的影响。研究的主题与低传输数,发射同位素的串扰贡献,传输数据的截断以及地图重构,分割和缩放方法有关。显示特定问题的患者研究示例指导了我们的研究,并且在分析中使用了模拟。目视检查衰减图和最终发射图像是否有伪影和是否存在灌注缺陷。进行了地图均匀性,缺陷可见性和尺寸变化的定量评估。

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