Faculty of Sciences, Engineering & Health, CQUniversity, Australia.
Phys Med Biol. 2011 May 7;56(9):2651-65. doi: 10.1088/0031-9155/56/9/001. Epub 2011 Apr 5.
Accurate attenuation correction is important for quantitative positron emission tomography (PET) studies. When performing transmission measurements using an external rotating radioactive source, object motion during the transmission scan can distort the attenuation correction factors computed as the ratio of the blank to transmission counts, and cause errors and artefacts in reconstructed PET images. In this paper we report a compensation method for rigid body motion during PET transmission measurements, in which list mode transmission data are motion corrected event-by-event, based on known motion, to ensure that all events which traverse the same path through the object are recorded on a common line of response (LOR). As a result, the motion-corrected transmission LOR may record a combination of events originally detected on different LORs. To ensure that the corresponding blank LOR records events from the same combination of contributing LORs, the list mode blank data are spatially transformed event-by-event based on the same motion information. The number of counts recorded on the resulting blank LOR is then equivalent to the number of counts that would have been recorded on the corresponding motion-corrected transmission LOR in the absence of any attenuating object. The proposed method has been verified in phantom studies with both stepwise movements and continuous motion. We found that attenuation maps derived from motion-corrected transmission and blank data agree well with those of the stationary phantom and are significantly better than uncorrected attenuation data.
准确的衰减校正对于定量正电子发射断层扫描(PET)研究非常重要。当使用外部旋转放射性源进行透射测量时,在透射扫描期间的物体运动会扭曲作为空白与透射计数之比计算的衰减校正因子,并导致重建的 PET 图像中的误差和伪影。在本文中,我们报告了一种用于 PET 透射测量期间刚体运动的补偿方法,其中基于已知的运动对列表模式透射数据进行逐事件运动校正,以确保所有穿过物体相同路径的事件都记录在共同的响应线(LOR)上。结果,运动校正后的透射 LOR 可能会记录最初在不同 LOR 上检测到的事件的组合。为了确保相应的空白 LOR 记录来自同一贡献 LOR 组合的事件,基于相同的运动信息对列表模式空白数据进行逐事件的空间变换。然后,记录在所得空白 LOR 上的计数数量等效于在不存在任何衰减物体的情况下,将在相应的运动校正后的透射 LOR 上记录的计数数量。已经在具有逐步运动和连续运动的体模研究中验证了该方法。我们发现,源自运动校正后的透射和空白数据的衰减图与静止体模的衰减图非常吻合,并且明显优于未校正的衰减数据。