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Calculation of lung-heart ratios for single-photon emission computed tomography

机译:单光子发射计算断层扫描的肺心脏比率计算

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The authors investigate the effectiveness of simple iterative reconstruction techniques in calculating lung-heart activity ratios (LHRs). The LHR has been shown to be an effective indicator of the severity of coronary artery disease in cardiac SPECT. A study was conducted with a mathematical cardiac torso phantom that modelled uptake of /sup 201/Tl in the heart and lung regions. The projection data included only the effects of nonuniform photon attenuation. The data were first reconstructed with zeroth-order Chang and a variant of the Bellini method, both of which utilize from the nonuniform attenuation map. This (NU) Bellini method compensates exactly for attenuation in the heart region, but is incorrect for other regions in the medium. These reconstructions were then used as the initial estimates in the iterative Chang, variable step-size (VSS) Chang, and Morozumi methods, for 1 and 5 iterations. The average heart count (AHC) and average lung count (ALC) were calculated using region-of-interest (ROI) templates derived from the true activity map. The population mean LHR was tabulated as the ratio of the ALC to AHC. Using the same reconstruction procedure, the authors also calculated the sample mean LHR and standard deviation from 21 noisy 3D reconstructions. The results showed that the NU Bellini and zeroth-order Chang methods provided good estimates of the AHC, while both estimated the ALC poorly. The NU Bellini method yielded a negative ALC, while the zeroth-order Chang method estimated the ALC at twice its true value. Application of 1 iteration of Chang can correct for the negative bias in the ALC for the NU Bellini estimate, and can correct for the positive bias in the ALC for the zeroth-order Chang estimate, while retaining a low bias in the AHCs for the two methods. Thus more precise LHRs are produced. Furthermore, the sample standard deviation of the LHR estimate was shown to be small in both of these cases.
机译:作者探讨了简单迭代重建技术在计算肺心脏活性比(LHRS)中的有效性。 LHR已被证明是心脏SPECT冠状动脉疾病严重程度的有效指标。通过数学心脏躯干幻像进行了一项研究,其在心脏和肺部地区进行了建模/ SUP 201 / TL的摄取。投影数据仅包括非均匀光子衰减的效果。首先用Zeroth阶Chang和Bellini方法的变型重建数据,这两者都利用了非均匀衰减图。这种(nu)Bellini方法完全补偿了心脏区域的衰减,但在介质中的其他区域是不正确的。然后将这些重建用作迭代常数,可变步长(VSS)Chang和Morozumi方法中的初始估计,为1和5次迭代。使用来自真实活动图的区域(ROI)模板计算平均心数(AHC)和平均肺计数(ALC)。群体平均值LHR作为ALC与AHC的比例表示。使用相同的重建过程,作者还计算了示例性意味着LHR和标准偏差与21噪声3D重建。结果表明,Nu Bellini和Zeroth阶Chang方法提供了良好的AHC估计,同时两者都估计了ALC。 Nu Bellini方法产生阴性ALC,而Zeroth Quance Chang方法估计了其真实值的两倍的ALC。 ALC的1次迭代的应用可以校正Nu Bellini估计的ALC中的负偏差,并且可以校正ALC中的正偏压,用于Zeroth阶Quic估计,同时保持两者AHC中的低偏差方法。因此生产更精确的LHR。此外,在这两种情况下,LHR估计的样本标准偏差显示为小。

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