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/sup 131/I tumor quantification: a new background-adaptive method

机译:/ sup 131 / I肿瘤定量:一种新的背景自适应方法

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The authors examine the accuracy of focal activity /sup 131/I quantification using either one of two new methods which don't explicitly employ scatter/penetration correction or using the dual-energy-window "scatter" correction method in an iterative background-adaptive mode. All imaging is carried out using circular orbits with a Picker Prism 3000XP triple-headed camera. Reconstruction by the SAGE iterative algorithm includes attenuation correction. Volumes of interest are set by hand drawing outlines on CT scans. These scans are fused to the SPECT scans. To provide the necessary calibrations, an elliptical phantom with a central 6 cm diameter sphere is imaged at two different values of radius of rotation with the water surrounding the sphere containing either no background activity or a known level. By taking account of the influence of the radius of rotation on resolution, all three methods achieve better than 11% accuracy in an inhomogeneous test phantom. However, the new method that employs a background-and-radius-adaptive conversion factor but doesn't use dual-energy-window scatter correction has the best overall accuracy: 2.8% in the phantom and 8.4% in a patient. Moreover, it yields a patient SPECT time activity curve which is smooth. It may be a good, practical technique since it has better than 10% accuracy and a reasonable noise level.
机译:作者使用未明确采用散射/穿透校正的两种新方法之一或在迭代背景自适应中使用双能量窗口“散射”校正方法来检查焦点活动/ sup 131 / I定量的准确性。模式。所有成像均使用Picker Prism 3000XP三头摄像机使用圆形轨道进行。通过SAGE迭代算法进行的重建包括衰减校正。通过在CT扫描上手工绘制轮廓来设置感兴趣的体积。这些扫描与SPECT扫描融合在一起。为了提供必要的校准,在两个不同的旋转半径值下对直径为6 cm的中心球体的椭圆体模进行成像,并且围绕该球体的水不包含背景活性或已知水平。通过考虑旋转半径对分辨率的影响,在不均匀的测试体模中,所有三种方法的精度均优于11%。但是,采用背景和半径自适应转换因子但不使用双能量窗口散射校正的新方法具有最佳的总体准确性:幻像为2.8%,患者为8.4%。此外,它还可以产生平滑的患者SPECT时间活动曲线。由于它具有优于10%的准确度和合理的噪声水平,因此它可能是一种很好的实用技术。

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