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首页> 外文期刊>Physics in medicine and biology. >Effects of cold sphere walls in PET phantom measurements on the volume reproducing threshold.
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Effects of cold sphere walls in PET phantom measurements on the volume reproducing threshold.

机译:PET体模测量中冷球壁对体积再现阈值的影响。

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摘要

We studied quantitatively the effects of the discontinuity introduced in an otherwise homogeneous background by the cold walls of the standard spherical glass inserts commonly used in phantom measurements for calibration of threshold-based approaches to volumetric evaluation of PET investigations. We concentrated especially on the question of threshold-based volume determination. We computed analytically the convolution of an isotropic Gaussian point-spread function with the insert geometry (hot sphere + cold wall + warm background) and derived the theoretical background dependence of the volume reproducing threshold. This analysis shows a clear wall-related reduction of the optimal threshold with increasing background. The predictions of our theoretical analysis were verified in phantom measurements at background fractions between 0 and 0.29. Defining the background-corrected relative threshold [Formula: see text] (T(abs): absolute volume reproducing threshold, A: measured activity at centre, B: background), we find that for a wall-less sphere T is independent of the background level. In the presence of cold walls, T drops (for not too small spheres, where recovery at the centre approaches 100%) from about 43% at B/A = 0 to about 25% at B/A = 0.5. Applying these thresholds to wall-less spheres leads to sizeable overestimates of the true volumes (43% at B/A = 0.5 for a sphere of 6 ml volume). We conclude that phantom measurements with standard sphere inserts for calibration of optimal thresholding algorithms introduce a systematic bias if performed at finite background levels. The observed background dependence is an artefact of the measurement procedure and does not reflect the conditions present in actual patient investigations.
机译:我们定量研究了不连续背景在不均匀背景中引入的不连续性的影响,这些不连续性是通常用于幻影测量的标准球形玻璃插件的冷壁用于校准基于阈值的PET研究的容积评估方法的。我们特别关注基于阈值的体积确定问题。我们分析了各向同性高斯点扩展函数与插入几何体(热球体+冷壁+温暖背景)的卷积,并得出了体积再现阈值的理论背景依赖性。该分析表明,随着背景的增加,与墙壁相关的最佳阈值明显降低。我们的理论分析的预测在幻像测量中在背景分数介于0和0.29之间进行了验证。定义背景校正的相对阈值[公式:参见文本](T(abs):绝对体积再现阈值,A:中心测得的活度,B:背景)​​,我们发现对于无壁球体T独立于背景水平。在存在冷壁的情况下,T下降(对于不太小的球体,中心的回收率接近100%)从B / A = 0时的约43%降至B / A = 0.5时的约25%。将这些阈值应用于无壁球体会导致对真实体积的高估(对于6 ml体积的球体,B / A = 0.5时为43%)。我们得出的结论是,如果在有限的背景水平下执行,用于标准最佳阈值算法校准的带有标准球体插件的幻像测量会引入系统偏差。观察到的背景依赖性是测量过程的伪影,不能反映实际患者检查中出现的情况。

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