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Influence of filter choice on 18F-FDG PET segmentation accuracy determined using generalized estimating equations

机译:过滤器选择对使用广义估计方程确定的18F-FDG PET分割精度的影响

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This study aims to quantify how filter choice affects several fluoro-deoxy-glucose (FDG)-positron emission tomography (PET) segmentation methods and present the use of model fitting via generalized estimating equations (GEEs) to appropriately account for the properties of a common segmentation quality metric (Dice similarity coefficient). Spherical and irregularly shaped 'hot' objects filled with 18F-FDG were placed in a medium with background activity and imaged for 1, 2 and 5 min durations at low and high contrasts. Images were filtered with Gaussian and bilateral filters of 5 and 7 mm full-width half maximum (FWHM), with and without 3 mm FWHM Gaussian pre-smoothing. Four segmentation methods were used: 40% thresholding, adaptive thresholding, k-means clustering and seeded region-growing. Segmentation accuracy was quantified by overlap (using Dice similarity coefficient (DSC)) and distance between surfaces (using symmetric-mean-absolute-surface-distance (SMASD)) of the ground truth and segmented volumes. All segmentation methods showed mean DSC values between 0.71-0.87 and mean SMASD values between 0.72-2.10 mm across filters. The bilateral filter with 3 mm FWHM Gaussian pre-smoothing had mean DSC 0.80 ± 0.17 and mean SMASD 1.17 ± 1.51 mm displaying approximately equal performance to a 5 mm Gaussian filter with mean DSC 0.79 ± 0.18 and mean SMASD 1.27 ± 1.52 mm. Results from models fit using GEE with a binomial distribution and exchangeable correlation structure estimated the correlation between DSC values as 0.118 and 0.290 for spheres and irregular objects, respectively. The GEE approach accounts for several factors specific to the DSC metric that simpler statistical approaches do not, providing more accurate estimations of experimental effects commonly associated with nuclear medicine segmentation studies.
机译:这项研究旨在量化过滤器的选择如何影响几种氟脱氧葡萄糖(FDG)-正电子发射断层扫描(PET)分割方法,并提出通过广义估计方程(GEE)进行模型拟合的方法,以适当地考虑一个共同点的特性。细分质量指标(骰子相似系数)。将充满18F-FDG的球形且形状不规则的“热”物体放置在具有背景活性的介质中,并在低对比度和高对比度下分别成像1分钟,2分钟和5分钟。使用具有和不具有3 mm FWHM高斯预平滑的5和7 mm全角半高(FWHM)的高斯和双边滤波器对图像进行滤波。使用了四种分割方法:40%阈值化,自适应阈值,k均值聚类和种子区域生长。分割精度通过重叠(使用Dice相似系数(DSC))和表面之间的距离(使用对称平均绝对表面距离(SMASD))和地面体积来量化。所有分割方法均显示,整个滤光片的DSC平均值在0.71-0.87之间,SMASD平均值在0.72-2.10 mm之间。具有3 mm FWHM高斯预平滑的双边滤波器的平均DSC为0.80±0.17,平均SMASD为1.17±1.51 mm,显示出与5 mm高斯滤波器的平均DSC为0.79±0.18和SMASD为1.27±1.52 mm大致相同的性能。使用具有二项式分布和可交换相关结构的GEE拟合的模型结果估计,球形和不规则物体的DSC值之间的相关性分别为0.118和0.290。 GEE方法解决了DSC指标特有的几个因素,而简单的统计方法则没有,这提供了通常与核医学分割研究相关的实验效果的更准确估计。

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