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Precision of quantitative computed tomography texture analysis using image filtering

机译:使用图像滤波的定量计算机断层摄影纹理分析的精度

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摘要

Quantitative computed tomography (CT) texture analyses for images with and without filtration are gaining attention to capture the heterogeneity of tumors. The aim of this study was to investigate how quantitative texture parameters using image filtering vary among different computed tomography (CT) scanners using a phantom developed for radiomics studies.A phantom, consisting of 10 different cartridges with various textures, was scanned under 6 different scanning protocols using four CT scanners from four different vendors. CT texture analyses were performed for both unfiltered images and filtered images (using a Laplacian of Gaussian spatial band-pass filter) featuring fine, medium, and coarse textures. Forty-five regions of interest were placed for each cartridge (x) in a specific scan image set (y), and the average of the texture values (T(x,y)) was calculated. The interquartile range (IQR) of T(x,y) among the 6 scans was calculated for a specific cartridge (IQR(x)), while the IQR of T(x,y) among the 10 cartridges was calculated for a specific scan (IQR(y)), and the median IQR(y) was then calculated for the 6 scans (as the control IQR, IQRc). The median of their quotient (IQR(x)/IQRc) among the 10 cartridges was defined as the variability index (VI).The VI was relatively small for the mean in unfiltered images (0.011) and for standard deviation (0.020–0.044) and entropy (0.040–0.044) in filtered images. Skewness and kurtosis in filtered images featuring medium and coarse textures were relatively variable across different CT scanners, with VIs of 0.638–0.692 and 0.430–0.437, respectively.Various quantitative CT texture parameters are robust and variable among different scanners, and the behavior of these parameters should be taken into consideration.
机译:具有和不具有过滤的图像的定量计算机断层摄影(CT)纹理分析正在引起人们的关注,以捕获肿瘤的异质性。这项研究的目的是研究使用为放射学研究开发的体模在不同的计算机断层扫描(CT)扫描仪上使用图像过滤的定量纹理参数如何变化。在6次不同的扫描下扫描了由10个不同纹理的弹药筒组成的体模协议使用来自四个不同供应商的四个CT扫描仪。针对未过滤图像和已过滤图像(使用高斯空间带通滤波器的拉普拉斯算子)进行了CT纹理分析,这些图像具有精细,中等和粗糙的纹理。在特定的扫描图像集(y)中为每个墨盒(x)放置了45个感兴趣区域,并计算出纹理值的平均值(T(x,y))。针对特定墨盒(IQR(x))计算了6次扫描中T(x,y)的四分位间距(IQR),而针对特定扫描计算了10个墨盒中的T(x,y)的IQR (IQR(y)),然后计算6次扫描的中值IQR(y)(作为对照IQR,IQRc)。将10个盒中的商的中位数(IQR(x)/ IQRc)定义为变异性指数(VI)。对于未过滤图像的平均值(0.011)和标准偏差(0.020–0.044),VI相对较小。和在过滤后的图像中的熵(0.040–0.044)。在不同的CT扫描仪上,具有中等和粗糙纹理的滤波图像的偏斜度和峰度变化相对较大,VI分别为0.638–0.692和0.430–0.437。各种定量CT纹理参数在不同的扫描仪之间均具有鲁棒性和可变性,并且它们的行为参数应予以考虑。

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