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首页> 外文期刊>Technology in cancer research & treatment. >Sensitivity of Image Features to Noise in Conventional and Respiratory-Gated PET/CT Images of Lung Cancer: Uncorrelated Noise Effects
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Sensitivity of Image Features to Noise in Conventional and Respiratory-Gated PET/CT Images of Lung Cancer: Uncorrelated Noise Effects

机译:常规和呼吸门控的PET / CT肺癌图像特征对噪声的敏感性:不相关的噪声影响

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The effect of noise on image features has yet to be studied in depth. Our objective was to explore how significantly image features are affected by the addition of uncorrelated noise to an image. The signal-to-noise ratio and noise power spectrum were calculated for a positron emission tomography/computed tomography scanner using a Ge-68 phantom. The conventional and respiratory-gated positron emission tomography/computed tomography images of 31 patients with lung cancer were retrospectively examined. Multiple sets of noise images were created for each original image by adding Gaussian noise of varying standard deviation equal to 2.5%, 4.0%, and 6.0% of the maximum intensity for positron emission tomography images and 10, 20, 50, 80, and 120 Hounsfield units for computed tomography images. Image features were extracted from all images, and percentage differences between the original image and the noise image feature values were calculated. These features were then categorized according to the noise sensitivity. The contour-dependent shape descriptors averaged below 4% difference in positron emission tomography and below 13% difference in computed tomography between noise and original images. Gray level size zone matrix features were the most sensitive to uncorrelated noise exhibiting average differences >200% for conventional and respiratory-gated images in computed tomography and 90% in positron emission tomography. Image feature differences increased as the noise level increased for shape, intensity, and gray-level co-occurrence matrix features in positron emission tomography and for gray-level co-occurrence matrix and gray-level size zone matrix features in conventional computed tomography. Investigators should be aware of the noise effects on image features.
机译:噪声对图像特征的影响尚待深入研究。我们的目的是探索图像中添加不相关的噪声对图像特征的影响。对于使用Ge-68体模的正电子发射断层扫描/计算机断层扫描仪,计算了信噪比和噪声功率谱。回顾性检查了31例肺癌患者的常规和呼吸门正电子发射断层扫描/计算机断层扫描图像。通过添加标准偏差分别等于正电子发射断层扫描图像最大强度的2.5%,4.0%和6.0%的高斯噪声以及10、20、50、80和120的高斯噪声,为每个原始图像创建多组噪声图像。 Hounsfield单元,用于计算机断层扫描图像。从所有图像中提取图像特征,并计算原始图像和噪声图像特征值之间的百分比差异。然后根据噪声敏感度对这些功能进行分类。轮廓相关的形状描述符在正电子发射断层扫描中的平均差异低于4%,而在计算机断层扫描中噪声与原始图像之间的差异平均低于13%。灰度大小区域矩阵特征对不相关噪声最敏感,在计算机断层扫描中常规和呼吸门控图像的平均差异> 200%,在正电子发射断层扫描中的平均差异> 200%。在正电子发射断层扫描中,形状,强度和灰度共生矩阵特征以及常规计算机断层扫描中的灰度共现矩阵和灰度大小带矩阵特征,随着噪声水平的提高,图像特征差异也随之增加。研究人员应注意噪声对图像特征的影响。

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