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Ring artifacts suppression for X-ray CT images by fusion of dual-domain images based on improved UNet

  • Dalong Tan
  • , Fanyong Meng
  • , Yapeng Wu
  • , Chao Hai
  • , Min Yang*
  • *Corresponding author for this work
  • Beihang University
  • CAS - Institute of Process Engineering

Research output: Contribution to journalArticlepeer-review

Abstract

The ring artifact is a typical artifact in X-ray Computed Tomography (CT) images, the existence of which can reduce the image's quality, change the structure and details and affects the interpretation of image information. This paper conducts research from two aspects: tomographic images and sinograms, and designs a dual-domain artifact suppression network. By introducing the Inception module and the residual module, the network's ability to extract features is improved, and the gradient diffusion is suppressed. By customizing the loss function, the network's recognition of ring artifacts is improved and the network's convergence is accelerated. Finally, the outputs of the dual-domain are fused based on the Nonsubsampled Contourlet Transform (NSCT) fusion theory to improve the quality of the image. In addition, three experiments of CT scanning are designed based on microfocus cone-beam CT system to verify the effectiveness. The model is trained and tested using real datasets. Peak Signal-to-Noise Ratio (PSNR), Structural Similarity (SSIM), and Mean Squared Error (MSE) are employed as evaluation indicators of image quality. Finally, the proposed method is compared with typical algorithms for artifact suppression. The experimental results show that the method effectively protects the structure information in CT images while suppressing ring artifacts to the greatest extent. The PSNR, SSIM, and MSE of the processed images can respectively reach 36.167 dB, 0.9847 and 6.87 × e-4.

Original languageEnglish
Article number109335
JournalComputers and Electrical Engineering
Volume118
DOIs
StatePublished - Aug 2024

Keywords

  • Image Fusion
  • Loss function
  • Ring artifacts
  • UNet
  • X-ray CT

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