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March 4, 2024Journal of Imaging11 citationsOpen Access

Elevating Chest X-ray Image Super-Resolution with Residual Network Enhancement

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AKAnudari KhishigdelgerASAhmed SalemHKHyun‐Soo Kang

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Abstract

Chest X-ray (CXR) imaging plays a pivotal role in diagnosing various pulmonary diseases, which account for a significant portion of the global mortality rate, as recognized by the World Health Organization (WHO). Medical practitioners routinely depend on CXR images to identify anomalies and make critical clinical decisions. Dramatic improvements in super-resolution (SR) have been achieved by applying deep learning techniques. However, some SR methods are very difficult to utilize due to their low-resolution inputs and features containing abundant low-frequency information, similar to the case of X-ray image super-resolution. In this paper, we introduce an advanced deep learning-based SR approach that incorporates the innovative residual-in-residual (RIR) structure to augment the diagnostic potential of CXR imaging. Specifically, we propose forming a light network consisting of residual groups built by residual blocks, with multiple skip connections to facilitate the efficient bypassing of abundant low-frequency information through multiple skip connections. This approach allows the main network to concentrate on learning high-frequency information. In addition, we adopted the dense feature fusion within residual groups and designed high parallel residual blocks for better feature extraction. Our proposed methods exhibit superior performance compared to existing state-of-the-art (SOTA) SR methods, delivering enhanced accuracy and notable visual improvements, as evidenced by our results.

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Cite This Study

Khishigdelger et al. (2024) studied this question.

synapsesocial.com/papers/68e75c9bb6db6435876d3a85https://doi.org/10.3390/jimaging10030064
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Enhancing Chest X-ray Image Super-Resolution through Residual Group and Channel Attention2024
  2. 2GAN-Based Low-Dose Chest X-Ray Super-Resolution with Hybrid Channel-Spatial Attention and Pooling Layer Removal2026
  3. 3Medical X-ray images enhancement based on super resolution convolution neural network2024 · 1 citations
  4. 4Enhancing lung diseases recognition through CNN-RNN methodologies2026
  5. 5Enhanced collapsible linear blocks for arbitrary sized image super-resolution2024