Deep Learning based Spectral CT Imaging
Weiwen Wu, Dianlin Hu, Chuang Niu, Lieza Vanden Broeke, Anthony P.H., Butler, Peng Cao, James Atlas, Alexander Chernoglazov, Varut Vardhanabhuti,, Ge Wang

TL;DR
This paper introduces ULTRA, a deep learning-based spectral CT reconstruction method that leverages multi-scale feature fusion, a novel $L_p^p$-loss, and anisotropic total variation regularization, achieving high-quality images efficiently.
Contribution
The paper presents a novel deep learning framework for spectral CT reconstruction that combines advanced feature fusion, a new loss function, and regularization techniques to improve accuracy and efficiency.
Findings
ULTRA outperforms traditional methods in accuracy.
The method is robust across large-scale datasets.
It reduces computational costs significantly.
Abstract
Spectral computed tomography (CT) has attracted much attention in radiation dose reduction, metal artifacts removal, tissue quantification and material discrimination. The x-ray energy spectrum is divided into several bins, each energy-bin-specific projection has a low signal-noise-ratio (SNR) than the current-integrating counterpart, which makes image reconstruction a unique challenge. Traditional wisdom is to use prior knowledge based iterative methods. However, this kind of methods demands a great computational cost. Inspired by deep learning, here we first develop a deep learning based reconstruction method; i.e., U-net with L_p^p-norm, Total variation, Residual learning, and Anisotropic adaption (ULTRA). Specifically, we emphasize the Various Multi-scale Feature Fusion and Multichannel Filtering Enhancement with a denser connection encoding architecture for residual learning and…
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Taxonomy
Methods*Communicated@Fast*How Do I Communicate to Expedia? · Convolution · Concatenated Skip Connection · Max Pooling · U-Net
