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Springer Nature Switzerland
Reference16 articles.
1. Barrett, J., Keat, N.: Artifacts in CT: recognition and avoidance. Radiographics 24, 1679–1691 (2004). https://doi.org/10.1148/rg.246045065
2. Luo, S., Wu, H., et al.: A fast beam hardening correction method incorporated in a filtered back-projection based MAP algorithm. Phys. Med. Biol. 62, 1810–1830 (2017). https://doi.org/10.1088/1361-6560/aa56b5
3. Sarkar, S., Wahi, P., Munshi, P.: An empirical correction method for beam-hardening artifact in Computerized Tomography (CT) images NDT E Int. 102, 104–113 (2019). https://doi.org/10.1016/j.ndteint.2018.11.009
4. Abdurahman, S., Frysch, R., et al.: Beam hardening correction using cone beam consistency conditions. IEEE Trans. Med. Imaging 37, 2266–2277 (2018). https://doi.org/10.1109/TMI.2018.2840343
5. Zhao, W., Li, D., et al.: Multi-materials beam hardening artifacts correction for computed tomography (CT) based on X-ray spectrum estimation. arxiv.org, 2018 (2021). https://arxiv.org/abs/1812.02365. Accessed 3 July 2021
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