Kejun Kang

931 total citations
80 papers, 714 citations indexed

About

Kejun Kang is a scholar working on Biomedical Engineering, Radiology, Nuclear Medicine and Imaging and Radiation. According to data from OpenAlex, Kejun Kang has authored 80 papers receiving a total of 714 indexed citations (citations by other indexed papers that have themselves been cited), including 52 papers in Biomedical Engineering, 48 papers in Radiology, Nuclear Medicine and Imaging and 39 papers in Radiation. Recurrent topics in Kejun Kang's work include Medical Imaging Techniques and Applications (47 papers), Advanced X-ray and CT Imaging (45 papers) and Advanced X-ray Imaging Techniques (23 papers). Kejun Kang is often cited by papers focused on Medical Imaging Techniques and Applications (47 papers), Advanced X-ray and CT Imaging (45 papers) and Advanced X-ray Imaging Techniques (23 papers). Kejun Kang collaborates with scholars based in China, United States and Switzerland. Kejun Kang's co-authors include Zhiqiang Chen, Zhifeng Huang, Yuxiang Xing, Li Zhang, Li Zhang, Zhentian Wang, Liang Li, Hongkai Yang, Peiping Zhu and Ziran Zhao and has published in prestigious journals such as Applied Physics Letters, Journal of Applied Physics and Physical Review A.

In The Last Decade

Kejun Kang

75 papers receiving 679 citations

Peers — A (Enhanced Table)

Peers by citation overlap · career bar shows stage (early→late) cites · hero ref

Name h Career Trend Papers Cites
Kejun Kang China 15 396 367 366 109 82 80 714
Simone Schleede Germany 13 315 0.8× 517 1.4× 196 0.5× 166 1.5× 181 2.2× 20 799
J. D. Hares United States 16 260 0.7× 197 0.5× 106 0.3× 178 1.6× 319 3.9× 45 824
H. Baghaei United States 17 176 0.4× 690 1.9× 694 1.9× 73 0.7× 167 2.0× 110 954
Per Takman Sweden 10 154 0.4× 397 1.1× 88 0.2× 52 0.5× 50 0.6× 21 514
P. Poropat Italy 17 458 1.2× 593 1.6× 312 0.9× 83 0.8× 337 4.1× 39 972
J. Uribe United States 18 297 0.8× 673 1.8× 837 2.3× 80 0.7× 115 1.4× 74 1.1k
H. Schomberg Germany 10 240 0.6× 96 0.3× 465 1.3× 41 0.4× 17 0.2× 23 622
Guillaume Potdevin Germany 15 334 0.8× 676 1.8× 249 0.7× 72 0.7× 171 2.1× 25 791
P. Sievers Switzerland 15 230 0.6× 245 0.7× 43 0.1× 176 1.6× 218 2.7× 57 546
L. Coséntino Italy 15 103 0.3× 642 1.7× 143 0.4× 179 1.6× 337 4.1× 107 929

Countries citing papers authored by Kejun Kang

Since Specialization
Citations

This map shows the geographic impact of Kejun Kang's research. It shows the number of citations coming from papers published by authors working in each country. You can also color the map by specialization and compare the number of citations received by Kejun Kang with the expected number of citations based on a country's size and research output (numbers larger than one mean the country cites Kejun Kang more than expected).

Fields of papers citing papers by Kejun Kang

Since Specialization
Physical SciencesHealth SciencesLife SciencesSocial Sciences

This network shows the impact of papers produced by Kejun Kang. Nodes represent research fields, and links connect fields that are likely to share authors. Colored nodes show fields that tend to cite the papers produced by Kejun Kang. The network helps show where Kejun Kang may publish in the future.

Co-authorship network of co-authors of Kejun Kang

This figure shows the co-authorship network connecting the top 25 collaborators of Kejun Kang. A scholar is included among the top collaborators of Kejun Kang based on the total number of citations received by their joint publications. Widths of edges represent the number of papers authors have co-authored together. Node borders signify the number of papers an author published with Kejun Kang. Kejun Kang is excluded from the visualization to improve readability, since they are connected to all nodes in the network.

All Works

20 of 20 papers shown
1.
Kang, Kejun, Yixiu Liu, Yaoqi Sun, et al.. (2024). Shrink and Expose: Locate Edge Coarse-to-Fine for Camouflaged Object Detection. IEEE Transactions on Consumer Electronics. 71(1). 785–795.
2.
Yang, Hongkai, et al.. (2018). Improve 3D cone-beam CT reconstruction by slice-wise deep learning. 1–3. 8 indexed citations
3.
Li, Zhang, et al.. (2013). A practical image reconstruction and processing method for symmetrically off-center detector CBCT system. 《核技术》(英文版). 24(4). 40204–40204. 4 indexed citations
4.
Wang, Yingxin, Ziran Zhao, Zhiqiang Chen, & Kejun Kang. (2012). Calibration of a thermal detector for pulse energy measurement of terahertz radiation. Optics Letters. 37(21). 4395–4395. 7 indexed citations
5.
Wang, Zhentian, Zhifeng Huang, Li Zhang, et al.. (2011). Low dose reconstruction algorithm for differential phase contrast imaging. Journal of X-Ray Science and Technology. 19(3). 403–415. 1 indexed citations
6.
Wang, Yingxin, et al.. (2011). Continuous-wave terahertz phase imaging using a far-infrared laser interferometer. Applied Optics. 50(35). 6452–6452. 25 indexed citations
7.
Huang, Zhifeng, Zhiqiang Chen, Li Zhang, et al.. (2010). Large phase-stepping approach for high-resolution hard X-ray grating-based multiple-information imaging. Optics Express. 18(10). 10222–10222. 8 indexed citations
8.
Wang, Zhentian, et al.. (2009). An ART iterative reconstruction algorithm for computed tomography of diffraction enhanced imaging. Chinese Physics C. 33(11). 975–980. 5 indexed citations
9.
Wang, Yingxin, Ziran Zhao, Zhiqiang Chen, et al.. (2008). Suppression of spectral interferences due to water-vapor rotational transitions in terahertz time-domain spectroscopy. Optics Letters. 33(12). 1354–1354. 10 indexed citations
10.
Wang, Xuewu, et al.. (2007). Material Discrimination by High-Energy X-Ray Dual-Energy Imaging. 31(11). 1076–1081. 15 indexed citations
11.
Kang, Kejun. (2007). Overview of Statistical Reconstruction Algorithms. 1 indexed citations
12.
Li, L., Zhiqiang Chen, Li Zhang, Yuxiang Xing, & Kejun Kang. (2007). A cone-beam tomography system with a reduced size planar detector: A backprojection-filtration reconstruction algorithm as well as numerical and practical experiments. Applied Radiation and Isotopes. 65(9). 1041–1047. 14 indexed citations
13.
Li, Liang, Zhiqiang Chen, Kejun Kang, & Li Zhang. (2007). Investigation of exact truncated data image reconstruction algorithm on parallel PI-line segments in fan-beam scans. Tsinghua Science & Technology. 12(3). 337–344. 3 indexed citations
14.
Huang, Zhifeng, et al.. (2006). Strategy of extraction methods and reconstruction algorithms in computed tomography of diffraction enhanced imaging. Physics in Medicine and Biology. 52(1). 1–12. 31 indexed citations
15.
Li, Liang, Zhiqiang Chen, Yuxiang Xing, et al.. (2006). A general exact method for synthesizing parallel-beam projections from cone-beam projections via filtered backprojection. Physics in Medicine and Biology. 51(21). 5643–5654. 12 indexed citations
16.
Li, Liang, Zhiqiang Chen, Li Zhang, & Kejun Kang. (2006). An exact reconstruction algorithm in variable pitch helical cone-beam CT when PI-line exists. Journal of X-Ray Science and Technology. 14(2). 109–118. 8 indexed citations
17.
Li, Liang, Kejun Kang, Zhiqiang Chen, et al.. (2006). The FDK algorithm with an expanded definition domain for cone-beam reconstruction preserving oblique line integrals. Journal of X-Ray Science and Technology. 14(4). 217–233. 4 indexed citations
18.
Huang, Zhifeng, Kejun Kang, & Zheng Li. (2006). Refraction-angle resolution of diffraction enhanced imaging. Physics in Medicine and Biology. 51(12). 3031–3039. 8 indexed citations
19.
Kang, Kejun. (2004). Mean-based fast median filter. Journal of Tsinghua University(Science and Technology). 6 indexed citations
20.
Kang, Kejun. (2004). Review of X-ray Security Inspection Technology. 3 indexed citations

Rankless uses publication and citation data sourced from OpenAlex, an open and comprehensive bibliographic database. While OpenAlex provides broad and valuable coverage of the global research landscape, it—like all bibliographic datasets—has inherent limitations. These include incomplete records, variations in author disambiguation, differences in journal indexing, and delays in data updates. As a result, some metrics and network relationships displayed in Rankless may not fully capture the entirety of a scholar's output or impact.

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