Duofang Chen

1.1k total citations · 1 hit paper
42 papers, 908 citations indexed

About

Duofang Chen is a scholar working on Biomedical Engineering, Radiology, Nuclear Medicine and Imaging and Biophysics. According to data from OpenAlex, Duofang Chen has authored 42 papers receiving a total of 908 indexed citations (citations by other indexed papers that have themselves been cited), including 31 papers in Biomedical Engineering, 25 papers in Radiology, Nuclear Medicine and Imaging and 10 papers in Biophysics. Recurrent topics in Duofang Chen's work include Photoacoustic and Ultrasonic Imaging (27 papers), Optical Imaging and Spectroscopy Techniques (24 papers) and Spectroscopy Techniques in Biomedical and Chemical Research (7 papers). Duofang Chen is often cited by papers focused on Photoacoustic and Ultrasonic Imaging (27 papers), Optical Imaging and Spectroscopy Techniques (24 papers) and Spectroscopy Techniques in Biomedical and Chemical Research (7 papers). Duofang Chen collaborates with scholars based in China, United States and Macao. Duofang Chen's co-authors include Baixiao Chen, Qin Guodong, Jimin Liang, Jie Tian, Xiaochao Qu, Huangjian Yi, Shouping Zhu, Xueli Chen, Xiaorui Wang and Xiaowei He and has published in prestigious journals such as SHILAP Revista de lepidopterología, Applied Physics Letters and Journal of Applied Physics.

In The Last Decade

Duofang Chen

38 papers receiving 884 citations

Hit Papers

Angle estimation using ESPRIT in MIMO radar 2008 2026 2014 2020 2008 100 200 300

Peers — A (Enhanced Table)

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

Name h Career Trend Papers Cites
Duofang Chen China 13 468 435 360 299 115 42 908
Alper Güngör Türkiye 11 290 0.6× 236 0.5× 89 0.2× 28 0.1× 24 0.2× 41 726
Haiou Shen United States 17 684 1.5× 548 1.3× 80 0.2× 8 0.0× 124 1.1× 36 960
Robert T. Kester United States 13 464 1.0× 166 0.4× 60 0.2× 6 0.0× 241 2.1× 23 695
Geert Springeling Netherlands 14 586 1.3× 300 0.7× 11 0.0× 15 0.1× 39 0.3× 29 695
Mariappan S. Nadar United States 14 103 0.2× 451 1.0× 10 0.0× 59 0.2× 27 0.2× 60 736
Wenxiang Cong United States 22 1.2k 2.6× 1.3k 2.9× 26 0.1× 8 0.0× 361 3.1× 82 1.5k
Jianying Li China 30 475 1.0× 470 1.1× 2.5k 6.8× 23 0.1× 14 0.1× 174 3.1k
Rosa Scapaticci Italy 20 1.2k 2.7× 203 0.5× 177 0.5× 12 0.0× 11 0.1× 89 1.4k
Erik Gudmundson Sweden 8 52 0.1× 197 0.5× 18 0.1× 42 0.1× 21 0.2× 26 341
Jeffery R. Price United States 12 102 0.2× 60 0.1× 25 0.1× 53 0.2× 26 0.2× 40 400

Countries citing papers authored by Duofang Chen

Since Specialization
Citations

This map shows the geographic impact of Duofang Chen'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 Duofang Chen with the expected number of citations based on a country's size and research output (numbers larger than one mean the country cites Duofang Chen more than expected).

Fields of papers citing papers by Duofang Chen

Since Specialization
Physical SciencesHealth SciencesLife SciencesSocial Sciences

This network shows the impact of papers produced by Duofang Chen. 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 Duofang Chen. The network helps show where Duofang Chen may publish in the future.

Co-authorship network of co-authors of Duofang Chen

This figure shows the co-authorship network connecting the top 25 collaborators of Duofang Chen. A scholar is included among the top collaborators of Duofang Chen 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 Duofang Chen. Duofang Chen 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.
Qin, Guodong, et al.. (2025). Multistatic Target Localization Exploiting Multiple Transmitters With Imperfect Time Synchronization. IEEE Transactions on Aerospace and Electronic Systems. 61(6). 19515–19524.
2.
Zhang, Fan, Jun Li, Duofang Chen, et al.. (2023). Identification lymph node metastasis in esophageal squamous cell carcinoma using whole slide images and a hybrid network of multiple instance and transfer learning. Biomedical Signal Processing and Control. 82. 104577–104577. 5 indexed citations
3.
Chen, Duofang, et al.. (2023). Assessing the performance of fully supervised and weakly supervised learning in breast cancer histopathology. Expert Systems with Applications. 237. 121575–121575. 2 indexed citations
4.
Chen, Duofang, et al.. (2022). Resolution and Contrast Enhancement for Lensless Digital Holographic Microscopy and Its Application in Biomedicine. Photonics. 9(5). 358–358. 13 indexed citations
5.
Wang, Lin, et al.. (2021). Machine learning-based automatic segmentation of region of interest in dynamic optical imaging. AIP Advances. 11(1). 6 indexed citations
6.
Chen, Duofang, Zhaohui Wang, Kai Chen, et al.. (2021). Classification of unlabeled cells using lensless digital holographic images and deep neural networks. Quantitative Imaging in Medicine and Surgery. 11(9). 4137–4148. 8 indexed citations
7.
Chen, Duofang, Shouping Zhu, Yi Huang, Jimin Liang, & Xueli Chen. (2019). Removal of random-valued impulse noise from Cerenkov luminescence images. Medical & Biological Engineering & Computing. 58(1). 131–141. 2 indexed citations
8.
Chen, Duofang, et al.. (2019). Raman tomography with frequency-modulated excitation and spatially-coded detection. 6853. 8–8. 2 indexed citations
9.
Yi, Huangjian, Xu Zhang, Jinye Peng, et al.. (2016). Reconstruction for Limited-Projection Fluorescence Molecular Tomography Based on a Double-Mesh Strategy. BioMed Research International. 2016. 1–11. 9 indexed citations
10.
Chen, Dongmei, Shouping Zhu, Huangjian Yi, et al.. (2013). Cone beam x‐ray luminescence computed tomography: A feasibility study. Medical Physics. 40(3). 31111–31111. 83 indexed citations
11.
Yi, Huangjian, Duofang Chen, Xiaochao Qu, et al.. (2012). Multilevel, hybrid regularization method for reconstruction of fluorescent molecular tomography. Applied Optics. 51(7). 975–975. 17 indexed citations
12.
Hu, Zhenhua, Xueli Chen, Jimin Liang, et al.. (2012). Single photon emission computed tomography-guided Cerenkov luminescence tomography. Journal of Applied Physics. 112(2). 29 indexed citations
13.
Chen, Xueli, Xinbo Gao, Duofang Chen, et al.. (2010). 3D reconstruction of light flux distribution on arbitrary surfaces from 2D multi-photographic images. Optics Express. 18(19). 19876–19876. 49 indexed citations
14.
Chen, Xueli, Xinbo Gao, Xiaochao Qu, et al.. (2010). Qualitative Simulation of Photon Transport in Free Space Based on Monte Carlo Method and Its Parallel Implementation. International Journal of Biomedical Imaging. 2010(1). 4 indexed citations
15.
He, Xiaowei, Jimin Liang, Xiaorui Wang, et al.. (2010). Sparse reconstruction for quantitative bioluminescence tomography based on the incomplete variables truncated conjugate gradient method. Optics Express. 18(24). 24825–24825. 85 indexed citations
16.
Chen, Xueli, Xinbo Gao, Xiaochao Qu, et al.. (2010). Generalized free-space diffuse photon transport model based on the influence analysis of a camera lens diaphragm. Applied Optics. 49(29). 5654–5654. 11 indexed citations
17.
Liu, Junting, Yabin Wang, Xiaochao Qu, et al.. (2010). In vivo quantitative bioluminescence tomography using heterogeneous and homogeneous mouse models. Optics Express. 18(12). 13102–13102. 53 indexed citations
18.
Liu, Junting, Duofang Chen, Fu Wang, et al.. (2010). In Vivo Quantitative Reconstruction Studies of Bioluminescence Tomography: Effects of Peak-Wavelength Shift and Model Deviation. IEEE Transactions on Biomedical Engineering. 57(10). 2579–2582. 10 indexed citations
19.

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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