Xueli Chen

2.7k total citations · 1 hit paper
138 papers, 1.9k citations indexed

About

Xueli Chen is a scholar working on Biomedical Engineering, Radiology, Nuclear Medicine and Imaging and Molecular Biology. According to data from OpenAlex, Xueli Chen has authored 138 papers receiving a total of 1.9k indexed citations (citations by other indexed papers that have themselves been cited), including 56 papers in Biomedical Engineering, 38 papers in Radiology, Nuclear Medicine and Imaging and 32 papers in Molecular Biology. Recurrent topics in Xueli Chen's work include Spectroscopy Techniques in Biomedical and Chemical Research (26 papers), Photoacoustic and Ultrasonic Imaging (25 papers) and Optical Imaging and Spectroscopy Techniques (19 papers). Xueli Chen is often cited by papers focused on Spectroscopy Techniques in Biomedical and Chemical Research (26 papers), Photoacoustic and Ultrasonic Imaging (25 papers) and Optical Imaging and Spectroscopy Techniques (19 papers). Xueli Chen collaborates with scholars based in China, United States and Macao. Xueli Chen's co-authors include Yonghua Zhan, Jimin Liang, Xu Cao, Getao Du, Qi Zeng, Yun Zeng, Xiaoxia Cai, Xinyi Xu, Yao‐Yu Wang and Haihong Li and has published in prestigious journals such as Nature Communications, SHILAP Revista de lepidopterología and Applied Physics Letters.

In The Last Decade

Xueli Chen

121 papers receiving 1.9k citations

Hit Papers

Medical Image Segmentation based on U-Net: A Review 2020 2026 2022 2024 2020 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
Xueli Chen China 23 703 432 388 310 227 138 1.9k
Yonghua Zhan China 18 815 1.2× 548 1.3× 265 0.7× 327 1.1× 273 1.2× 76 1.7k
Xiao Zhang China 25 819 1.2× 456 1.1× 375 1.0× 500 1.6× 135 0.6× 99 2.4k
Wei Zheng China 29 976 1.4× 773 1.8× 212 0.5× 474 1.5× 99 0.4× 183 2.9k
Jianfei Liu China 27 491 0.7× 289 0.7× 408 1.1× 735 2.4× 41 0.2× 130 2.1k
Alexander V. Priezzhev Russia 23 908 1.3× 338 0.8× 462 1.2× 134 0.4× 65 0.3× 236 2.1k
Ji Yi United States 32 1.7k 2.5× 195 0.5× 808 2.1× 650 2.1× 387 1.7× 161 3.6k
Junhui Shi China 30 2.6k 3.7× 355 0.8× 985 2.5× 253 0.8× 104 0.5× 118 3.5k
Yonghong He China 33 1.4k 2.0× 446 1.0× 342 0.9× 1.0k 3.4× 52 0.2× 255 3.7k
Xiaoquan Yang China 36 2.3k 3.3× 1.2k 2.8× 471 1.2× 667 2.2× 711 3.1× 107 4.0k
Defu Chen China 24 856 1.2× 246 0.6× 143 0.4× 122 0.4× 69 0.3× 113 1.6k

Countries citing papers authored by Xueli Chen

Since Specialization
Citations

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

Fields of papers citing papers by Xueli Chen

Since Specialization
Physical SciencesHealth SciencesLife SciencesSocial Sciences

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

Co-authorship network of co-authors of Xueli Chen

This figure shows the co-authorship network connecting the top 25 collaborators of Xueli Chen. A scholar is included among the top collaborators of Xueli 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 Xueli Chen. Xueli 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.
Chen, Xueli, et al.. (2025). Monocular meta-imaging camera sees depth. Light Science & Applications. 14(1). 5–5. 1 indexed citations
2.
Xu, Xinyi, et al.. (2025). SSIF-Affinity: Multimodal Deep Learning of Sequence-Structure Features for Precise Protein–Protein Binding Affinity Prediction. Journal of Chemical Information and Modeling. 66(1). 74–87.
3.
Liu, Xuesong, Zhuang Sun, Xueli Chen, et al.. (2025). DFT insights into competitive pathways of gas evolution and char precursor formation in lignin pyrolysis. Chemical Engineering Journal. 526. 171242–171242.
4.
Xie, Hui, Huiting Yang, Pengyuan Zhang, et al.. (2024). Evaluation of the learning state of online video courses based on functional near infrared spectroscopy. Biomedical Optics Express. 15(3). 1486–1486.
5.
Jiang, Mingzhe, et al.. (2024). Physiological Time-Series Fusion With Hybrid Attention for Adaptive Recognition of Pain. IEEE Journal of Biomedical and Health Informatics. 28(11). 6865–6873. 4 indexed citations
6.
Yu, Zhenhua, Yanfeng Hu, J.B. Zhang, et al.. (2024). Variability in soybean yield responses to elevated atmospheric CO2: Insights from non-structural carbohydrate remobilisation during seed filling. Plant Physiology and Biochemistry. 213. 108802–108802. 4 indexed citations
7.
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
8.
Liang, Jun, Wende Hu, Xiangcheng Li, et al.. (2023). One-step direct synthesis of SAPO-36 using 4-pyrrolidinopyridine as an efficient structure-directing agent. Microporous and Mesoporous Materials. 366. 112950–112950.
9.
Xie, Hui, et al.. (2023). Label-free structural and functional volumetric imaging by dual-modality optical-Raman projection tomography. Science Advances. 9(12). eadf3504–eadf3504. 8 indexed citations
10.
Chen, Xueli, Kongyao Chen, Gaojie Li, et al.. (2022). Tetrakaidecahedron-shaped Cu four-core supramolecule as novel high-performance electrode material for lithium-ion batteries. Chemical Communications. 58(12). 2010–2013. 2 indexed citations
11.
He, Pengfei, et al.. (2022). A novel droplet + arc additive manufacturing for aluminum alloy: Method, microstructure and mechanical properties. Additive manufacturing. 61. 103356–103356. 10 indexed citations
12.
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
13.
Xu, Xinyi, et al.. (2020). Biosynthesized Quantum Dots as Improved Biocompatible Tools for Biomedical Applications. Current Medicinal Chemistry. 28(3). 496–513. 6 indexed citations
14.
Cao, Honghao, Xin Cao, Ke Li, et al.. (2019). Adaptively Hybrid $3^{\text{rd}}$ Simplified Spherical Harmonics With Diffusion Equation-Based Multispectral Cerenkov Luminescence Tomography. IEEE Access. 7. 160779–160785. 3 indexed citations
15.
17.
Xu, Hai‐Bing, Xueli Chen, Jianguo Deng, et al.. (2018). Sensitized near infrared emission through supramolecular d → f energy transfer within an ionic Ru(ii)–Er(iii) pair. Dalton Transactions. 47(6). 2073–2078. 9 indexed citations
18.
Cao, Xin, et al.. (2018). Hybrid model based unified scheme for endoscopic Cerenkov and radio-luminescence tomography: Simulation demonstration. Journal of Applied Physics. 123(18). 2 indexed citations
19.
Xu, Hai‐Bing, Jie Wang, Xueli Chen, et al.. (2018). Regulating structural dimensionality and emission colors by organic conjugation between SmIII at a fixed distance. Dalton Transactions. 47(20). 6908–6916. 7 indexed citations
20.
Chen, Xueli, Hai‐Bing Xu, Yuexing Zhang, et al.. (2017). Hierarchical Assembly and Aggregation-Induced Enhanced Emission of a Pair of Isostructural Zn14 Clusters. Inorganic Chemistry. 56(22). 14069–14076. 28 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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