Fangcai Li

4.1k total citations
107 papers, 3.1k citations indexed

About

Fangcai Li is a scholar working on Pathology and Forensic Medicine, Surgery and Pharmacology. According to data from OpenAlex, Fangcai Li has authored 107 papers receiving a total of 3.1k indexed citations (citations by other indexed papers that have themselves been cited), including 71 papers in Pathology and Forensic Medicine, 48 papers in Surgery and 26 papers in Pharmacology. Recurrent topics in Fangcai Li's work include Spine and Intervertebral Disc Pathology (57 papers), Musculoskeletal pain and rehabilitation (24 papers) and Spinal Fractures and Fixation Techniques (19 papers). Fangcai Li is often cited by papers focused on Spine and Intervertebral Disc Pathology (57 papers), Musculoskeletal pain and rehabilitation (24 papers) and Spinal Fractures and Fixation Techniques (19 papers). Fangcai Li collaborates with scholars based in China, United States and United Kingdom. Fangcai Li's co-authors include Qixin Chen, Chengzhen Liang, Yiqing Tao, Xiaopeng Zhou, Jingkai Wang, Kaishun Xia, Hao Li, Bin Han, Jie Feng and Zhongli Shi and has published in prestigious journals such as Nature Communications, SHILAP Revista de lepidopterología and ACS Nano.

In The Last Decade

Fangcai Li

102 papers receiving 3.0k citations

Peers — A (Enhanced Table)

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

Name h Career Trend Papers Cites
Fangcai Li China 32 1.9k 995 951 664 396 107 3.1k
Qixin Chen China 30 1.8k 1.0× 1.1k 1.1× 793 0.8× 570 0.9× 425 1.1× 128 2.8k
Inbo Han South Korea 32 1.2k 0.6× 858 0.9× 515 0.5× 700 1.1× 712 1.8× 141 3.3k
Chengzhen Liang China 30 1.2k 0.6× 585 0.6× 562 0.6× 619 0.9× 455 1.1× 84 2.5k
Kotaro Nishida Japan 38 2.1k 1.1× 1.9k 2.0× 1.3k 1.4× 707 1.1× 402 1.0× 147 4.2k
Xiangqian Fang China 24 1.1k 0.6× 1.0k 1.0× 653 0.7× 748 1.1× 420 1.1× 91 2.5k
Marianna A. Tryfonidou Netherlands 32 1.7k 0.9× 879 0.9× 973 1.0× 530 0.8× 342 0.9× 161 2.9k
Xiaopeng Zhou China 29 786 0.4× 443 0.4× 500 0.5× 685 1.0× 219 0.6× 66 2.0k
Rongjin Luo China 27 1.1k 0.6× 357 0.4× 570 0.6× 1.1k 1.6× 402 1.0× 47 2.5k
Cheryle A. Séguin Canada 25 1.4k 0.7× 606 0.6× 1.1k 1.1× 947 1.4× 342 0.9× 66 2.6k
Jane A. Ingram United States 28 1.4k 0.8× 632 0.6× 1.0k 1.1× 388 0.6× 270 0.7× 61 2.1k

Countries citing papers authored by Fangcai Li

Since Specialization
Citations

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

Fields of papers citing papers by Fangcai Li

Since Specialization
Physical SciencesHealth SciencesLife SciencesSocial Sciences

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

Co-authorship network of co-authors of Fangcai Li

This figure shows the co-authorship network connecting the top 25 collaborators of Fangcai Li. A scholar is included among the top collaborators of Fangcai Li 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 Fangcai Li. Fangcai Li 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
2.
Liang, Chengzhen, Feng Cheng, Yuang Zhang, et al.. (2025). Mitochondria-Targeting Polymeric Micelles for Intervertebral Disc Degeneration Alleviation via Coordinated Cascade Energetic Intervention. ACS Nano. 19(48). 41121–41135.
4.
Wang, Qianli, Wei Wang, Amy K. Winter, et al.. (2023). Long-term measles antibody profiles following different vaccine schedules in China, a longitudinal study. Nature Communications. 14(1). 15 indexed citations
5.
Zhao, Tengfei, Yongxiang Zhang, Ao Fang, et al.. (2023). Silicate Nanoplatelets Promotes Neuronal Differentiation of Neural Stem Cells and Restoration of Spinal Cord Injury. Advanced Healthcare Materials. 12(19). e2203051–e2203051. 13 indexed citations
6.
Shu, Jiawei, Chenggui Wang, Yiqing Tao, et al.. (2023). Thermosensitive hydrogel‐based GPR124 delivery strategy for rebuilding blood‐spinal cord barrier. Bioengineering & Translational Medicine. 8(5). e10561–e10561. 6 indexed citations
7.
Zhou, Xiaopeng, Yiqing Tao, Jingkai Wang, et al.. (2023). Nucleus pulposus cell-derived efficient microcarrier for intervertebral disc tissue engineering. Biofabrication. 15(2). 25008–25008. 14 indexed citations
8.
Zhang, Yuang, Xianpeng Huang, Chao Yu, et al.. (2023). Metabolic Glycoengineering: A Promising Strategy to Remodel Microenvironments for Regenerative Therapy. Stem Cells International. 2023. 1–14. 3 indexed citations
9.
Cheng, Feng, Chenggui Wang, Biao Yang, et al.. (2022). Partial reprogramming strategy for intervertebral disc rejuvenation by activating energy switch. Aging Cell. 21(4). e13577–e13577. 29 indexed citations
10.
11.
Yang, Biao, Chengzhen Liang, Di Chen, et al.. (2021). A conductive supramolecular hydrogel creates ideal endogenous niches to promote spinal cord injury repair. Bioactive Materials. 15. 103–119. 80 indexed citations
12.
Wang, Jingkai, Dongdong Li, Chengzhen Liang, et al.. (2020). Scar Tissue‐Targeting Polymer Micelle for Spinal Cord Injury Treatment. Small. 16(8). e1906415–e1906415. 32 indexed citations
13.
Zhou, Xiaopeng, Feng Zhang, Dawei Wang, et al.. (2020). Micro Fragmented Adipose Tissue Promotes the Matrix Synthesis Function of Nucleus Pulposus Cells and Regenerates Degenerated Intervertebral Disc in a Pig Model. Cell Transplantation. 29. 2790870227–2790870227. 6 indexed citations
14.
Zhang, Yuang, Biao Yang, Jingkai Wang, et al.. (2020). Cell Senescence: A Nonnegligible Cell State under Survival Stress in Pathology of Intervertebral Disc Degeneration. Oxidative Medicine and Cellular Longevity. 2020. 1–12. 57 indexed citations
15.
Shu, Jiawei, Feng Cheng, Zhe Gong, et al.. (2020). Transplantation Strategies for Spinal Cord Injury Based on Microenvironment Modulation. Current Stem Cell Research & Therapy. 15(6). 522–530. 11 indexed citations
16.
Zhang, Yujie, Yanyan Wang, Xiaopeng Zhou, et al.. (2020). Osmolarity controls the differentiation of adipose-derived stem cells into nucleus pulposus cells via histone demethylase KDM4B. Molecular and Cellular Biochemistry. 472(1-2). 157–171. 14 indexed citations
17.
Li, Jun, Fangcai Li, Qixin Chen, et al.. (2019). Radiographic evaluation of the impact of cage position on indirect neural decompression in crenel lateral interbody fusion. Zhonghua guke zazhi. 39(4). 216–225. 1 indexed citations
18.
Chen, Gang, et al.. (2019). Fracture and dislocation of lumbar vertebrae with entrapment of small bowel: A case report and literature review. Journal of International Medical Research. 47(2). 1043–1051. 1 indexed citations
19.
Chen, Linwei, Yaosen Wu, Yan Wu, et al.. (2016). The inhibition of EZH2 ameliorates osteoarthritis development through the Wnt/β-catenin pathway. Scientific Reports. 6(1). 29176–29176. 74 indexed citations
20.
Han, Bin, Qixin Chen, Fangcai Li, et al.. (2015). C1-2 segmental fixation without anterior screw for the motion-preservative treatment of type II dens injuries. Zhonghua guke zazhi. 35(5). 542–550. 1 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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