Bo Ren

1.3k total citations · 2 hit papers
27 papers, 1.0k citations indexed

About

Bo Ren is a scholar working on Surgery, Orthopedics and Sports Medicine and Rheumatology. According to data from OpenAlex, Bo Ren has authored 27 papers receiving a total of 1.0k indexed citations (citations by other indexed papers that have themselves been cited), including 9 papers in Surgery, 7 papers in Orthopedics and Sports Medicine and 6 papers in Rheumatology. Recurrent topics in Bo Ren's work include Knee injuries and reconstruction techniques (7 papers), Sports injuries and prevention (6 papers) and Osteoarthritis Treatment and Mechanisms (5 papers). Bo Ren is often cited by papers focused on Knee injuries and reconstruction techniques (7 papers), Sports injuries and prevention (6 papers) and Osteoarthritis Treatment and Mechanisms (5 papers). Bo Ren collaborates with scholars based in China, United States and Australia. Bo Ren's co-authors include Yingfang Ao, Xiaoqing Hu, Weili Shi, Xiaoning Duan, Jiying Zhang, Jin Cheng, Xin Fu, Chenxi Li, Haifeng Chen and Muyang Sun and has published in prestigious journals such as Advanced Materials, Nature Communications and Scientific Reports.

In The Last Decade

Bo Ren

24 papers receiving 1.0k citations

Hit Papers

Structurally and Functionally Optimized Silk‐Fibroin–Gela... 2017 2026 2020 2023 2017 2020 100 200 300 400

Peers — A (Enhanced Table)

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

Name h Career Trend Papers Cites
Bo Ren China 13 339 301 272 266 241 27 1.0k
Tom Hodgkinson United Kingdom 19 356 1.1× 286 1.0× 328 1.2× 257 1.0× 232 1.0× 36 1.2k
Yejun Hu China 17 311 0.9× 257 0.9× 309 1.1× 431 1.6× 124 0.5× 25 1.1k
Elena López‐Ruiz Spain 24 459 1.4× 220 0.7× 320 1.2× 298 1.1× 409 1.7× 52 1.4k
Gang Feng China 22 439 1.3× 238 0.8× 230 0.8× 415 1.6× 293 1.2× 51 1.4k
Zhenxing Shao China 16 426 1.3× 366 1.2× 469 1.7× 426 1.6× 208 0.9× 47 1.2k
You‐Rong Chen China 15 443 1.3× 250 0.8× 292 1.1× 233 0.9× 127 0.5× 25 893
Fuzhen Yuan China 15 340 1.0× 241 0.8× 202 0.7× 172 0.6× 120 0.5× 37 806
Tianpeng Xu China 12 480 1.4× 127 0.4× 211 0.8× 212 0.8× 198 0.8× 24 926
Maumita Bhattacharjee United States 14 336 1.0× 277 0.9× 387 1.4× 227 0.9× 164 0.7× 18 900
Dana L. Nettles United States 20 466 1.4× 458 1.5× 809 3.0× 414 1.6× 306 1.3× 28 1.9k

Countries citing papers authored by Bo Ren

Since Specialization
Citations

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

Fields of papers citing papers by Bo Ren

Since Specialization
Physical SciencesHealth SciencesLife SciencesSocial Sciences

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

Co-authorship network of co-authors of Bo Ren

This figure shows the co-authorship network connecting the top 25 collaborators of Bo Ren. A scholar is included among the top collaborators of Bo Ren 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 Bo Ren. Bo Ren 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
3.
Li, Biao, et al.. (2024). Thermal performance of a novel composite phase change material for solar-assisted air source heat pump packed bed thermal energy storage application. Applied Thermal Engineering. 258. 124582–124582. 11 indexed citations
4.
Chen, Juan, et al.. (2023). FAS-mediated circRNA-miRNA-mRNA Crosstalk Network Regulates Immune Cell Infiltration in Cerebral Infarction. Journal of Molecular Neuroscience. 73(2-3). 117–128. 3 indexed citations
5.
Ren, Bo, et al.. (2021). Forensic age estimation based on magnetic resonance imaging of the proximal humeral epiphysis in Chinese living individuals. International Journal of Legal Medicine. 135(6). 2437–2446. 8 indexed citations
6.
Yu, Yuetian, Cheng Zhu, Yucai Hong, et al.. (2021). Effectiveness of anisodamine for the treatment of critically ill patients with septic shock: a multicentre randomized controlled trial. Critical Care. 25(1). 349–349. 20 indexed citations
7.
Zhang, Liang, et al.. (2020). Arthroscopic tri-pulley Technology reduction and internal fixation of pediatric Tibial Eminence fracture: a retrospective analysis. BMC Musculoskeletal Disorders. 21(1). 408–408. 4 indexed citations
8.
Yu, Hui‐Lei, Jin Cheng, Weili Shi, et al.. (2020). Bone marrow mesenchymal stem cell-derived exosomes promote tendon regeneration by facilitating the proliferation and migration of endogenous tendon stem/progenitor cells. Acta Biomaterialia. 106. 328–341. 163 indexed citations breakdown →
9.
Zhang, Liang, et al.. (2020). Flag sign: a case report of an unusual magnetic resonance imaging finding of a free lateral meniscal fragment. Journal of International Medical Research. 48(12). 1220780145–1220780145.
10.
Shi, Yuanyuan, Xiaoqing Hu, Jin Cheng, et al.. (2019). A small molecule promotes cartilage extracellular matrix generation and inhibits osteoarthritis development. Nature Communications. 10(1). 1914–1914. 171 indexed citations
11.
Ren, Bo, Xian Zhang, Liang Zhang, et al.. (2019). Isolated trochleoplasty for recurrent patellar dislocation has lower outcome and higher residual instability compared with combined MPFL and trochleoplasty: a systematic review. Archives of Orthopaedic and Trauma Surgery. 139(11). 1617–1624. 36 indexed citations
12.
Zhang, Mingyu, et al.. (2019). Effect of Autologous Platelet‐Rich Plasma and Gelatin Sponge for Tendon‐to‐Bone Healing After Rabbit Anterior Cruciate Ligament Reconstruction. Arthroscopy The Journal of Arthroscopic and Related Surgery. 35(5). 1486–1497. 41 indexed citations
13.
Li, Chenxi, Xiaoqing Hu, Qingyang Meng, et al.. (2017). The potential of using semitendinosus tendon as autograft in rabbit meniscus reconstruction. Scientific Reports. 7(1). 7033–7033. 21 indexed citations
15.
Lin, Yan, Cheng Xu, Jiude Mao, et al.. (2016). Effects of different dietary n-6/n-3 polyunsaturated fatty acid ratios on boar reproduction. Lipids in Health and Disease. 15(1). 31–31. 26 indexed citations
16.
Cheng, Jin, Xiaoqing Hu, Linghui Dai, et al.. (2016). Inhibition of transforming growth factor β-activated kinase 1 prevents inflammation-related cartilage degradation in osteoarthritis. Scientific Reports. 6(1). 34497–34497. 24 indexed citations
17.
Ren, Bo, Xu Cheng, De Wu, et al.. (2015). Effect of different amino acid patterns on semen quality of boars fed with low-protein diets. Animal Reproduction Science. 161. 96–103. 17 indexed citations
18.
Ren, Bo, et al.. (2015). The application of porous tantalum cylinder to the repair of comminuted bone defects: a study of rabbit firearm injuries.. PubMed. 8(4). 5055–64. 8 indexed citations
19.
Ren, Bo, et al.. (2007). Morphological observation of the development of Aspiorhynchus laticeps embryo and larva. Journal of Dalian Fisheries University. 22(6). 397–402. 1 indexed citations
20.
Ren, Bo. (2004). The Study on the biology of Triplophysa (Hedinichthgs) yarkandensis (Day)in Akesu River. 2 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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