Junyu Shi

2.6k total citations · 1 hit paper
110 papers, 1.9k citations indexed

About

Junyu Shi is a scholar working on Oral Surgery, Orthodontics and Urology. According to data from OpenAlex, Junyu Shi has authored 110 papers receiving a total of 1.9k indexed citations (citations by other indexed papers that have themselves been cited), including 62 papers in Oral Surgery, 32 papers in Orthodontics and 26 papers in Urology. Recurrent topics in Junyu Shi's work include Dental Implant Techniques and Outcomes (60 papers), Periodontal Regeneration and Treatments (26 papers) and Dental Radiography and Imaging (25 papers). Junyu Shi is often cited by papers focused on Dental Implant Techniques and Outcomes (60 papers), Periodontal Regeneration and Treatments (26 papers) and Dental Radiography and Imaging (25 papers). Junyu Shi collaborates with scholars based in China, United States and Spain. Junyu Shi's co-authors include Hongchang Lai, Shi‐Chong Qiao, Ying‐Xin Gu, Xiaomeng Zhang, Shujiao Qian, Hongchang Lai, Maurizio S. Tonetti, Long‐Fei Zhuang, Chunan Zhang and Jianxu Wei and has published in prestigious journals such as Journal of Clinical Investigation, SHILAP Revista de lepidopterología and ACS Nano.

In The Last Decade

Junyu Shi

104 papers receiving 1.9k citations

Hit Papers

Relevant domains, core outcome sets and measurements for ... 2023 2026 2024 2025 2023 20 40 60

Peers — A (Enhanced Table)

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

Name h Career Trend Papers Cites
Junyu Shi China 25 1.1k 585 459 375 303 110 1.9k
Zhuofan Chen China 25 623 0.6× 443 0.8× 911 2.0× 205 0.5× 302 1.0× 86 1.9k
Tobias Fretwurst Germany 22 838 0.7× 342 0.6× 495 1.1× 243 0.6× 428 1.4× 55 1.6k
Érica Dorigatti de Ávila Brazil 22 654 0.6× 468 0.8× 543 1.2× 179 0.5× 179 0.6× 71 1.5k
Gutemberg Gomes Alves Brazil 27 733 0.7× 297 0.5× 732 1.6× 352 0.9× 304 1.0× 113 2.1k
Fuming He China 24 819 0.7× 382 0.7× 1.1k 2.3× 247 0.7× 538 1.8× 130 1.9k
César Augusto Magalhães Benfatti Brazil 21 519 0.5× 328 0.6× 387 0.8× 202 0.5× 247 0.8× 59 996
Marco Annunziata Italy 27 635 0.6× 284 0.5× 561 1.2× 451 1.2× 238 0.8× 69 1.7k
Xi Wei China 27 1.1k 1.0× 406 0.7× 335 0.7× 204 0.5× 178 0.6× 118 2.3k
Francesco Riccitiello Italy 22 917 0.8× 537 0.9× 192 0.4× 264 0.7× 113 0.4× 64 1.4k
Mohamed‐Nur Abdallah Canada 24 431 0.4× 383 0.7× 684 1.5× 138 0.4× 269 0.9× 48 1.5k

Countries citing papers authored by Junyu Shi

Since Specialization
Citations

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

Fields of papers citing papers by Junyu Shi

Since Specialization
Physical SciencesHealth SciencesLife SciencesSocial Sciences

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

Co-authorship network of co-authors of Junyu Shi

This figure shows the co-authorship network connecting the top 25 collaborators of Junyu Shi. A scholar is included among the top collaborators of Junyu Shi 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 Junyu Shi. Junyu Shi 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.
Wei, Jianxu, Xiaomeng Zhang, Xinxin Ding, et al.. (2025). Potassium-Doped MnO2 Nanoparticles Reprogram Neutrophil Calcium Signaling to Accelerate Healing of Methicillin-Resistant Staphylococcus aureus-Infected Diabetic Wounds. ACS Nano. 19(12). 11807–11822. 3 indexed citations
2.
Wu, Xinyu, et al.. (2024). Accuracy of robotic surgery for dental implant placement: A systematic review and meta‐analysis. Clinical Oral Implants Research. 35(6). 598–608. 17 indexed citations
3.
Jiang, Xue, Jianxu Wei, Xinxin Ding, et al.. (2024). From ROS scavenging to boosted osseointegration: cerium-containing mesoporous bioactive glass nanoparticles functionalized implants in diabetes. Journal of Nanobiotechnology. 22(1). 639–639. 19 indexed citations
5.
Zhan, Fangke, et al.. (2024). Biodegradable Polybutyrolactam Microfiber Membrane as a Highly Efficient Air Filter for PM2.5 Particle Filtration. ACS Applied Polymer Materials. 6(2). 1215–1223. 4 indexed citations
6.
Li, Yuan, Xinyu Wu, Ke Deng, et al.. (2024). Enhanced control of periodontitis by an artificial intelligence‐enabled multimodal‐sensing toothbrush and targeted mHealth micromessages: A randomized trial. Journal Of Clinical Periodontology. 51(12). 1632–1643. 9 indexed citations
7.
Zhang, Xiaomeng, Ruiying Chen, Xiao Zhang, et al.. (2024). Diet‐related diseases mediate the effect of masticatory function on premature death in older adults. Journal of Periodontal Research. 60(5). 466–472. 7 indexed citations
8.
Wang, Lin, et al.. (2023). Multi-effect anthraquinone-based polyimide enclosed SnO2/reduced graphene oxide composite as high-performance anode for lithium-ion battery. Frontiers of Chemical Science and Engineering. 17(9). 1231–1243. 4 indexed citations
9.
Tonetti, Maurizio S., Mariano Sanz, Gustavo Ávila‐Ortiz, et al.. (2023). Relevant domains, core outcome sets and measurements for implant dentistry clinical trials: The Implant Dentistry Core Outcome Set and Measurement (ID‐COSM) international consensus report. Journal Of Clinical Periodontology. 50(S25). 5–21. 60 indexed citations breakdown →
10.
Tonetti, Maurizio S., Mariano Sanz, Gustavo Ávila‐Ortiz, et al.. (2023). Relevant domains, core outcome sets and measurements for implant dentistry clinical trials: The Implant Dentistry Core Outcome Set and Measurement (ID‐COSM) international consensus report. Clinical Oral Implants Research. 34(S25). 4–21. 45 indexed citations
11.
Zhang, Qi, et al.. (2023). Synthesis and Biomedical Applications of DNA Hydrogel. Current Drug Metabolism. 24(5). 327–337. 5 indexed citations
13.
Mo, Jia‐Ji, et al.. (2022). Long‐term clinical outcomes of short implant (6mm) in relation to Implant Disease Risk Assessment (IDRA). Clinical Oral Implants Research. 33(7). 713–722. 8 indexed citations
14.
Ding, Xinxin, Junyu Shi, Jianxu Wei, et al.. (2021). A biopolymer hydrogel electrostatically reinforced by amino-functionalized bioactive glass for accelerated bone regeneration. Science Advances. 7(50). eabj7857–eabj7857. 55 indexed citations
15.
Wei, Jianxu, Xiaomeng Zhang, Yuan Li, et al.. (2021). Novel application of bergapten and quercetin with anti-bacterial, osteogenesis-potentiating, and anti-inflammation tri-effects. Acta Biochimica et Biophysica Sinica. 53(6). 683–696. 12 indexed citations
16.
Shi, Junyu, et al.. (2020). The influence of educational level in peri-menopause syndrome and quality of life among Chinese women. Gynecological Endocrinology. 36(11). 991–996. 13 indexed citations
18.
Shi, Junyu, et al.. (2019). Evaluation of three-dimensional contraction of the volume of grafts after staged augmentation of the sinus floor, and an analysis of influential factors. British Journal of Oral and Maxillofacial Surgery. 57(4). 323–329. 9 indexed citations
20.
Qiao, Shi‐Chong, et al.. (2015). Effects of a Hydroxyapatite-Coated Nanotube Surface of Titanium on MC3T3-E1 Cells. Implant Dentistry. Publish Ahead of Print(2). 204–10. 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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