Copyright
©The Author(s) 2024.
World J Stem Cells. Jan 26, 2024; 16(1): 33-53
Published online Jan 26, 2024. doi: 10.4252/wjsc.v16.i1.33
Published online Jan 26, 2024. doi: 10.4252/wjsc.v16.i1.33
Table 1 Literature screening
Set | Publications | Screen |
1 | 597 | Topic: (TS=("Stem Cells" OR "Cell, Stem" OR "Cells, Stem" OR "Stem Cell" OR "Progenitor Cells" OR "Cell, Progenitor" OR "Cells, Progenitor" OR "Progenitor Cell" OR "Mother Cells" OR "Cell, Mother" OR "Cells, Mother" OR "Mother Cell" OR "Colony-Forming Unit" OR "Colony Forming Unit" OR "Colony-Forming Units" OR "Colony Forming Units")) AND TS=(“Foot, Diabetic" OR "Diabetic Feet" OR "Feet, Diabetic" OR "Foot Ulcer, Diabetic" OR "Diabetic Foot") |
2 | 547 | Types of publications: (ARTICLES OR REVIEWS) |
3 | 543 | Languages of publications: (ENGLISH) |
Table 2 Top 10 countries/regions with the highest research productivity
No. | Country | Np | Np, % | h-index | Nc | Nc, % | Centrality |
1 | United States | 183 | 33.70 | 46 | 9663 | 44.84 | 0.83 |
2 | China | 152 | 27.99 | 32 | 3828 | 17.76 | 0.15 |
3 | Iran | 35 | 6.45 | 16 | 901 | 4.18 | 0.03 |
4 | England | 33 | 6.08 | 20 | 2449 | 11.36 | 0.23 |
5 | Italy | 28 | 5.16 | 14 | 721 | 3.35 | 0.17 |
6 | India | 25 | 4.60 | 11 | 1249 | 5.80 | 0.02 |
7 | Germany | 24 | 4.42 | 13 | 766 | 3.55 | 0.05 |
8 | South Korea | 16 | 2.95 | 11 | 953 | 4.42 | 0.06 |
9 | Spain | 16 | 2.95 | 8 | 362 | 1.68 | 0.02 |
10 | Ireland | 13 | 2.39 | 8 | 981 | 4.55 | 0.09 |
Table 3 Top 10 most productive affiliations
No. | Institutions | Country | Np | Np/N1, % | h-index | Nc | Nc, % | Centrality |
1 | Shahid Beheshti University Medical Sciences | Iran | 13 | 2.39 | 8 | 241 | 0.01 | 0 |
2 | University of Louisville | United States | 12 | 2.21 | 7 | 160 | 0.01 | 0 |
3 | Army Medical University | China | 12 | 2.21 | 11 | 331 | 0.02 | 0 |
4 | Tongji University | China | 11 | 2.03 | 10 | 499 | 0.02 | 0.02 |
5 | Chinese Academy of Medical Sciences-Peking Union Medical College | China | 11 | 2.03 | 6 | 272 | 0.01 | 0.04 |
6 | Boston University | United States | 11 | 2.03 | 9 | 813 | 0.04 | 0.13 |
7 | University of California System | United States | 10 | 1.84 | 10 | 386 | 0.02 | 0.13 |
8 | Harvard University | United States | 10 | 1.84 | 12 | 909 | 0.04 | 0.06 |
9 | University of Miami | United States | 9 | 1.66 | 8 | 859 | 0.04 | 0 |
10 | Shanghai Jiao Tong University | China | 7 | 1.29 | 4 | 191 | 0.01 | 0.06 |
Table 4 Top 5 authors and cocited authors with the most publications
No. | Ref. | Np | h-index | Institution | Country | Cocited author | Centrality | Cocitation |
1 | Bayat et al[28] | 12 | 7 | Shahid Beheshti University of Medical Sciences | Iran | FALANGA V | 0.36 | 151 |
2 | Amini et al[29] | 12 | 7 | Shahid Beheshti University of Medical Sciences | Iran | BREM H | 0.12 | 87 |
3 | Tomic-Canic et al[30] | 12 | 3 | University of Miami | United States | ARMSTRONG DG | 0.21 | 86 |
4 | Veves et al[31] | 6 | 7 | Harvard Medical School | United States | BOULTON AJM | 0.06 | 70 |
5 | Pastar et al[32] | 4 | 6 | University of Miami | United States | MARSTON WA | 0.10 | 59 |
Table 5 Top 10 journals and cocited journals with the most publications
No. | Journal | Np | IF in 2020 | JCR | Cocited journal | Cocitation, % | IF in 2020 | JCR |
1 | Stem Cell Research & Therapy | 22 | 7.5 | Q1 | Wound Repair and Regeneration | 1297 (27.79) | 2.9 | Q1 |
2 | International Wound Journal | 17 | 3.1 | Q2 | Diabetes Care | 951 (20.38) | 16.2 | Q1 |
3 | Wound Repair and Regeneration | 14 | 2.9 | Q1 | Biomaterials | 681 (14.59) | 14.0 | Q1 |
4 | Advances in Wound Care | 11 | 4.9 | Q1 | Journal of Investigative Dermatology | 668 (14.31) | 6.5 | Q1 |
5 | Diabetes-Metabolism Research and Reviews | 9 | 8.0 | Q2 | PLOS One | 626 (13.41) | 3.7 | Q2 |
6 | International Journal of Molecular Sciences | 9 | 5.6 | Q1 | Plastic and Reconstructive Surgery | 576 (12.34) | 3.6 | Q1 |
7 | Frontiers in Endocrinology | 8 | 5.2 | Q1 | International Wound Journal | 575 (12.32) | 3.1 | Q2 |
8 | Biomedicines | 8 | 4.7 | Q1 | Stem Cell Research & Therapy | 488 (10.46) | 7.5 | Q1 |
9 | Plastic and Reconstructive Surgery | 8 | 3.6 | Q1 | Stem Cells | 462 (9.90) | 5.2 | Q1 |
10 | Diabetes | 7 | 7.7 | Q1 | Advances in Wound Care | 457 (9.79) | 4.9 | Q1 |
Table 6 Paths between citing journals and cited journals
No. | Journal | Cited journal | Path color |
1 | Molecular/Biology/Immunology | Molecular/Biology/Genetics | Orange |
2 | Molecular/Biology/Immunology | Health/Nursing/Medicine | Orange |
3 | Medicine/Medical/Clinical | Molecular/Biology/Genetics | Green |
4 | Medicine/Medical/Clinical | Health/Nursing/Medicine | Green |
Table 7 Top 10 cocited references referring to cocitations
Ref. | Year | Journal | DOI | Cocitations | Centrality |
Armstrong et al[34] | 2017 | New England Journal of Medicine | 10.1056/NEJMra1615439 | 32 | 0.42 |
Lopes et al[35] | 2018 | Stem Cell Research & Therapy | 10.1186/s13287-018-0938-6 | 26 | 0.09 |
Li et al[61] | 2018 | Experimental & Molecular Medicine | 10.1038/s12276-018-0058-5 | 25 | 0.02 |
Everett and Mathioudakis[62] | 2018 | Annals of the New York Academy of Sciences | 10.1111/nyas.13569 | 25 | 0.09 |
Cao et al[63] | 2017 | Journal of Diabetes Research | 10.1155/2017/9328347 | 23 | 0.10 |
Patel et al[64] | 2019 | Biomedicine & Pharmacotherapy | 10.1016/j.biopha.2019.108615 | 22 | 0.04 |
Moon et al[65] | 2019 | Diabetes | 10.2337/db18-0699 | 20 | 0.06 |
Maxson et al[38] | 2012 | Stem Cells Translational Medicine | 10.5966/sctm.2011-0018 | 19 | 0.10 |
Zhang et al[39] | 2017 | Annals of Medicine | 10.1080/07853890.2016.1231932 | 18 | 0.06 |
Li et al[66] | 2020 | About Molecular Therapy—Nucleic Acids | 10.1016/j.omtn.2019.11.034 | 16 | 0.02 |
Table 8 Top 20 keywords based on their frequency
No. | Occurrence frequency | Centrality | Year | Keywords | No. | Occurrence frequency | Centrality | Year | Keywords |
1 | 253 | 0.51 | 2004 | Diabetic foot ulcers | 11 | 47 | 0.04 | 2007 | Expression |
2 | 119 | 0.04 | 2011 | Wound healing | 12 | 44 | 0.12 | 2005 | Chronic wounds |
3 | 98 | 0.05 | 2013 | Mesenchymal stem cells | 13 | 40 | 0.02 | 2013 | Stem cells |
4 | 78 | 0.04 | 2011 | Stem cells | 14 | 38 | 0.08 | 2004 | Diabetes mellitus |
5 | 75 | 0.13 | 2006 | Angiogenesis | 15 | 37 | 0.03 | 2005 | Skin |
6 | 71 | 0.06 | 2005 | Diabetic foot | 16 | 34 | 0.04 | 2012 | Critical limb ischemia |
7 | 57 | 0.06 | 2011 | Therapy | 17 | 33 | 0.03 | 2011 | In vitro |
8 | 55 | 0.09 | 2004 | Management | 18 | 32 | 0.02 | 2011 | Stromal cells |
9 | 51 | 0.12 | 2006 | Endothelial progenitor cells | 19 | 31 | 0.03 | 2014 | Proliferation |
10 | 48 | 0.05 | 2004 | Differentiation | 20 | 30 | 0.02 | 2011 | Foot ulcers |
- Citation: Shi HS, Yuan X, Wu FF, Li XY, Fan WJ, Yang X, Hu XM, Liu GB. Research progress and challenges in stem cell therapy for diabetic foot: Bibliometric analysis and perspectives. World J Stem Cells 2024; 16(1): 33-53
- URL: https://www.wjgnet.com/1948-0210/full/v16/i1/33.htm
- DOI: https://dx.doi.org/10.4252/wjsc.v16.i1.33