High surface energy enhances cell response to titanium substrate microstructure

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Abstract
Cite
Zhao, G., et al. “High Surface Energy Enhances Cell Response to Titanium Substrate Microstructure”. Journal of Biomedical Materials Research Part A, vol. 74A, no. 1, 2005, pp. 49-58, https://doi.org/10.1002/jbm.a.30320.
Zhao, G., Schwartz, Z., Wieland, M., Rupp, F., Geis‐Gerstorfer, J., Cochran, D. L., & Boyan, B. D. (2005). High surface energy enhances cell response to titanium substrate microstructure. Journal of Biomedical Materials Research Part A, 74A(1), 49-58. https://doi.org/10.1002/jbm.a.30320
Zhao, G., Z. Schwartz, M. Wieland, F. Rupp, J. Geis‐Gerstorfer, D. L. Cochran, and B. D. Boyan. “High Surface Energy Enhances Cell Response to Titanium Substrate Microstructure”. Journal of Biomedical Materials Research Part A 74A, no. 1 (2005): 49-58. https://doi.org/10.1002/jbm.a.30320.
Zhao G, Schwartz Z, Wieland M, Rupp F, Geis‐Gerstorfer J, Cochran DL, et al. High surface energy enhances cell response to titanium substrate microstructure. Journal of Biomedical Materials Research Part A. 2005;74A(1):49-58.
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Citations Analysis
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Technology: Electrical engineering. Electronics. Nuclear engineering: Materials of engineering and construction. Mechanics of materials298
Technology: Chemical technology: Biotechnology233
Medicine: Medicine (General): Medical technology221
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Medicine: Dentistry152
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Technology: Mechanical engineering and machinery12
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Medicine: Surgery: Orthopedic surgery2
Medicine: Internal medicine: Neurosciences. Biological psychiatry. Neuropsychiatry2
Technology2
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Medicine: Internal medicine: Specialties of internal medicine: Diseases of the blood and blood-forming organs1
Science: Human anatomy1
Medicine: Internal medicine: Specialties of internal medicine: Immunologic diseases. Allergy1
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Science: Chemistry: Inorganic chemistry1
Science: Physics: Nuclear and particle physics. Atomic energy. Radioactivity1
The category Technology: Electrical engineering. Electronics. Nuclear engineering: Materials of engineering and construction. Mechanics of materials 298 is the most commonly referenced area in studies that cite this article. The first research to cite this article was titled Knowledge Discovery Applications in High-Throughput Polymer Characterization and was published in 2005. The most recent citation comes from a 2024 study titled Assessment of a novel electrochemically deposited smart bioactive trabecular coating (SBTC®): a randomized controlled clinical trial. This article reached its peak citation in 2018, with 54 citations. It has been cited in 244 different journals, 16% of which are open access. Among related journals, the Clinical Oral Implants Research cited this research the most, with 50 citations. The chart below illustrates the annual citation trends for this article.
Citations used this article by year