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Cytotoxic effect of galvanically coupled magnesium-titanium particles
Jua Kim, Jeremy L. Gilbert
Department of Biomedical & Chemical Engineering
Research output
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Contribution to journal
›
Article
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peer-review
15
Scopus citations
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Dive into the research topics of 'Cytotoxic effect of galvanically coupled magnesium-titanium particles'. Together they form a unique fingerprint.
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Engineering & Materials Science
Magnesium
100%
Titanium
91%
Cells
19%
Osteoblasts
7%
Cytotoxicity
7%
Oncology
6%
Cell culture
6%
Sputtering
6%
Biomaterials
6%
Toxicity
5%
Sodium hydroxide
5%
Tumors
5%
Oxygen
4%
Corrosion
3%
Metals
3%
Medicine & Life Sciences
Titanium
98%
Magnesium
96%
Neoplasms
6%
Corrosion
6%
Biocompatible Materials
5%
Infection Control
5%
Phagocytosis
4%
Osteoblasts
4%
Metals
4%
Cultured Cells
4%
Cell Culture Techniques
3%
Oxygen
3%
Therapeutics
3%
Infections
2%
Chemical Compounds
Magnesium Atom
78%
pH Value
16%
Electrochemical Reaction
16%
Reduction
10%
Sputtering
8%
Biomaterial
6%
Antibacterial
6%
Corrosion
5%
Surface
5%
Application
4%
Dioxygen
3%
Metal
3%