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Articles

Evaluation of mechanical and electrochemical properties of laser surface modified Ti–6Al–4V for biomedical applications: in vitro study

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Pages 209-218 | Published online: 19 Jul 2013

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S.P. Leo Kumar & D. Avinash. (2020) Review on effect of Ti-alloy processing techniques on surface-integrity for biomedical application. Materials and Manufacturing Processes 35:8, pages 869-892.
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M E Khosroshahi & L Ghazanfari. (2011) Amino surface modification of Fe3O4/SiO2 nanoparticles for bioengineering applications. Surface Engineering 27:8, pages 508-573.
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Haoyu Li, Xin Wang, Junjie Zhang, Binyu Wang, Marina Breisch, Alexander Hartmaier, Igor Rostotskyi, Vyacheslav Voznyy & Yu Liu. (2022) Experimental investigation of laser surface texturing and related biocompatibility of pure titanium. The International Journal of Advanced Manufacturing Technology 119:9-10, pages 5993-6005.
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Mahboobeh Mahmoodi, Mohammad Hossein Hydari, Leila Mahmoodi, Lida Gazanfari & Marjan Mirhaj. (2021) Electrophoretic deposition of graphene oxide reinforced hydroxyapatite on the tantalum substrate for bone implant applications: In vitro corrosion and bio-tribological behavior. Surface and Coatings Technology 424, pages 127642.
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Ishwer Shivakoti, Golam Kibria, Robert Cep, Bal Bahadur Pradhan & Ashis Sharma. (2021) Laser Surface Texturing for Biomedical Applications: A Review. Coatings 11:2, pages 124.
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Leonardo Marasca Antonini, Adilar Gonçalves dos Santos Junior, Gwendolen Reilly & Célia de Fraga Malfatti. (2018) Human Embryonic Stem Cell-Derived Mesenchymal Progenitor (hESCs-MP) Growth on Nanostructured Ti6Al4V Surfaces. Materials Research 21:5.
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Fatemeh Heidari, Mehdi Razavi, Mohammad E. Bahrololoom, Mostafa Yazdimamaghani, Mohammadreza Tahriri, Hari Kotturi & Lobat Tayebi. (2018) Evaluation of the mechanical properties, in vitro biodegradability and cytocompatibility of natural chitosan/hydroxyapatite/nano-Fe3O4 composite. Ceramics International 44:1, pages 275-281.
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M.E. Khosroshahi, F. Anoosheh pour, M. Hadavi & M. Mahmoodi. (2010) In situ monitoring the pulse CO2 laser interaction with 316-L stainless steel using acoustical signals and plasma analysis. Applied Surface Science 256:24, pages 7421-7427.
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