Publiions in 2009 Click paper title to view the full paper using Acrobat Reader Books Ion Beams and Nano-Engineering, Materials Research Society Symposium Proceedings volume 1181 (ISBN 978-1-60511-154-4), D. Ila, P. K. Chu. J. K. N. Lindner, N. Kishimoto, and J. E. E. Baglin (Editors), Materials Research Society, Warrendale, USA (2009).
The invention relates to a biological magnesium alloy with a surface coated with a sodium magnesium fluoride film and a preparation method thereof. The surface of the biological magnesium alloy is coated with the sodium magnesium fluoride film. The preparation
Department of Orthopaedics and Traumatology, The University of Hong Kong - Cited by 9,647 - Biomaterials - Musculoskeletal Tissue Engineering - Infection This "Cited by" count includes citations to the following articles in Scholar. The ones marked * may be different from the article in the profile.
The 2019 Gordon Research Conference on Heterogeneous Materials will be held in Hong Kong, China. Apply today to reserve your spot. Find a Conference Venues North America Bates College Bryant University Colby-Sawyer College Four Points Sheraton Grand
A Study of Corrosion Film Growth on Pure Magnesium and a Creep-Resistant Magnesium Alloy in an Automotive Engine Coolant Shi, Z. / Mallick, P. / McCune, R. / Simko, S. / Naab, F. / Minerals, Metals and Materials Society | 2010
Alabbasi, Alyaa, Liyanaarachchi, S., and Kannan, M.B. (2012) Polylactic acid coating on a biodegradable magnesium alloy: an in vitro degradation study by electrochemical impedance spectroscopy. Thin Solid Films, 520 (23). pp. 6841-6844. B
Hydrothermal growth of hydroxyapatite and ZnO bilayered nanoarrays on magnesium alloy surface with antibacterial activities Mengke PENG 1 , Fenyan HU 1 , Minting DU 1 , Bingjie MAI 2 , Shurong ZHENG 1 , Peng LIU 3 , Changhao WANG 1 ( ), Yashao CHEN 1 ( )
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Magnesium Alloys as Degradable Biomaterials provides a comprehensive review of the biomedical appliions of biodegradable magnesium and its alloys. Magnesium has seen increasing use in orthopedic and cardiovascular appliions over the last decade, particularly for coronary stents and bone implants.The book discusses the basic concepts of biodegradation mechanisms as well as strategies …
The work was supported by Hong Kong Collaborative Research Fund (Ref. CRF 2014/15-C4028-14GF), A study on factors affecting the degradation of magnesium and a magnesium-yttrium alloy for biomedical appliions. Plos One 8, e65603 (2013). [] []
The ultralight, ultracompact and ultrapowerful convertible ASUS Chromebook Flip C436 takes in the details of magnesium-alloy chassis. Products certified by the Federal Communiions Commission and Industry Canada will be distributed in the United States
10.2. Modifiion of biodegradable magnesium alloy implant surfaces 10.3. Biomimetic superhydrophobic coatings on magnesium and its alloys 10.4. Conclusions 11. Surface modifiion by natural biopolymer coatings on magnesium alloys for biomedical 11.1
** P. K. Chu and S. L. Wu, “Biomaterials”, in Handbook of Research on Biomedical Engineering Eduion and Advanced Bioenegineering Learning: Interdisciplinary Concepts, vol. 1 [ISBN 978-1-4666-0122-2 (hardcover) -- ISBN 978-1-4666-0123-9 (ebook
Evaluation of microstructural effects on corrosion behaviour of AZ91D magnesium alloy, (1990). Magnesium and Magnesium Alloys Hong kong, (1974). Atlas of …
Biomedical Appliions Sau Shun Wong1,*, Luen Chow Chan2, Chi Ping Lai2, Wing Yuk Ip1 and Lok Hang Chau2 1Department of Orthopaedics and Traumatology, 5/F Professional Block, The University of Hong Kong, Queen Mary Hospital, Hong Kong
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The antibacterial assays result showed that in Mg4Ag alloy the killing rate exceeds 90% against S. aureus and Staphylococcus epidermidis. These findings suggest that T4-treated Mg2Ag and Mg4Ag alloys show the most promising potentials as antibacterial bioabsorbable materials based on the excellent balance achieved in manipulating mechanical, degradable and cytocompatible and antibacterial
Wu G S, Gong L, Feng K, et al.Rapid degradation of biomedical magnesium induced by zinc ion implantation[J]. Mater. Lett., 2011, 65: 661 [107] Jin W H, Wu G S, Gao A, et al.Hafnium-implanted WE43 magnesium alloy for enhanced corrosion protection and
Hong Kong SAR, China c Guangdong Innovation Team for Biodegradable Magnesium and Medical Implants, Dongguan E-ande Co., Ltd, Dongguan, China Received 18 June 2013; accepted 28 June 2013 Available online 5 Septeer 2013 KEYWORDS
Doctoral thesis is focused on the effect of thermomechanical processing through ECAP on the microstructure, mechanical properties and corrosion properties. The investigation was performed on the extruded magnesium alloys AE21, AE42 and LAE442, because their potential for medical appliions. Microstructure development was characterized in detail by scanning electron microscopy together with
16/8/2020· (4)Shenzhen Key Laboratory for Innovative Technology in Orthopaedic Trauma, The University of Hong Kong Shenzhen Hospital, 1 Haiyuan 1st Road, Futian District, Shenzhen, 518000, China. (5)Center for Biomedical Materials and Tissue Engineering, Academy for Advanced Interdisciplinary Studies, Peking University, Beijing, 100871, China.
Magnesium alloy has a higher strength than the polymer,better toughness than ceramic materials,and the density,elastic modulus and mechanical properties are also closer to the body''s natural bone.More importantly,magnesium alloy can be corrossed and
Another kind of biomedical biomaterial used in this thesis is stainless steel which is used in implants such as stents because of their desirable mechanical properties. However implant materials subject to adverse responses such as inflammation, clotting, activation of cellular immune response, excessive fibrosis, or rejection because of the weak interaction with the protein molecules.
Magnesium Alloys as Degradable Biomaterials provides a comprehensive review of the biomedical appliions of biodegradable magnesium and its alloys. Magnesium has seen increasing use in orthopedic and cardiovascular appliions over the last decade, particularly for …
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