Items where Subject is "40 ENGINEERING > 4003 Biomedical engineering > 400302 Biomaterials"

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Article

Romo-Rico, Jesus, Bright, Richard, Krishna, Smriti Murali, Vasilev, Krasimir, Golledge, Jonathan, and Jacob, Mohan V. (2023) Antimicrobial graphene-based coatings for biomedical implant applications. Carbon Trends, 12. 100282.

Sun, Junyuan, Yang, Fei, Wang, Lianlei, Yu, Haichao, Yang, Zhijie, Wei, Jingjing, Vasilev, Krasimir, Zhang, Xuesong, Liu, Xinyu, and Zhao, Yunpeng (2023) Delivery of coenzyme Q10 loaded micelle targets mitochondrial ROS and enhances efficiency of mesenchymal stem cell therapy in intervertebral disc degeneration. Bioactive Materials, 23 (May 2023). pp. 247-260.

Koushik, Tejas M., Miller, Catherine M., and Antunes, Elsa (2023) Optimisation of two-step sintering parameters to produce bioactive and dense zirconia-hydroxyapatite composite ceramics. Journal of the European Ceramic Society, 43 (5). pp. 2222-2233.

Hartl, Hugo, Li, Wenshao, Michl, Thomas Danny, Anangi, Raveendra, Speight, Robert, Vasilev, Krasimir, Ostrikov, Kostya Ken, and MacLeod, Jennifer (2022) Antimicrobial adhesive films by plasma-enabled polymerisation of m-cresol. Scientific Reports, 12. 7560.

Al-Jumaili, Ahmed, Zafar, Muhammad Adeel, Bazaka, Kateryna, Weerasinghe, Janith, and Jacob, Mohan V. (2022) Bactericidal vertically aligned graphene networks derived from renewable precursor. Carbon Trends, 7. 100157.

Uroro, Evelyn Osehontue, Bright, Richard, Dabare, Panthihage Ruvini L., Bera, Debkumar, Quek, Jing Yang, Goswami, Nirmal, and Vasilev, Krasimir (2022) Biocompatible Polycationic Silver Nanocluster-Impregnated PLGA Nanocomposites with Potent Antimicrobial Activity. ChemNanoMat, 8 (11). e202200349.

Qi Lim, Ping, Lim, Sue Huey, Sherilyn, Maria, Fernandez-Medina, Tulio, Ivanovski, Sašo, and Hosseinpour, Sepanta (2022) A Clinical Risk Assessment of a 3D-Printed Patient-Specific Scaffold by Failure Modes and Effects Analysis. Materials, 15 (15). 5442.

Wang, Xue Mei, Lu, Guan Jie, Cui, Lan Yue, Liu, Cheng Bao, Kannan, M. Bobby, Zhang, Fen, Li, Shuo Qi, Zou, Yu Hong, and Zeng, Rong Chang (2022) In vitro degradation and biocompatibility of vitamin C loaded Ca-P coating on a magnesium alloy for bioimplant applications. Corrosion Communications, 6. pp. 16-28.

Cheeseman, Samuel, Elbourne, Aaron, Gangadoo, Sheeana, Shaw, Z.L., Bryant, Saffron J., Syed, Nitu, Dickey, Michael D., Higgins, Michael J., Vasilev, Krasimir, McConville, Chris F., Christofferson, Andrew J., Crawford, Russell J., Daeneke, Torben, Chapman, James, and Truong, Vi Khanh (2022) Interactions between Liquid Metal Droplets and Bacterial, Fungal, and Mammalian Cells. Advanced Materials Interfaces, 9 (7). 2102113.

Jones, Claire F., Quarrington, Ryan D., Tsangari, Helen, Starczak, Yolandi, Mulaibrahimovic, Adnan, Burzava, Anouck L.S., Christou, Chris, Barker, Alex J., Morel, James, Bright, Richard, Barker, Dan, Brown, Toby, Vasilev, Krasimir, and Anderson, Paul H. (2022) A Novel Nanostructured Surface on Titanium Implants Increases Osseointegration in a Sheep Model. Clinical orthopaedics and related research, 480 (11). pp. 2232-2250.

Romo-Rico, Jesus, Krishna, Smriti Murali, Golledge, Jonathan, Hayles, Andrew, Vasilev, Krasimir, and Jacob, Mohan V. (2022) Plasma polymers from oregano secondary metabolites: Antibacterial and biocompatible plant-based polymers. Plasma Processes and Polymers, 19 (7). 2100220.

Romo-Rico, Jesus, Krishna, Smriti Murali, Bazaka, Kateryna, Golledge, Jonathan, and Jacob, Mohan V. (2022) Potential of plant secondary metabolite-based polymers to enhance wound healing. Acta Biomaterialia, 147. pp. 34-49.

Liu, Ziqian, Ramakrishna, Seeram, Ahmed, Ifty, Rudd, Chris, and Liu, Xiaoling (2022) Rheological, Surface Tension and Conductivity Insights on the Electrospinnability of Poly(lactic-co-glycolic acid)-hyaluronic Acid Solutions and Their Correlations with the Nanofiber Morphological Characteristics. Polymers, 14 (20). 4411.

Wang, Yunqi, Fu, Jiapeng, Liu, Jinsong, Parsons, Andrew, Ahmed, Ifty, Rudd, Chris, and Sharmin, Nusrat (2021) Processing and characterization of phosphate glass fiber/polylactic acid commingled yarn composites for commercial production. Journal of Biomedical Materials Research Part B: Applied Biomaterials, 109 (7). pp. 990-1004.

Zhu, Chenkai, Liu, Jinsong, Zhang, Yan, Zu, Qun, Rudd, Chris, and Liu, Xiaoling (2021) Time-dependent degradation behaviour of phosphate glass fibre reinforced composites with different fibre architecture. Mechanics of Time-Dependent Materials, 25. pp. 663-678.

Zhang, Zhao-Qi, Wang, Li, Zeng, Mei-Qi, Zeng, Rong-Chang, Kannan, M. Bobby, Lin, Cun-Guo, and Zheng, Yu-Feng (2020) Biodegradation behavior of micro-arc oxidation coating on magnesium alloy-from a protein perspective. Bioactive Materials, 5 (2). pp. 398-409.

Bazaka, Olha, Bazaka, Kateryna, Truong, Vi Khanh, Levchenko, Igor, Jacob, Mohan V., Estrin, Yuri, Lapovok, Rimma, Chichkov, Boris, Fadeeva, Elena, Kingshott, Peter, Crawford, Russell J., and Ivanova, Elena P. (2020) Effect of titanium surface topography on plasma deposition of antibacterial polymer coatings. Applied Surface Science, 521. 146375.

Al-Jumaili, Ahmed, Mulvey, Peter, Kumar, Avishek, Prasad, Karthika, Bazaka, Kateryna, Warner, Jeffrey, and Jacob, Mohan V. (2019) Eco-friendly nanocomposites derived from geranium oil and zinc oxide in one step approach. Scientific Reports, 9. 5973.

Grech, Jonathan, and Antunes, Elsa (2019) Zirconia in dental prosthetics: a literature review. Journal of Materials Research and Technology, 8 (5). pp. 4956-4964.

Xu, Jia, Ma, Jianfeng, He, Yan, Liu, Chunhong, and Ye, Qingsong (2018) Construction of CaF2-appended PVA nanofibre scaffold. Bulletin of Materials Science, 41 (1). 12.

Kannan, M. Bobby, Walter, R., Yamamoto, A., Khakbaz, H., and Blawert, C. (2018) Electrochemical surface engineering of magnesium metal by plasma electrolytic oxidation and calcium phosphate deposition: biocompatibility and in vitro degradation studies. RSC Advances, 8 (51). pp. 29189-29200.

Mazigi, Ohan, Kannan, M. Bobby, Xu, Jia, Han-Cheol, Choe, and Qingsong, Ye (2017) Biocompatibility and degradation of a low elastic modulus Ti-35Nb-3Zr alloy: nanosurface engineering for enhanced degradation resistance. ACS Biomaterials Science & Engineering, 3 (4). pp. 509-517.

Xie, Huixu, Wang, Jianyun, He, Yan, Gu, Zhipeng, Xu, Jia, Li, Longjiang, and Ye, Qingsong (2017) Biocompatibility and safety evaluation of a silk fibroin-doped calcium polyphosphate scaffold copolymer in vitro and in vivo. RSC Advances, 73 (7). pp. 46036-46044.

Xu, Jia, He, Yan, Ma, Jianfeng, and Ye, Qingsong (2017) Coating a shell on alginate microsphere by liquid phase deposition. Materials Letters, 188. pp. 152-155.

Kannan, M. Bobby, Khakbaz, Hadis, and Yamamoto, A. (2017) Understanding the influence of HEPES buffer concentration on the biodegradation of pure magnesium: an electrochemical study. Materials Chemistry and Physics, 197. pp. 47-56.

Ostrikov, Kola, Macgregor-Ramiasa, Melanie N., Cavallaro, Alex A., Jacob, Mohan, and Vasilev, Krasimir (2016) A comparative assessment of nanoparticulate and metallic silver coated dressings. Recent Patents on Materials Science, 9 (1). pp. 50-57.

Kannan, M. Bobby, Walter, R., and Yamamoto, A. (2016) Biocompatibility and in vitro degradation behavior of magnesium–calcium alloy coated with calcium phosphate using an unconventional electrolyte. ACS Biomaterials Science & Engineering, 2 (1). pp. 56-64.

Kannan, M. Bobby (2016) Electrochemical deposition of calcium phosphates on magnesium and its alloys for improved biodegradation performance: a review. Surface and Coatings Technology, 301. pp. 36-41.

Book Chapter

Fernandez Medina, Tulio, and Nanda, Aswin (2021) Regeneration for implant dentistry. In: Hosseinpour, Sepanta, Walsh, Laurence J., and Moharamzadeh, Keyvan, (eds.) Regenerative Approaches in Dentistry. Springer International Publishing AG, Cham, Switzerland, pp. 133-150.

Thesis

Romo Rico, Jesus (2023) Plasma-assisted development of plant-based biomaterials for wound-healing applications. PhD thesis, James Cook University.

This list was generated on Sat Nov 23 22:39:26 2024 AEST.