RESEARCH GRANTS
2017-2020 (Principal Investigator) Grant by: Fundamental Research Grant Scheme (FRGS) Project Title: “Understanding the mechanism of multi-doping ions in Carbonated Hydroxyapatite (CHA) Scaffolds to induce rapid bone formation”
2017-2020 (Co-investigator) Grant by: Fundamental Research Grant Scheme (FRGS) Project Title: “Effect of Metallic Ion Therapeutic Agent (MITA) in Novel co-doped Akermanite Bioceramics On Response Mechanism of Osteoimmunomodulation In New Bone Formation”
2017-2020 (Co-investigator) Grant by: ASEAN University Network/Southeast Asia Engineering Education Development Network (AUN/SEED-Net) Project Title: “The fabrication of Akermanite scaffold by coating Carbonated Hydroxyapatite”
2017-2019(Principal Investigator) Grant by: USM SHORT-TERM GRANT Project Title: “Multi-functional porous composite scaffolds mimicking human bone”. |
JOURNAL PUBLICATIONS
[1] Muhammad Syazwan M.N. and Yanny Marliana B.I., The influence of simultaneous divalent cations (Mg2+, Co2+ and Sr2+) substitution on the physico-chemical properties of carbonated hydroxyapatite. Ceramics International (Recently accepted in April 2019).
[2] Hossein Mohammadi, Myat Myat-Htun, Yanny Marliana Baba Ismail, Khairul Anuar Shariff, Ahmad-Fauzi Mohd Noor, Structural, physicomechanical, and in vitro biodegradation studies on Sr-doped bioactive ceramic. Ceramics International (Recently accepted in April 2019).
[8] M. Chuthathip, M. N. Ahmad-Fauzi , B. I. Yanny-Marliana, S. Khairul- Anuar, K. Masakazu, L. Banhan, Effect of Magnesium Oxide on Physical and Biological Properties in β-tricalcium Phosphate Ceramic. Journal of Physics: Conf. Series 1082 (2018) 012026.
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PROCEEDINGS
1] Yanny M. Baba Ismail, Oana Bretcanu, Kenneth W. Dalgarno, Alicia J. El Haj, 2014. Synthesis and in vitro biocompatibility of multi-substituted hydroxyapatite for bone tissue engineering applications. European Cells and Materials, 8 (4): 4. [2] Yvonne Reinwald, Pierre O. Bagnnaninchi, Ying Yang, Yanny M. Baba Ismail, Alicia J. El Haj, 2016. Online monitoring of mechanical properties of three-dimensional tissue engineered constructs for quality assessment. Proc. SPIE 9710, Optical Elastography and Tissue Biomechanics III, 971007. [3] YM Baba Ismail, Y Reinwald, O Bretcanu, K Dalgarno, AJ El Haj, 2016. Designs of three-dimensional printed scaffolds promote formation of vascularized engineered bone. European Cells and Materials, 31(1): 144. [4] Yvonne Reinwald, Pierre O. Bagnnaninchi, Wesam Gamal, Ying Yang, Yanny M. Baba Ismail, Alicia J. El Haj, 2016. Online monitoring of mechanical properties of three-dimensional tissue engineered constructs for quality assessment. European Cells and Materials, 31(1): 243. |
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