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Teixeira, S., Yang, L., Dijkstra, P. J., Ferraz, M. P., & Monteiro, F. J. (2010). Heparinized hydroxyapatite/collagen three-dimensional scaffolds for tissue engineering. Journal of Materials Science: Materials in MedicineJ. Mater. Sci. Mater. Med., 21(8), 2385 - 2392.
Teixeira, S., Monteiro, F. J., Ferraz, M. P., Vilar, R., & Eugénio, S. (2007). Laser surface treatment of hydroxyapatite for enhanced tissue integration: Surface characterization and osteoblastic interaction studies. Journal of Biomedical Materials Research - Part AJ. Biomed. Mater. Res. Part A, 81(4), 920 - 929.
Teixeira, S., Oliveira, S., Ferraz, M. P., & Monteiro, F. J. (2008). Three dimensional macroporous calcium phosphate scaffolds for bone tissue engineering. Key Engineering MaterialsKey Eng Mat (Vol. 361-363 II, pp. 947 - 950).
Teixeira, S., Fernandes, H., Leusink, A., Van Blitterswijk, C., Ferraz, M. P., Monteiro, F. J., & De Boer, J. (2010). In vivo evaluation of highly macroporous ceramic scaffolds for bone tissue engineering. Journal of Biomedical Materials Research - Part AJ. Biomed. Mater. Res. Part A, 93(2), 567 - 575.
Teixeira, S., Rodriguez, M. A., Pena, P., De Aza, A. H., De Aza, S., Ferraz, M. P., & Monteiro, F. J. (2009). Physical characterization of hydroxyapatite porous scaffolds for tissue engineering. Materials Science and Engineering CMater. Sci. Eng. C, 29(5), 1510 - 1514.
Teixeira, S., Ferraz, M. P., & Monteiro, F. J. (2008). Biocompatibility of highly macroporous ceramic scaffolds: Cell adhesion and morphology studies. Journal of Materials Science: Materials in MedicineJ. Mater. Sci. Mater. Med., 19(2), 855 - 859.
Teixeira, S., Fernandes, M. H., Ferraz, M. P., & Monteiro, F. J. (2010). Proliferation and mineralization of bone marrow cells cultured on macroporous hydroxyapatite scaffolds functionalized with collagen type I for bone tissue regeneration. Journal of Biomedical Materials Research - Part AJ. Biomed. Mater. Res. Part A, 95(1), 1 - 8.
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Silva, R. A., Sousa, M., Monteiro, F. J., Barral, R., Santos, J. D., & Lopes, M. A. (2004). Effects of some variables on R.F. Magnetron Sputtered Hydroxyapatite Coatings on Titanium. (B. M.A., F.J., M., R., C., & B., L., Eds.)Key Engineering MaterialsKey Eng Mat (Vol. 254-256, pp. 323 - 326).
Silva, R. A., Sousa, M., Monteiro, F. J., Barrai, R., & Lopes, M. A. (2004). XRD and FT-IR characterisation of hydroxyapatite sputtered films on titanium. In Transactions - 7th World Biomaterials CongressTrans. World Biomater. Congr. (p. 163).
Serro, A. P., Fernandes, A. C., Saramago, B., Lima, J., & Barbosa, M. A. (1997). Apatite deposition on titanium surfaces - The role of albumin adsorption. BiomaterialsBIOMATERIALS, 18(14Oxford, United Kingdom), 963 - 968.
Santos, J. D., Jha, L. J., & Monteiro, F. J. (1995). Surface modifications of glass-reinforced hydroxyapatite composites. BiomaterialsBIOMATERIALS, 16(7Oxford, United Kingdom), 521 - 526.
Santos, J. D., Reis, R. L., Monteiro, F. J., Knowles, J. C., & Hastings, G. W. (1995). Liquid phase sintering of hydroxyapatite by phosphate and silicate glass additions: Structure and properties of the composites. Journal of Materials Science: Materials in MedicineJ. MATER. SCI. MATER. MED., 6(6London, United Kingdom), 348 - 352.
Santos, J. D., Jha, L. J., & Monteiro, F. J. (1996). In vitro calcium phosphate formation on SiO 2-Na 2O-CaO-P 2O 5 glass reinforced hydroxyapatite composite: A study by XPS analysis . Journal of Materials Science: Materials in MedicineJ. MATER. SCI. MATER. MED., 7(3London, United Kingdom), 181 - 185.

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