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R
Reis, R. L., Cunha, A. M., Fernandes, M. H., & Correia, R. N. (1997). Treatments to induce the nucleation and growth of apatite-like layers on polymeric surfaces and foams. Journal of Materials Science: Materials in MedicineJ. Mater. Sci. Mater. Med., 8(12London, United Kingdom), 897 - 905.
Reis, R. L., Cunha, A. M., Allan, P. S., & Bevis, M. J. (1997). Structure development and control of injection-molded hydroxylapatite-reinforced starch/EVOH composites. Advances in Polymer TechnologyAdv Polym Technol, 16(4), 263 - 277.
Reis, R. L., Cunha, A. M., Allan, P. S., & Bevis, M. J. (1996). Mechanical behavior of injection-molded starch-based polymers. Polymers for Advanced TechnologiesPolym. Adv. Technol., 7(10), 784 - 790.
Real, C., Remédio, L., Caiado, F., Igreja, C., Borges, C., Trindade, A., Pinto-Do-Ó, P., Yagita, H., Duarte, A., & Dias, S. (2011). Bone marrow-derived endothelial progenitors expressing delta-like 4 (Dll4) regulate tumor angiogenesis. PLoS ONEPLoS ONE, 6(4).
Ramos, J., Kockelkorn, T., Van Ginneken, B., Viergever, M. A., Ramos, R., & Campilho, A. (2012). Supervised content based image retrieval using radiology reports. Lecture Notes in Computer Science (including subseries Lecture Notes in Artificial Intelligence and Lecture Notes in Bioinformatics)Lect. Notes Comput. Sci. (Vol. 7325 LNCS, pp. 249 - 258).
Q
Quelhas-Santos, J., Soares-Silva, I., Fernandes-Cerqueira, C., Simões-Silva, L., Ferreira, I., Carvalho, C., Coentrão, L., Vaz, R., Sampaio-Maia, B., & Pestana, M. (2014). Plasma and urine renalase levels and activity during the recovery of renal function in kidney transplant recipients. Experimental Biology and Medicine, 239(4), 502 - 508.
Quelhas-Santos, J., & Pestana, M. (2014). Plasma Renalase in Chronic Kidney Disease: Differences and Similarities between Humans and Rats. Current hypertension reviews, 10, 166-70.
Quelhas, P., Mendonça, A. M., & Campilho, A. (2010). Optical flow based Arabidopsis thaliana root meristem cell division detection. Lecture Notes in Computer Science (including subseries Lecture Notes in Artificial Intelligence and Lecture Notes in Bioinformatics)Lect. Notes Comput. Sci. (Vol. 6112 LNCS, pp. 217 - 226).
Quelhas, P., Marcuzzo, M., Mendonça, A. M., & Campilho, A. (2010). Cell nuclei and cytoplasm joint segmentation using the sliding band filter. IEEE Transactions on Medical ImagingIEEE Trans. Med. Imaging, 29(8), 1463 - 1473.
Quelhas, P., Nieuwland, J., Dewitte, W., Mendonça, A. M., Murray, J., & Campilho, A. (2011). Arabidopsis thaliana automatic cell file detection and cell length estimation. Lecture Notes in Computer Science (including subseries Lecture Notes in Artificial Intelligence and Lecture Notes in Bioinformatics)Lect. Notes Comput. Sci. (Vol. 6754 LNCS, pp. 1 - 11).
Queiroz, A. C., Santos, J. D., Monteiro, F. J., Gibson, I. R., & Knowles, J. C. (2001). Adsorption and release studies of sodium ampicillin from hydroxyapatite and glass-reinforced hydroxyapatite composites. BiomaterialsBiomaterials, 22(11), 1393 - 1400.
Queiroz, A. C., Santos, J. D., Vilar, R., Eugénio, S., & Monteiro, F. J. (2004). Laser surface modification of hydroxyapatite and glass-reinforced hydroxyapatite. BiomaterialsBiomaterials, 25(19), 4607 - 4614.
Queiroz, A. C., Santos, J. D., & Monteiro, F. J. (2005). Adsorption isotherm of sodium ampicillin onto dense and porous hydroxyapatite. Key Engineering MaterialsKey Eng Mat (Vol. 284-286, pp. 387 - 390).
Queiroz, A. C., Teixeira, S., Santos, J. D., & Monteiro, F. J. (2004). Porous Hydroxyapatite and Glass Reinforced Hydroxyapatite for Controlled Release of Sodium Ampicillin. (B. M.A., F.J., M., R., C., & B., L., Eds.)Key Engineering MaterialsKey Eng Mat (Vol. 254-256, pp. 997 - 1000).
Queiroz, A. C., Santos, J. D., & Monteiro, F. J. (2005). Development of a system to adsorb drugs onto calcium phosphate materials. Journal of Materials Science: Materials in MedicineJ. Mater. Sci. Mater. Med., 16(7), 641 - 646.
Queiroz, A. C., Santos, J. D., & Monteiro, F. J. (2005). Porous HA scaffolds for drug releasing. Key Engineering MaterialsKey Eng Mat (Vol. 284-286, pp. 407 - 410).
Queiroz, A. C., Santos, J. D., Monteiro, F. J., & Prado da Silva, M. H. (2003). Dissolution studies of hydroxyapatite and glass-reinforced hydroxyapatite ceramics. (S. G., F.L., F. J., G.A., S., & P.L., S., Eds.)Materials CharacterizationMater Charact, 50(2-3), 197 - 202.
Queiroz, A. C., Teixeira, S., Santos, J. D., & Monteiro, F. J. (2004). Production of porous hydroxyapatite with potential for controlled drug delivery. (M. R., E., F., I., F., & C., D., Eds.)Materials Science ForumMater Sci Forum (Vol. 455-456, pp. 358 - 360).
P
Prado da Silva, M. H., Lemos, A. F., Ferreira, J. M. F., Lopes, M. A., & Santos, J. D. (2002). Production of porous biomaterials based on glass-reinforced hydroxyapatite composites. (V. T., Ed.)Key Engineering MaterialsKey Eng Mat (Vol. 230-232, pp. 483 - 486).
Prado da Silva, M. H., Lemos, A. F., Gibson, I. R., Ferreira, J. M. F., & Santos, J. D. (2002). Porous glass reinforced hydroxyapatite materials produced with different organic additives. Journal of Non-Crystalline SolidsJ Non Cryst Solids, 304(1-3), 286 - 292.
Porter, A. E., Botelho, C. M., Lopes, M. A., Santos, J. D., Best, S. M., & Bonfield, W. (2004). Ultrastructural comparison of dissolution and apatite precipitation on hydroxyapatite and silicon-substituted hydroxyapatite in vitro and in vivo. Journal of Biomedical Materials Research - Part AJ. Biomed. Mater. Res. Part A, 69(4), 670 - 679.
Portela, A., Vasconcelos, M., Fernandes, M. H., Garcia, M., Silva, A., Gabriel, J., Gartner, F., Amorim, I., & Cavalheiro, J. (2013). Highly focalised thermotherapy using a ferrimagnetic cement in the treatment of a melanoma mouse model by low temperature hyperthermia. International Journal of Hyperthermia, 29(2), 121 - 132.
Pires, L. R., Rocha, D. N., Ambrosio, L., & Pego, A. P. (2015). The role of the surface on microglia function: implications for central nervous system tissue engineering. Journal of the Royal Society, Interface / the Royal Society, 12.
Pinto, A. M., Gonçalves, I. C., & Magalhães, F. D. (2013). Graphene-based materials biocompatibility: A review. Colloids and Surfaces B: Biointerfaces, 111, 188 - 202.
Pinto, A. M., Moreira, S., Gonçalves, I. C., Gama, F. M., Mendes, A. M., & Magalhães, F. D. (2013). Biocompatibility of poly(lactic acid) with incorporated graphene-based materials. Colloids and Surfaces B: Biointerfaces, 104, 229 - 238.

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