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I
Bidarra, S. J., Barrias, C. C., Barbosa, M. A., Soares, R., & Granja, P. L. (2010). Immobilization of human mesenchymal stem cells within RGD-grafted alginate microspheres and assessment of their angiogenic potential. BiomacromoleculesBiomacromolecules, 11(8), 1956 - 1964.
Oliveira, S. M., Ringshia, R. A., Legeros, R. Z., Clark, E., Yost, M. J., Terracio, L., & Teixeira, C. C. (2010). An improved collagen scaffold for skeletal regeneration. Journal of Biomedical Materials Research - Part AJ. Biomed. Mater. Res. Part A, 94(2), 371 - 379.
Moreira, C., Oliveira, H., Pires, L. R., Simões, S., Barbosa, M. A., & Pêgo, A. P. (2009). Improving chitosan-mediated gene transfer by the introduction of intracellular buffering moieties into the chitosan backbone. Acta BiomaterialiaActa Biomater., 5(8), 2995 - 3006.
Morais, S., Sousa, J. P., Fernandes, M. H., & Carvalho, G. S. (1998). In vitro biomineralization by osteoblast-like cells I. Retardation of tissue mineralization by metal salts. BiomaterialsBiomaterials, 19(1-3Exeter, United Kingdom), 13 - 21.
Shirosaki, Y., Tsuru, K., Hayakawa, S., Osaka, A., Lopes, M. A., Santos, J. D., & Fernandes, M. H. (2005). In vitro cytocompatibility of MG63 cells on chitosan-organosiloxane hybrid membranes. BiomaterialsBiomaterials, 26(5), 485 - 493.
Ferraz, M. P., Fernandes, M. H., Cabral, A. T., Santos, J. D., & Monteiro, F. J. (1999). In vitro growth and differentiation of osteoblast-like human bone marrow cells on glass reinforced hydroxyapatite plasma-sprayed coatings. Journal of Materials Science: Materials in MedicineJ. Mater. Sci. Mater. Med., 10(9Dordrecht, Netherlands), 567 - 576.
Morais, S., Dias, N., Sousa, J. P., Fernandes, M. H., & Carvalho, G. S. (1999). In vitro osteoblastic differentiation of human bone marrow cells in the presence of metal ions. Journal of Biomedical Materials ResearchJ. Biomed. Mater. Res., 44(2New York, NY, United States), 176 - 190.
Dias, A. G., Lopes, M. A., Trigo Cabral, A. T., Santos, J. D., & Fernandes, M. H. (2005). In vitro studies of calcium phosphate glass ceramics with different solubility with the use of human bone marrow cells. Journal of Biomedical Materials Research - Part AJ. Biomed. Mater. Res. Part A, 74(3), 347 - 355.
Pereira, M. D. C., Pereira, M. D. L., & Sousa, J. P. (1999). Individual study of chromium in the stainless steel implants degradation: An experimental study in mice. BioMetalsBioMetals, 12(3), 275 - 280.
Gonçalves, R. M., Martins, M. C. L., Almeida-Porada, G., & Barbosa, M. A. (2009). Induction of notch signaling by immobilization of jagged-1 on self-assembled monolayers. BiomaterialsBiomaterials, 30(36), 6879 - 6887.
Barbosa, J. N., Barbosa, M. A., & Águas, A. P. (2005). Inflammatory cell recruitment and adhesion to methyl-terminated self-assembled monolayers: Effect of implantation time. Microscopy Research and TechniqueMicrosc. Res. Tech., 66(1), 37 - 42.
Barbosa, J. N., Barbosa, M. A. A., & Águas, A. P. (2004). Inflammatory responses and cell adhesion to self-assembled monolayers of alkanethiolates on gold. BiomaterialsBiomaterials, 25(13), 2557 - 2563.
Ribeiro, N., Sousa, S. R., & Monteiro, F. J. (2010). Influence of crystallite size of nanophased hydroxyapatite on fibronectin and osteonectin adsorption and on MC3T3-E1 osteoblast adhesion and morphology. Journal of Colloid and Interface ScienceJ. Colloid Interface Sci., 351(2), 398 - 406.
Barbosa, J. N., Madureira, P., Barbosa, M. A., & Águas, A. P. (2006). The influence of functional groups of self-assembled monolayers on fibrous capsule formation and cell recruitment. Journal of Biomedical Materials Research - Part AJ. Biomed. Mater. Res. Part A, 76(4), 737 - 743.
Carvalho, G. S., Castanheira, M., Diogo, I., Abreu, A. M., Sousa, J. P., Loon, J. A., & Van Blitterswijk, C. A. (1996). Inhibition and stimulation of enzymatic activities of human fibroblasts by corrosion products and metal salts. Journal of Materials Science: Materials in MedicineJ. MATER. SCI. MATER. MED., 7(2London, United Kingdom), 77 - 83.
Gonçalves, H., Rocha, A. P., Ayres-de-Campos, D., & Bernardes, J. (2006). Internal versus external intrapartum foetal heart rate monitoring: The effect on linear and nonlinear parameters. Physiological MeasurementPhysiol. Meas., 27(3), 307 - 319.
L
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.
Antunes, J. C., Pereira, C. L., Molinos, M., Ferreira-da-Silva, F., Dessi, M., Gloria, A., Ambrosio, L., Gonca̧lves, R. M., & Barbosa, M. A. (2011). Layer-by-layer self-assembly of chitosan and poly(γ-glutamic acid) into polyelectrolyte complexes. BiomacromoleculesBiomacromolecules, 12(12), 4183 - 4195.
Gonçalves, H., Bernardes, J., Paula Rocha, A., & Ayres-de-Campos, D. (2007). Linear and nonlinear analysis of heart rate patterns associated with fetal behavioral states in the antepartum period. Early Human DevelopmentEarly Hum. Dev., 83(9), 585 - 591.
Gonçalves, H., Rocha, A. P., Ayres-de-Campos, D., & Bernardes, J. (2006). Linear and nonlinear fetal heart rate analysis of normal and acidemic fetuses in the minutes preceding delivery. Medical and Biological Engineering and ComputingMed. Biol. Eng. Comput., 44(10), 847 - 855.
Gonçalves, H., Henriques-Coelho, T., Bernardes, J., Rocha, A. P., Nogueira, A., & Leite-Moreira, A. (2008). Linear and nonlinear heart-rate analysis in a rat model of acute anoxia. Physiological MeasurementPhysiol. Meas., 29(9), 1133 - 1143.

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