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B
Gutierres, M., Ascensão Lopes, M., Sooraj Hussain, N., Trigo Cabral, A., Almeida, L., & Domingos Santos, J. (2005). Bone substitutes: General concepts and "state of the art". Substitutos ósseos: Conceitos gerais e estado actualArquivos de MedicinaArq. Med., 19(4), 153 - 162.
Oliveira, J. M., Kawai, T., Lopes, M. A., Ohtsuki, C., Santos, J. D., & Afonso, A. (2004). Bonelike®/PLGA hybrid materials for bone regeneration: In vivo evaluation. (M. R., E., F., I., F., & C., D., Eds.)Materials Science ForumMater Sci Forum (Vol. 455-456, pp. 374 - 377).
Oliveira, J. M., Miyazaki, T., Lopes, M. A., Ohtsuki, C., & Santos, J. D. (2005). Bonelike®/PLGA hybrid materials for bone regeneration: Preparation route and physicochemical characterisation. Journal of Materials Science: Materials in MedicineJ. Mater. Sci. Mater. Med., 16(3), 253 - 259.
Alexandre, L. A., Campilho, A., & Kamel, M. (2004). Bounds for the Average Generalization Error of the Mixture of Experts Neural Network. Lecture Notes in Computer Science (including subseries Lecture Notes in Artificial Intelligence and Lecture Notes in Bioinformatics)Lect. Notes Comput. Sci. (Vol. 3138, pp. 618 - 625).
Martins, S., Tho, I., Reimold, I., Fricker, G., Souto, E., Ferreira, D., & Brandl, M. (2012). Brain delivery of camptothecin by means of solid lipid nanoparticles: Formulation design, in vitro and in vivo studies. International Journal of PharmaceuticsInt. J. Pharm.
Martins, S. M., Sarmento, B., Nunes, C., Lúcio, M., Reis, S., & Ferreira, D. C. (2013). Brain targeting effect of camptothecin-loaded solid lipid nanoparticles in rat after intravenous administration. European Journal of Pharmaceutics and Biopharmaceutics, 85(3 PART A), 488 - 502.
Paiva, O. C., & Barbosa, M. A. (2000). Brazing parameters determine the degradation and mechanical behaviour of alumina/titanium brazed joints. Journal of Materials ScienceJ Mater Sci, 35(5Dordrecht, Netherlands), 1165 - 1175.
Freire, A. G., Resende, T. P., & Pinto-Do-Ó, P. (2014). Building and repairing the heart: What can we learn from embryonic development?. BioMed Research International, 2014.
C
Barrias, C. C., Ribeiro, C. C., Martins, M. C. L., Barbosa, M. A., Rodrigues, D., & Miranda, M. C. S. (2006). Calcium phosphate microspheres for localised delivery of a therapeutic enzyme. Key Engineering MaterialsKey Eng Mat (Vol. 309-311 II, pp. 903 - 906).
Ribeiro, C. C., Barrias, C. C., & Barbosa, M. A. (2004). Calcium phosphate-alginate microspheres as enzyme delivery matrices. BiomaterialsBiomaterials, 25(18), 4363 - 4373.
Fontes, T., Silva, L. M., Silva, M. P., Barros, N., & Carvalho, A. C. (2014). Can artificial neural networks be used to predict the origin of ozone episodes?. Science of the Total Environment, 488-489(1), 197 - 207.
Fischbach, C., Hyun, J. K., Hsiong, S. X., Evangelista, M. B., Yuen, W., & Mooney, D. J. (2009). Cancer cell angiogenic capability is regulated by 3D culture and integrin engagement. Proceedings of the National Academy of Sciences of the United States of AmericaProc. Natl. Acad. Sci. U. S. A., 106(2), 399 - 404.
Mareel, M., Oliveira, M. J., & Madani, I. (2009). Cancer invasion and metastasis: Interacting ecosystems. Virchows ArchivVirchows Arch., 454(6), 599 - 622.
Bordeira-Carriço, R., Pêgo, A. P., Santos, M., & Oliveira, C. (2012). Cancer syndromes and therapy by stop-codon readthrough. Trends in Molecular MedicineTrends Mol. Med., 18(11), 667 - 678.
Zhang, Y., Lopes, M. A., & Santos, J. D. (2001). CaO-P 2O 5 glass ceramics containing bioactive phases: crystallisation and in vitro bioactivity studies . Key Engineering MaterialsKey Eng Mat, 192-195(Uetikon-Zuerich, Switzerland), 643 - 646.
Ferraz, M. P., Monteiro, F. J., & Santos, J. D. (1999). CaO-P 2O 5 glass hydroxyapatite double-layer plasma-sprayed coating: In vitro bioactivity evaluation . Journal of Biomedical Materials ResearchJ. Biomed. Mater. Res., 45(4New York, NY, United States), 376 - 383.
Ferraz, M. P., Monteiro, F. J., Gião, D., Leon, B., Gonzalez, P., Liste, S., Serra, J., Arias, J., & Perez-Amor, M. (2004). CaO-P 2O 5 Glass-Hydroxyapatite Thin Films Obtained by Laser Ablation: Characterisation and In Vitro Bioactivity Evaluation . (B. M.A., F.J., M., R., C., & B., L., Eds.)Key Engineering MaterialsKey Eng Mat (Vol. 254-256, pp. 347 - 350).
De Pina, M. D. F. (2003). Cartographic representation of spatial data. Representação Cartográfica de Dados EspaciaisArquivos de MedicinaArq. Med., 17(5), 233 - 240.
Oliveira, A. C., Ferraz, M. P., Monteiro, F. J., & Simões, S. (2009). Cationic liposome-DNA complexes as gene delivery vectors: Development and behaviour towards bone-like cells. Acta BiomaterialiaActa Biomater., 5(6), 2142 - 2151.
Marcuzzo, M., Guichard, T., Quelhas, P., Mendonça, A. M., & Campilho, A. (2009). Cell division detection on the arabidopsis thaliana root. Lecture Notes in Computer Science (including subseries Lecture Notes in Artificial Intelligence and Lecture Notes in Bioinformatics)Lect. Notes Comput. Sci. (Vol. 5524 LNCS, pp. 168 - 175).
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.
Sarmento, B., Andrade, F., Da Silva, S. B., Rodrigues, F., Das Neves, J., & Ferreira, D. (2012). Cell-based in vitro models for predicting drug permeability. Expert Opinion on Drug Metabolism and ToxicologyExpert Opin. Drug Metab. Toxicol., 8(5), 607 - 621.
Gomes, P. S., Santos, J. D., & Fernandes, M. H. (2008). Cell-induced response by tetracyclines on human bone marrow colonized hydroxyapatite and Bonelike ® . Acta BiomaterialiaActa Biomater., 4(3), 630 - 637.
Pelaez-Vargas, A., Ferrell, N., Fernandes, M. H., Hansford, D. J., & Monteiro, F. J. (2009). Cellular alignment induction during early in vitro culture stages using micropatterned glass coatings produced by sol-gel process. Key Engineering MaterialsKey Eng Mat (Vol. 396-398, pp. 303 - 306).
Costa-Almeida, R., Granja, P. L., Soares, R., & Guerreiro, S. G. (2014). Cellular strategies to promote vascularisation in tissue engineering applications. European Cells and Materials, 28, 51 - 67.

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