Monter d'un niveau |
Ce graphique trace les liens entre tous les collaborateurs des publications de {} figurant sur cette page.
Chaque lien représente une collaboration sur la même publication. L'épaisseur du lien représente le nombre de collaborations.
Utilisez la molette de la souris ou les gestes de défilement pour zoomer à l'intérieur du graphique.
Vous pouvez cliquer sur les noeuds et les liens pour les mettre en surbrillance et déplacer les noeuds en les glissant.
Enfoncez la touche "Ctrl" ou la touche "⌘" en cliquant sur les noeuds pour ouvrir la liste des publications de cette personne.
Ajji, Z., Jafari, A., Mousavi, A., Ajji, A., Heuzey, M.-C., & Savoji, H. (2025). 3D bioprinting of thick core–shell vascularized scaffolds for potential tissue engineering applications. European Polymer Journal, 222, 10 pages. Lien externe
Jafari, A., Niknezhad, S. V., Kaviani, M., Saleh, W., Wong, N., Vliet, P. , Moraes, C., Ajji, A., Kadem, L., Azarpira, N., Andelfinger, G., & Savoji, H. (2024). Formulation and Evaluation of PVA/Gelatin/Carrageenan Inks for 3D Printing and Development of Tissue‐Engineered Heart Valves (Adv. Funct. Mater. 7/2024). Advanced Functional Materials, 34(7). Lien externe
Jafari, A., Afarian, A.-S., Amirsadeghi, A., van Vliet, P. P., Darvish, M., Watson, S., Mousavi, A., Niknezhad, V., Andelfinger, G., Reuter, S., Wertheimer, M. R., Ajji, A., & Savoji, H. (2024). Combination of 3D Printing, Plasma Polymerization, and Bioactive Coatings Towards Fabrication of Eggshell Biowaste/Polycaprolactone Composite Scaffolds for Bone Regeneration. Advanced Composites and Hybrid Materials, 7, 131 (16 pages). Lien externe
Mousavi, A., Hedayatnia, A., van Vliet, P. P., Dartora, D. R., Wong, N., Rafatian, N., Nuyt, A. M., Moraes, C., Ajji, A., Andelfinger, G., & Savoji, H. (2024). Development of photocrosslinkable bioinks with improved electromechanical properties for 3D bioprinting of cardiac BioRings. Applied Materials Today, 36, 102035 (19 pages). Lien externe
Jafari, A., Niknezhad, S. V., Kaviani, M., Saleh, W., Wong, N., Van Vliet, P. P., Moraes, C., Ajji, A., Kadem, L., Azarpira, N., Andelfinger, G., & Savoji, H. (2023). Formulation and Evaluation of PVA/Gelatin/Carrageenan Inks for 3D Printing and Development of Tissue-Engineered Heart Valves. Advanced Functional Materials, 18 pages. Lien externe
Savoji, H., Maire, M., Lequoy, P., Liberelle, B., De Crescenzo, G., Ajji, A., Wertheimer, M. R., & Lerouge, S. (2017). Correction to “Combining Electrospun Fiber Mats and Bioactive Coatings for Vascular Graft Prostheses”. Biomacromolecules, 18(2), 647-647. Lien externe
Savoji, H. (2016). Innovative Vascular Prostheses Combining 3D Electrospun Nanofiber Matrices and Bioactive Coatings Prepared by Plasma-Polymerization [Thèse de doctorat, École Polytechnique de Montréal]. Disponible
Savoji, H., Maire, M., Lequoy, P., Liberelle, B., De Crescenzo, G., Wertheimer, M. R., Ajji, A., & Lerouge, S. (mai 2016). Chondroitin sulfate-oriented epidermal growth factor (EGF) coating for random and aligned electrospun vascular grafts [Affiche]. 10th World Biomaterials Congress (WBC 2016), Montréal, Canada. Publié dans Frontiers in Bioengineering and Biotechnology, 4. Disponible
Savoji, H., Maire, M., Lequoy, P., Liberelle, B., De Crescenzo, G., Ajji, A., Wertheimer, M. R., & Lerouge, S. (2016). Combining electrospun fiber mats and bioactive coatings for vascular graft prostheses. Biomacromolecules, 18(1), 303-310. Lien externe
Hadjizadeh, A., Savoji, H., & Ajji, A. (2016). A Facile Approach for the Mass Production of Submicro/Micro Poly (Lactic Acid) Fibrous Mats and Their Cytotoxicity Test towards Neural Stem Cells. BioMed Research International, 2016, 1-12. Disponible
Hadjizadeh, A., & Savoji, H. (mai 2016). Growth factor releasing micro strands promoted in vitro angiogenesis [Communication écrite]. 10th World Biomaterials Congress, Montréal, Québec. Non disponible
Savoji, H., Lerouge, S., Ajji, A., & Wertheimer, M. R. (2015). Plasma-etching for controlled modification of structural and mechanical properties of electrospun PET scaffolds. Plasma Processes and Polymers, 12(4), 314-327. Lien externe
Savoji, H., Hadjizadeh, A., Maire, M., Ajji, A., Wertheimer, M. R., & Lerouge, S. (2014). Electrospun nanofiber scaffolds and plasma polymerization: A promising combination towards complete, stable endothelial lining for vascular grafts. Macromolecular Bioscience, 14(8), 1084-1095. Lien externe
Lerouge, S., Thalla, P., Lequoy, P., Fadlallah, H., Liberelle, B., Savoji, H., Wertheimer, M. R., De Crescenzo, G., & Merhi, Y. (septembre 2013). Bioactive coatings with low-fouling non-thrombogenic but cell-adhesive properties, using chondroitin sulphate [Communication écrite]. 4th International Symposium on Surface and Interface of Biomaterials (ISSIB 2013), Roma, Italy. Publié dans European Cells and Materials, 26(6). Non disponible
Savoji, H., Rana, D., Matsuura, T., Tabe, S., & Feng, C. (2013). Development of plasma and/or chemically induced graft co-polymerized electrospun poly(vinylidene fluoride) membranes for solute separation. Separation and Purification Technology, 108, 196-204. Lien externe
Savoji, H., Hadjizadeh, A., Maire, M., Lerouge, S., Ajji, A., & Wertheimer, M. R. (juin 2012). 3D electrospun PET nano-fibrous mats with plasma-polymer coating for vascular graft applications [Communication écrite]. 4th International Conference on Plasma Medicine (ICPM-4), Orléans, France. Lien externe
Savoji, H., & Wertheimer, M. R. (2012). Book review. Dans Biomimetic approaches for biomaterials development . Lien externe