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Plastic and Reconstructive Surgery|December 1, 1980
Anatomical and mechanical considerations of craniofacial fractures: an experimental studyF Sturla, D Abnsi, J BuquetInternational Journal for Numerical Methods in Biomedical Engineering|December 29, 2016
A novel approach to the quantification of aortic root in vivo structural mechanicsE Votta, M Presicce, A Della Corte, et al.Transplantation Proceedings|September 25, 2007
Matrix superhighways configurations: new concepts for complex organ regenerationE Mansilla, H Drago, F Sturla, et al.Journal of Biomechanics|November 20, 2016
Towards the improved quantification of in vivo abnormal wall shear stresses in BAV-affected patients from 4D-flow imaging: Benchmarking and application to real dataF Piatti, S Pirola, M Bissell, et al.Medical Engineering & Physics|July 22, 2017
Mass-spring models for the simulation of mitral valve function: Looking for a trade-off between reliability and time-efficiencyO A Pappalardo, F Sturla, F Onorati, et al.Transplantation Proceedings|May 2, 2006
Bloodstream cells phenotypically identical to human mesenchymal bone marrow stem cells circulate in large amounts under the influence of acute large skin damage: new evidence for their use in regenerative medicineE Mansilla, G H Marín, H Drago, et al.Transplantation Proceedings|April 6, 2005
Human mesenchymal stem cells are tolerized by mice and improve skin and spinal cord injuriesE Mansilla, G H Marin, F Sturla, et al.Transplantation Proceedings|February 23, 2010
The next generation of burns treatment: intelligent films and matrix, controlled enzymatic debridement, and adult stem cellsH Drago, G H Marín, F Sturla, et al.Transplantation Proceedings|December 21, 2010
Outstanding survival and regeneration process by the use of intelligent acellular dermal matrices and mesenchymal stem cells in a burn pig modelE Mansilla, R Spretz, G Larsen, et al.Pageof 1