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Author Title Year Publication Volume Pages
Araya-Letelier, G.; Antico, F.C.; Carrasco, M.; Rojas, P.; Garcia-Herrera, C.M. Effectiveness of new natural fibers on damage-mechanical performance of mortar 2017 Construction And Building Materials 152 672-682
Araya-Letelier, G.; Concha-Riedel, J.; Antico, F.C.; Valdes, C.; Caceres, G. Influence of natural fiber dosage and length on adobe mixes damage-mechanical behavior 2018 Construction And Building Materials 174 645-655
Baier, R.V.; Raggio, J.I.C.; Arancibia, C.T.; Bustamante, M.; Perez, L.; Burda, I.; Aiyangar, A.; Vivanco, J.F. Structure-function assessment of 3D-printed porous scaffolds by a low-cost/ open source fused filament fabrication printer 2021 Materials Science & Engineering C-Materials For Biological Applications 123 111945
Collins, C.J.; Vivanco, J.F.; Sokn, S.A.; Williams, B.O.; Burgers, T.A.; Ploeg, H.L. Fracture healing in mice lacking Pten in osteoblasts: a micro-computed tomography image-based analysis of the mechanical properties of the femur 2015 Journal Of Biomechanics 48 310-317
Contreras-Raggio, J.I.; Arancibia, C.T.; Millan, C.; Ploeg, H.L.; Aiyangar, A.; Vivanco, J.F. Height-to-Diameter Ratio and Porosity Strongly Influence Bulk Compressive Mechanical Properties of 3D-Printed Polymer Scaffolds 2022 Polymers 14 5017
Norambuena-Contreras, J.; Gonzalez-Torre, I.; Vivanco, J.F.; Gacitua, W. Nanomechanical properties of polymeric fibres used in geosynthetics 2016 Polymer Testing 54 67-77
Slane, J.; Vivanco, J.; Ebenstein, D.; Squire, M.; Ploeg, H.L. Multiscale characterization of acrylic bone cement modified with functionalized mesoporous silica nanoparticles 2014 Journal Of The Mechanical Behavior Of Biomedical Materials 37 141-152
Slane, J.; Vivanco, J.; Rose, W.; Ploeg, H.L.; Squire, M. Mechanical, material, and antimicrobial properties of acrylic bone cement impregnated with silver nanoparticles 2015 Materials Science & Engineering C-Materials For Biological Applications 48 188-196
Slane, J.A.; Vivanco, J.F.; Rose, W.E.; Squire, M.W.; Ploeg, H.L. The influence of low concentrations of a water soluble poragen on the material properties, antibiotic release, and biofilm inhibition of an acrylic bone cement 2014 Materials Science & Engineering C-Materials For Biological Applications 42 168-176