Contreras Raggio, J.I.;                     Arancibia, C.T.;                     Millán, 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. Polymers 2022, 14, 5017.
    https://doi.org/10.3390/polym14225017
    AMA Style
    
                                Contreras Raggio JI,                                 Arancibia CT,                                 Millán C,                                 Ploeg H-L,                                 Aiyangar A,                                 Vivanco JF.        
                Height-to-Diameter Ratio and Porosity Strongly Influence Bulk Compressive Mechanical Properties of 3D-Printed Polymer Scaffolds. Polymers. 2022; 14(22):5017.
        https://doi.org/10.3390/polym14225017
    
    Chicago/Turabian Style
    
                                Contreras Raggio, José I.,                                 Carlos Toro Arancibia,                                 Carola Millán,                                 Heidi-Lynn Ploeg,                                 Ameet Aiyangar,                                 and Juan F. Vivanco.        
                2022. "Height-to-Diameter Ratio and Porosity Strongly Influence Bulk Compressive Mechanical Properties of 3D-Printed Polymer Scaffolds" Polymers 14, no. 22: 5017.
        https://doi.org/10.3390/polym14225017
    
    APA Style
    
                                Contreras Raggio, J. I.,                                 Arancibia, C. T.,                                 Millán, C.,                                 Ploeg, H.-L.,                                 Aiyangar, A.,                                 & Vivanco, J. F.        
        
        (2022). Height-to-Diameter Ratio and Porosity Strongly Influence Bulk Compressive Mechanical Properties of 3D-Printed Polymer Scaffolds. Polymers, 14(22), 5017.
        https://doi.org/10.3390/polym14225017