Ghayor, C.;                     Chen, T.-H.;                     Bhattacharya, I.;                     Özcan, M.;                     Weber, F.E.    
        Microporosities in 3D-Printed Tricalcium-Phosphate-Based Bone Substitutes Enhance Osteoconduction and Affect Osteoclastic Resorption. Int. J. Mol. Sci. 2020, 21, 9270.
    https://doi.org/10.3390/ijms21239270
    AMA Style
    
                                Ghayor C,                                 Chen T-H,                                 Bhattacharya I,                                 Özcan M,                                 Weber FE.        
                Microporosities in 3D-Printed Tricalcium-Phosphate-Based Bone Substitutes Enhance Osteoconduction and Affect Osteoclastic Resorption. International Journal of Molecular Sciences. 2020; 21(23):9270.
        https://doi.org/10.3390/ijms21239270
    
    Chicago/Turabian Style
    
                                Ghayor, Chafik,                                 Tse-Hsiang Chen,                                 Indranil Bhattacharya,                                 Mutlu Özcan,                                 and Franz E. Weber.        
                2020. "Microporosities in 3D-Printed Tricalcium-Phosphate-Based Bone Substitutes Enhance Osteoconduction and Affect Osteoclastic Resorption" International Journal of Molecular Sciences 21, no. 23: 9270.
        https://doi.org/10.3390/ijms21239270
    
    APA Style
    
                                Ghayor, C.,                                 Chen, T.-H.,                                 Bhattacharya, I.,                                 Özcan, M.,                                 & Weber, F. E.        
        
        (2020). Microporosities in 3D-Printed Tricalcium-Phosphate-Based Bone Substitutes Enhance Osteoconduction and Affect Osteoclastic Resorption. International Journal of Molecular Sciences, 21(23), 9270.
        https://doi.org/10.3390/ijms21239270