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Developing a novel resorptive hydroxyapatite-based bone substitute for over-critical size defect reconstruction: physicochemical and biological characterization and proof of concept in segmental rabbit's ulna reconstruction
(Walter De Gruyter Gmbh, Berlin, 2020)
The aim of this study was to develop novel hydroxyapatite (HAP)-based bioactive bone replacement materials for segmental osteotomy reconstruction. Customized three-dimensional (3D) bone construct was manufactured from ...
Supplementary information for the article: Micić, M.; Antonijević, Đ.; Milutinović-Smiljanić, S.; Trisić, D.; Colović, B.; Kosanović, D.; Prokić, B.; Vasić, J.; Zivković, S.; Milašin, J.; Danilović, V.; Đurić, M.; Jokanović, V. Developing a Novel Resorptive Hydroxyapatite-Based Bone Substitute for over-Critical Size Defect Reconstruction: Physicochemical and Biological Characterization and Proof of Concept in Segmental Rabbit’s Ulna Reconstruction. Biomedical Engineering-Biomedizinische Technik 2020, 65 (4), 491–505. https://doi.org/10.1515/bmt-2019-0218.
(Walter De Gruyter Gmbh, Berlin, 2020)
Figure 1S. Change of the Ca concentration in the solution containing investigated nHAP granules with time. Figure 2S. Change of the Ca concentration with time in biological apatite (BioOss). Figure 3S. The correlation ...