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Novel measurement technique for knee joint laxities using polymeric capacitive strain gauges., , , , , , and . MeMeA, page 237-242. IEEE, (2014)Inversely 3D-Printed β-TCP Scaffolds for Bone Replacement, , , , , , , and . Materials, 12 (20): 3417 (2019)Biodegradable, Antibacterial <scp>TCP</scp> Implant Coatings With Magnesium Phosphate‐Based Supraparticles, , , , , , , , , and 2 other author(s). Journal of Biomedical Materials Research Part A, (July 2025)Thin Degradable Coatings for Optimization of Osseointegration Associated With Simultaneous Infection Prophylaxis, , , , , , , and . (2017)Investigation of copper doped β-TCP and GB14 coatings produced via high velocity suspension flame spraying—a biocompatibility and antimicrobial activity study, , , , , , , , and . Biomedical Materials, 20 (4): 045004 (May 2025)3D Powder Printed Bioglass and beta-Tricalcium Phosphate Bone Scaffolds, , , , , , , , , and 1 other author(s). Materials, 11 (1): 13 (2018)Carbon-Fibre-Reinforced SiC Composite (C/SiSiC) as an Alternative Material for Endoprosthesis : Fabrication, Mechanical and In-Vitro Biological Properties, , , , , , , and . Materials, 11 (2): 316 (2018)Suspension-Sprayed Calcium Phosphate Coatings with Antibacterial Properties, , , , , , , , and . Journal of Functional Biomaterials, 15 (10): 281 (2024)Effect of 20 μm thin ceramic coatings of hydroxyapatite, bioglass, GB14 and Beta-Tricalciumphosphate with copper on the biomechanical stability of femoral implants, , , , , , , and . Journal of the mechanical behavior of biomedical materials, 144 (August): 105951 (2023)