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Wissenschaftliche Kurzinformationen aus der Implantologie
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Ghufran M. Al‑Banaa, Mohammad S. Sulaiman, Abdulsattar Salim Mahmood, 2021. Histological Assessment of Early Bone–Response to ZrO2 Implant Accompanied by CaSO4.0.5H2O as a Bone Substitute. RDEN. doi: 10.33899/RDEN.2020.128474.1055
Tomoki Hirano, Tadashi Miura, Yuto Otsu, Atsuro Harada, Yosuke Asami, Noriko Iijima, Yukari Oda, Yoshitaka Furuya, Taichi Ito, Hodaka Sasaki, Hideshi Sekine, 2022. The Effect of Super‑Hydrophilic Treatment on Zirconia Implant Osseointegration in Rats. Journal of Hard Tissue Biology. doi: 10.2485/jhtb.31.223
Poojya Ramdev, C. S. Shruthi, 2022. Osseointegration in Zirconia Implants Stumbling into Evidence. International Journal of Biomedical Science (IJBS). doi: 10.59566/ijbs.2022.18001
Li, Yao, Wang, Shen, Lou, Huang, Wu, 2021. Magnetron sputtering of strontium nanolayer on zirconia implant to enhance osteogenesis. Materials Science & Engineering C. doi: 10.1016/j.msec.2021.112191
Lechner, von Baehr, Notter, Schick, 2024. Osseointegration and osteoimmunology in implantology: assessment of the immune sustainability of dental implants using advanced sonographic diagnostics: research and case reports. The Journal of International Medical Research. doi: 10.1177/03000605231224161
Rohr, Permuy, Fischer, López‑Peña, Muñoz, Fischer, 2025. Nano‑Structuring of Zirconia Implant Surfaces as an Approach to Improve Clinical Performance and Economic Efficiency‑A Preclinical Study on Osseointegration. Clinical Oral Implants Research. doi: 10.1111/clr.14422
Avelino, Alvares Sobral‑Silva, Thim, de Almeida‑Silva, Dos Santos Lupp, Campos, de Vasconcellos, 2024. Development, characterization, and biological study of bioglass coatings 45S5 and BioK on zirconia implant surfaces. Journal of Biomedical Materials Research Part B. doi: 10.1002/jbm.b.35380
Aung, Renn, Lin, Salamanca, Wu, Pan, Teng, Huang, Sun, Chang, 2024. Nanorough Surface of Fibronectin Grafted Bioactive Zirconia Dental Implants by Using Glow Discharge Plasma Promotes Osseointegration in a Rabbit Model. International Journal of Nanomedicine. doi: 10.2147/IJN.S494580
Ziel: Untersuchung der Anwendung eines durch gepulste Laserabscheidung aufgebrachten fluorierten Hydroxylapatit(FHA)‑Films auf Zirkonia‑Implantaten zur Schaffung einer biologisch aktiven Oberfläche. Methoden: Herstellung eines einheitlichen, dichten, rissfreien Films mit granulären Oberflächentropfen; Testimplantation in Femur von Sprague‑Dawley‑Ratten; in vitro‑ und in vivo‑Analysen einschließlich Zellaktivität, alkalischer Phosphatase und Mineralisation sowie Bildgebung und biomechanische Tests. Ergebnisse: In vitro war die […]