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Assessment of dental implant surface stability at the nanoscale level

材料科学 纳米尺度 牙种植体 植入 牙科 纳米技术 医学 外科
作者
Varvara Labis,E. A. Bazikyan,О. М. Жигалина,S. V. Sizova,В. А. Олейников,Д. Н. Хмеленин,I. G. Dyachkova,Д. А. Золотов,А. В. Бузмаков,В. Е. Асадчиков,С. В. Хайдуков,И. Г. Козлов
出处
期刊:Dental Materials [Elsevier BV]
卷期号:38 (6): 924-934 被引量:11
标识
DOI:10.1016/j.dental.2022.03.003
摘要

To study the oxide layer stability of certified dental implants of system "P", made based on TiO2 alloy with carbon coating. To perform a comparative statistical analysis of the obtained data with the available data for the dental implants of systems "A" and "B". X-ray microtomography and X-ray fluorescence analysis were used to study soft tissue biopsy specimens. Supernatants were studied by dynamic light scattering and transmission electron microscopy when simulating free emission of nanoscale metal oxide particles from the surface of dental implants as well as when simulating physical loading. A comparative analysis of three parameters of nanoscale particles was performed by statistical data analysis. The surface of the "P" system dental implant with surface treatment was analyzed by scanning electron microscopy. Both free emission of nanoscale oxide layer particles and yield of nano- and microscale particles during simulation of physical load were confirmed. Statistically significant differences were noted in a comparative analysis of the size and frequency of occurrence of these particles in the supernatants obtained from the surfaces of three dental implant systems. The elemental composition of the particles and the composition and structure of the "P" system dental implants themselves were analyzed. The developed method of dynamic light scattering can be used to compare the stability of the oxide layer of standardized medical products manufactured on the basis of the TiO2 alloy.
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