Russian system of nanostructured titanium dental implants
Maxim I. Muzikin , Alexey N. Yankevich , Dmitry V. Balin , Vasily S. Dyuryagin , Sergey Y. Tytyuk
Russian Journal of Dentistry ›› 2023, Vol. 27 ›› Issue (5) : 467 -476.
Russian system of nanostructured titanium dental implants
Despite the progress in the development of modern dentistry and maxillofacial surgery and significant improvements in diagnostic, surgical, and restoration methods, currently, the number of patients with tooth loss is not decreasing. This trend is also characteristic of modern Russia. The number of implants installed to replace lost teeth in our country is increasing annually; despite this, the share of implantation systems with full localization in the territory of the Russian Federation is small. This study aimed to demonstrate the possibilities and effectiveness of using a Russian-made innovative system of dental implants made of nanostructured titanium in various clinical cases. The results of dental rehabilitation of patients with orthopedic structures supported by dental implants with a follow-up period of up to 5 years were analyzed. The results were presented with an indication of all stages of treatment of patients using modern methods of complex dental rehabilitation.
nanostructured titanium / dental implantation / dental rehabilitation / Russian dental implant system / case report
| [1] |
Gasilovskiy AE, Pavlyuk VP, Chikalova AE. The main trends and prospects for the development of foreign economic activity of the Russian Federation. Fundamental’nye issledovaniya. 2022;(7):30–34. doi: 10.17513/fr.43279 |
| [2] |
Гасиловский А.Е., Павлюк В.П., Чикалова А.Е. Основные тенденции и перспективы развития внешнеэкономической деятельности Российской Федерации // Фундаментальные исследования. 2022. № 7. С. 30–34. doi: 10.17513/fr.43279 |
| [3] |
Zhdanyuk IV, Iordanishvili AK, Volodin AI, Veretenko EA, Muzykin MI. Medical, economic and social aspects of dental prosthetics for older people. Specialist zdravoohraneniya. 2018;(1):25–26. (In Russ). |
| [4] |
Жданюк И.В., Иорданишвили А.К., Володин А.И., Веретенко Е.А., Музыкин М.И. Медико-экономические и социальные аспекты зубного протезирования лиц старшего возраста // Специалист здравоохранения. 2018. № 1. С. 25–26. |
| [5] |
Parfenov EV, Raab GI, Dyuryagin VS. Application of nanotitan in dental implants. Dental’naya implantologiya i hirurgiya. 2022;(2):80–82. (In Russ). |
| [6] |
Парфенов Е.В., Рааб Г.И., Дюрягин В.С. Применение нанотитана в дентальных имплантатах // Дентальная имплантология и хирургия. 2022. № 2. С. 80–82. |
| [7] |
Valiev RZ, Prokofiev EA, Kazarinov NA, et al. Developing nanostructured Ti alloys for innovative implantable medical devices. Materials (Basel). 2020;13(4):967. doi: 10.3390/ma13040967 |
| [8] |
Valiev R.Z., Prokofiev E.A., Kazarinov N.A., et al. Developing nanostructured Ti alloys for innovative implantable medical devices // Materials (Basel). 2020. Vol. 13, N 4. 967. doi: 10.3390/ma13040967 |
| [9] |
Raab GI, Kodirov IS, Aksenov DA, Valiev RZ. The formation of a high-strength state in martensitic Ti Grade 4 by ECAP. J Alloys Compd. 2022;922:166205. doi: 10.1016/j.jallcom.2022.166205 |
| [10] |
Raab G.I., Kodirov I.S., Aksenov D.A., Valiev R.Z. The formation of a high-strength state in martensitic Ti Grade 4 by ECAP // J Alloys Compd. 2022. Vol. 922. 166205. doi: 10.1016/j.jallcom.2022.166205 |
| [11] |
Nazarov D, Zemtsova E, Smirnov V, et al. The effects of chemical etching and ultra-fine grain structure of titanium on MG-63 cells response. Metals. 2021;11(3):510. doi: 10.3390/met11030510 |
| [12] |
Nazarov D., Zemtsova E., Smirnov V., et al. The effects of chemical etching and ultra-fine grain structure of titanium on MG-63 cells response // Metals. 2021. Vol. 11, N 3. 510. doi: 10.3390/met11030510 |
| [13] |
Parfenov EV, Parfenova LV, Dyakonov GS, et al. Surface functionalization via PEO coating and RGD peptide for nanostructured titanium implants and their in vitro assessment. Surf Coat Technol. 2019;357:669–683. doi: 10.1016/j.surfcoat.2018.10.068 |
| [14] |
Parfenov E.V., Parfenova L.V., Dyakonov G.S., et al. Surface functionalization via PEO coating and RGD peptide for nanostructured titanium implants and their in vitro assessment // Surf Coat Technol. 2019. Vol. 357. Р. 669–683. doi: 10.1016/j.surfcoat.2018.10.068 |
| [15] |
Muzikin MI, Kokovihina EV, Gerasimova EA, et al. Age-related and post-extraction atrophy of the jaws and modern possibilities for restoring the masticatory apparatus in the elderly people. Advances in Gerontology. 2021;34(1):134–143. doi: 10.34922/AE.2021.34.1.019 |
| [16] |
Музыкин М.И., Коковихина Е.В., Герасимова Е.А., и др. Возрастная и постэкстракционная атрофия челюстей и современные возможности восстановления жевательного аппарата у пожилых и старых людей // Успехи геронтологии. 2021. Т. 34, № 1. С. 134–143. doi: 10.34922/AE.2021.34.1.019 |
| [17] |
Chappuis V, Araújo MG, Buser D. Clinical relevance of dimensional bone and soft tissue alterations post-extraction in esthetic sites. Periodontol 2000. 2017;73(1):73–83. doi: 10.1111/prd.12167 |
| [18] |
Chappuis V., Araújo M.G., Buser D. Clinical relevance of dimensional bone and soft tissue alterations post-extraction in esthetic sites // Periodontol 2000. 2017. Vol. 73, N 1. Р. 73–83. doi: 10.1111/prd.12167 |
| [19] |
Muzykin MI, Iordanishvili AK. Post-extraction regeneration of jaw bone sanogenesis model. Human Ecology. 2020;(8):40–48. doi: 10.33396/1728-0869-2020-8-40-48 |
| [20] |
Музыкин М.И., Иорданишвили А.К. Модель саногенеза постэкстракционной регенерации костной ткани челюстей // Экология человека. 2020. № 8. С. 40–48. doi: 10.33396/1728-0869-2020-8-40-48 |
| [21] |
Muzikin MI, Balin DV, Iordanishvili AK. Survival rate of zygomatic and root dental implants: the 5-year observation. Russian Bulletin of Dental Implantology. 2020;(3 Pt 4):59–68. |
| [22] |
Музыкин М.И., Балин Д.В., Иорданишвили А.К. Выживаемость скуловых и корневых дентальных имплантатов: 5-летнее наблюдение // Российский вестник дентальной имплантологии. 2020. № 3-4. С. 59–68. |
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