Assessment of orthopedic treatment quality in patients with complete absence of teeth
A. A. Bazhin , S. V. Kazakov , O. N. Ursaky , A. V. Starkova , N. B. Astashina
Perm Medical Journal ›› 2023, Vol. 40 ›› Issue (1) : 108 -116.
Assessment of orthopedic treatment quality in patients with complete absence of teeth
Objective. To evaluate the effectiveness of dental orthopedic treatment in patients with complete absence of teeth using removable plate prostheses applying integral qualitative and evaluative indicators. The relevance of the study is dictated by the need to improve the quality of orthopedic treatment in patients with complete absence of teeth, through the introduction of new composite materials, the use of which provides high strength of prosthetic structures. For an objective assessment of the effectiveness of dental orthopedic treatment of patients using removable plate prostheses, integral approaches based on the calculation of qualitative and evaluative indicators have been modified.
Materials and methods. In order to improve the quality of orthopedic treatment of patients with complete absence of teeth, a design of a complete removable plate prosthesis with a combined basis and a method of its manufacture based on the use of digital technologies was developed. In the course of the work, the evaluation of the effectiveness of treatment in patients with complete absence of teeth in the long-term follow-up using integral qualitative and evaluative indicators was carried out.
Results. Clinical and laboratory stages of manufacturing a new design combining analog and digital metols were developed and tested. As a result of clinical studies, it was found that the type of construction of a complete removable plate prosthesis does not significantly affect the indicator of the integral assessment of the quality of orthopedic treatment, with the exception of the criterion of the prosthesis integrity.
Conclusions. To conclude, it was found that the type of construction of a complete removable plate prosthesis does not significantly affect the integral assessment of the quality of orthopedic treatment, except for the criterion of the integrity of the prosthesis; the introduction of a composite material based on fiberglass into the design of a combined prosthesis allows to improve the strength properties of the prosthesis basis and increase the performance characteristics of the structure. The use of CAD / CAM technologies provides the possibility of using high-strength composite materials, gives sufficient accuracy in the manufacture of the frame of a combined full removable plate prosthesis. Due to satisfactory physical and mechanical properties, the application of the developed design contributes to the predicted increase in the durability of prostheses.
Composite materials / acrylic plastic / complete removable plate prosthesis / complete absence of teeth / CAD/CAM technology / digital dentistry / integrated quality assessment / evaluation indicators
| [1] |
Lebedenko I.Yu., Kalivradzhiyan E.S., Ibragimov T.I., Bragin E.M. Prosthetics in the complete absence of teeth (rukovodstvo po ortopedicheskoy stomatologii). Mezhdunarodnyy zhurnal eksperimental'nogo obrazovaniya 2011; 9: 17–18 (in Russian). |
| [2] |
Лебеденко И.Ю., Каливраджиян Э.С., Ибрагимов Т.И., Брагин Е.М. Протезирование при полном отсутствии зубов (руководство по ортопедической стоматологии). Международный журнал экспериментального образования 2011; 9: 17–18. |
| [3] |
Redinov I.S., Metelitsa S.I., Strakh O.O. Improving the effectiveness of repeated treatment of patients with complete absence of teeth on the lower jaw. Fundamental'nye issledovaniya 2014; 10–2: 356–359 (in Russian). |
| [4] |
Рединов И.С., Метелица С.И., Страх О.О. Повышение эффективности повторного лечения пациентов при полном отсутствии зубов на нижней челюсти. Фундаментальные исследования 2014; 10–2: 356–359. |
| [5] |
Alhajj M.N. et al. Determination of occlusal vertical dimension for complete dentures patients: an updated review. Journal of oral rehabilitation 2017; 44 (11): 896–907. |
| [6] |
Arutyunov S.D. Clinical application of the improved technique of restoration of removable plate dentures after breakage. Sovremennye problemy nauki i obrazovaniya 2016; 1: 26–26 (in Russian). |
| [7] |
Арутюнов С.Д. Клиническое применение усовершенствованной методики реставрации съемных пластиночных зубных протезов после поломки. Современные проблемы науки и образования 2016; 1: 26–26. |
| [8] |
Berlov A.V., Nikolaeva I.Yu. Rehabilitation with removable dentures of dental patients with complete and partial dental adentia. Vestnik po pedagogike i psikhologii Yuzhnoy Sibiri 2015; 4 (in Russian). |
| [9] |
Берлов А.В., Николаева И.Ю. Реабилитация съемными протезами стоматологических пациентов при полной и частичной адентии зубов. Вестник по педагогике и психологии Южной Сибири 2015; 4. |
| [10] |
Rubnikovich S.P., Grishchenkov A.S. Psychological profile of dental patients during prosthetics with traditional full removable dentures and removable dentures based on dental implants. Stomatolog 2019; 1: 71–76 (in Russian). |
| [11] |
Рубникович С.П., Грищенков А.С. Психологический профиль стоматологических пациентов при протезировании традиционными полными съемными протезами и съемными протезами с опорой на дентальные имплантаты. Стоматолог 2019; 1: 71–76. |
| [12] |
Russo L.L., Salamini A. Removable complete digital dentures: A workflow that integrates open technologies. The journal of prosthetic dentistry 2018; 119 (5): 727–732. |
| [13] |
Zmudzki J., Chladek G., Kasperski J. Biomechanical factors related to occlusal load transfer in removable complete dentures. Biomechanics and modeling in mechanobiology 2015; 14 (4): 679–691. |
| [14] |
Kalivradzhiyan E.S., Bragin E.A., Zholudev S.E. Rukovodstvo po stomatologicheskomu materialovedeniyu. Moscow, Izd. MIA 2013; 88 (in Russian). |
| [15] |
Каливраджиян Э.С., Брагин Е.А., Жолудев С.Е. Руководство по стоматологическому материаловедению. М.: Изд. МИА 2013; 88. |
| [16] |
Shuturminskiy V.G. Results of comparative studies of physical and mechanical properties of polypropylene and acrylic plastics. Innovatsii v stomatologii 2015; 1 (7) (in Russian). |
| [17] |
Шутурминский В.Г. Результаты сравнительных исследований физико-механических свойств полипропиленовых и акриловых пластмасс. Инновации в стоматологии 2015; 1 (7). |
| [18] |
Dur S. et al. An optimally solving dentistry internal purity in heat polymerized acrylic resin with different polymerization methods. Systematic Reviews in Pharmacy 2020; 11 (3): 974–980. |
| [19] |
Yakovishin L.A., Tkachenko E.V. Composite materials based on dental acrylic plastic and chitosan. Chimica Techno Acta 2021; 8 (4): 20218413. |
| [20] |
Petrikas O.A., Trapeznikov D.V., Maslov A.N., Petrikas I.V. Study of the bending strength of acrylic and bis-acrylic materials for prosthetic devices after their repair. Problemy stomatologii 2018; 14 (2) (in Russian). |
| [21] |
Петрикас О.А., Трапезников Д.В., Маслов А.Н., Петрикас И.В. Изучение прочности на изгиб акриловых и бис-акриловых материалов для провизорных протезов после их починки. Проблемы стоматологии 2018; 14 (2). |
| [22] |
Ostrogolov D.F. The method of manufacturing the reinforced base of removable plate prostheses. Aktual'nі problemi suchasnoї meditsini: Vіsnik ukraїns'koї medichnoї stomatologіchnoї akademії 2018; 8 (3 (23)) (in Russian). |
| [23] |
Остроголов Д.Ф. Методика изготовления упрочненного базиса съемных пластиночных протезов. Актуальні проблеми сучасної медицини: Вісник української медичної стоматологічної академії 2018; 8 (3 (23)). |
| [24] |
Shulyatnikova O.A., Rogozhnikov G.I., Porozova S.E., Gridina V.O. Pat. RF na izobretenie № RU2631050 S ot 08.11.2016. Method of manufacturing the reinforced base of a removable prosthesis. Moscow, 2017 (in Russian). |
| [25] |
Шулятникова О.А., Рогожников Г.И., Порозова С.Е., Гридина В.О. Пат. РФ на изобретение № RU2631050 С от 08.11.2016. Способ изготовления армированного базиса съёмного протеза. М., 2017. |
| [26] |
Dobrzański L.A. et al. Metallic skeletons as reinforcement of new composite materials applied in orthopaedics and dentistry. Archives of Materials Science and Engineering 2018; 92 (2): 53–85. |
| [27] |
Scribante A., Vallittu P.K., Özcan M. Fiber-reinforced composites for dental applications. BioMed Research International 2018; 2018. |
| [28] |
Scribante A., Vallittu P.K., M. Özcan Fiber-reinforced composites for dental applications. BioMed Research International 2018; 2018. |
| [29] |
Astashina N.B., Mitrushchenkov Yu.N., Bazhin A.A. Pat. RF na poleznuyu model' RU 194083 ot 08.04.2019 g. Combined full removable prosthesis. Moscow, 2019 (in Russian). |
| [30] |
Асташина Н.Б., Митрущенков Ю.Н., Бажин А.А. Пат. РФ на полезную модель RU 194083 от 08.04.2019 г. Комбинированный полный съемный протез. М., 2019. |
| [31] |
Afanas'eva V.V., Arutyunov S.D., Muslov S.A. Calculation of the elastic modulus of the connecting layer of a layered system modeling a lamellar denture after repair. Aktual'nye problemy i dostizheniya v meditsine 2015; 162–166 (in Russian). |
| [32] |
Афанасьева В.В., Арутюнов С.Д., Муслов С.А. Расчет модуля упругости соединительного слоя слоистой системы, моделирующей пластинчатый зубной протез после починки. Актуальные проблемы и достижения в медицине 2015; 162–166. |
| [33] |
Abakarov S.I., Alimskiy A.V., Antonik M.M., Arutyunov A.S. Ortopedicheskaya stomatologiya: natsional'noe rukovodstvo v dvukh tomakh, vtoroe izdanie. Moscow: GEOTAR-Media 2022; 520 (in Russian). |
| [34] |
Абакаров С.И., Алимский А.В., Антоник М.М., Арутюнов А.С. Ортопедическая стоматология: национальное руководство в двух томах, второе издание. М.: ГЭОТАР-Медиа 2022; 520. |
Eco-Vector
/
| 〈 |
|
〉 |