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Tytuł artykułu

Designing and manufacturing of implantoprosthetic fixed suprastructures in edentulous patients on the basis of digital impressions

Wybrane pełne teksty z tego czasopisma
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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Purpose: The aim of the paper is to present the method of computer aided planning and manufacturing of a prosthetic suprastructure based on 6 implants in the totally edentulous mandible using digital intraoral scans. Design/methodology/approach: TThe method of computer aided planning and manufacturing of the implantoprosthetic restoration in the completely edentulous mandible using digital scans is presented on the example of a real clinical case of a patient with a significant deficit of alveolar bone qualified for the implant treatment. The abutments and the final fixed metal-ceramic bridge was designed and manufactured only on the basis of digital scanning of the intraoral supporting area instead of using traditional impression materials and trays. Findings: The method of computer-aided design and manufacturing of fixed restorations in the mandible using a digital scan of the supporting area is a powerful technique for improving the treatment process, through which the clinician and the patient may obtain satisfactory results in terms of functionality and aesthetics. Practical implications: The experience gained by the authors of the article in the technique of computer aided designing and manufacturing of fixed bridges on the basis of digital intraoral scans allows for the formulation of rules that must be followed at both clinical and laboratory stages. The properly performed scanning allows to obtain greater precision of the final restoration in terms of fit and occlusal accuracy. Originality/value: This paper presents an original methodology of obtaining information about intraoral configuration of the soft tissues and the position of the implants with the use of digital scanning. This method allows for designing and manufacturing of both the abutments and the final restoration without using impression materials which is especially useful in patients with significant bone loss and the gag reflex.
Rocznik
Strony
163--171
Opis fizyczny
Bibliogr. 18 poz.
Twórcy
autor
  • Institute of Engineering Materials and Biomaterials, Silesian University of Technology, ul. Konarskiego 18a, 44-100 Gliwice, Poland
  • Centre of Medicine and Dentistry SOBIESKI, ul. 12 Sobieskiego, 44-100 Gliwice, Poland
Bibliografia
  • [1] V.A.R. Barão, J.A. Delben, J. Lima, T. Cabral, W.G. Assunçã, Comparison of different designs of implantretained overdentures and fixed full-arch implantsupported prosthesis on stress distribution in edentulous mandible – A computed tomography-based threedimensional finite element analysis, Journal of Biomechanics 46 (2013) 1312-1320.
  • [2] T.H. Kwon, P.A. Bain, L. Levin, Systematic review of short- (5-10 years) and long-term (10 years or more) survival and success of full-arch fixed dental hybrid prostheses and supporting implants, Journal of Dentistry 42 (2014) 1228-1241.
  • [3] P. Malo, M. de Araújo Nobre, A. Lopes, S.M. Moss, G.J. Molina, A longitudinal study of the survival of All-on-4 implants in the mandible with up to 10 years of follow-up, The Journal of the American Dental Association 142 (2011) 310-320.
  • [4] M.K.A. Azzam, A.A. Yurkstas, J. Kronman, The sublingual crescent extension and its relation to the stability and retention of mandibular complete dentures, The Journal of Prosthetic Dentistry 67 (1992) 205- 210.
  • [5] J. Żmudzki, G. Chladek, P. Malara, L. Dobrzański. The simulation of a mastication efficiency of the mucous-borne complete dentures, Archives of Material Science and Engineering 63 (2013) 75-86.
  • [6] A.Z. Mustafa, Effect of the lingual ledge of neutral zone impression on the retention and stability of mandibular complete denture in elders with atrophied alveolar ridge, Tanta Dental Journal 12 (2015) 111-118.
  • [7] Z. Sun, S.W. Herring, B.C. Tee, J. Gales, Alveolar ridge reduction after tooth extraction in adolescents: An animal study, Archives of Oral Biology 58 (2013) 813-825.
  • [8] M. Mounir, G. Beheiri, W. El-Beialy, Assessment of marginal bone loss using full thickness versus partial thickness flaps for alveolar ridge splitting and immediate implant placement in the anterior maxilla, International Journal of Oral and Maxillofacial Surgery 43 (2014) 1373-1380.
  • [9] D.T. Garlock, P.H. Buschang, E.A. Araujo, R.G. Behrents, K.B. Kim, Evaluation of marginal alveolar bone in the anterior mandible with pretreatment and posttreatment computed tomography in nonextraction patients, American Journal of Orthodontics and Dentofacial Orthopedics 149 (2016) 192-201.
  • [10] R. Emmanuel, S. Palanisamy, S.M. Chen, K. Chelladurai, S. Padmavathy, M. Saravanan, P. Prakash, M. Ajmal Ali, Fahad M.A. Al-Hemaid, Antimicrobial efficacy of green synthesized drug blended silver nanoparticles against dental caries and periodontal disease causing microorganisms, Materials Science and Engineering 56 (2015) 374-379.
  • [11] J. Du, J.H. Lee, A.T. Jang, A. Gu, M. Hossaini-Zadeh, R. Prevost, D.A. Curtis, S.P. Ho, Biomechanics and strain mapping in bone as related to immediatelyloaded dental implants, Journal of Biomechanics 48 (2015) 3486-3494.
  • [12] Y.H. Pan, K.W. Chen, T.M. Lin, Y.M. Chang, Investigation of the implant-supported overdentures in the completely edentulous mandibles, Journal of Dental Sciences 10 (2015) 444-449.
  • [13] H.S. Chang, Y.D. Hsieh, M.L. Hsu, Long-term survival rate of implant -supported overdentures with various attachment systems: A 20-year retrospective study, Journal of Dental Sciences 10 (2015) 55-60.
  • [14] U. Schepke, H.J.A. Meijer, W. Kerdijk, M.S. Cune, Digital versus analog complete-arch impressions for single-unit premolar implant crowns: Operating time and patient preference, The Journal of Prosthetic Dentistry 114 (2015) 403-406.
  • [15] S. Kurtulmus-Yilmaz, O. Ozan, T. B. Ozcelik, A. Yagiz, Digital evaluation of the accuracy of impression techniques and materials in angulated implants, Journal of Dentistry 42 (2014) 1551-1559.
  • [16] J.H. Lee, Intraoral digital impression for fabricating a replica of an implant-supported interim prosthesis, The Journal of Prosthetic Dentistry 115 (2016) 145- 149.
  • [17] S.J. Lee, R.X. MacArthur IV, G.O. Gallucci, An evaluation of student and clinician perception of digital and conventional implant impressions, The Journal of Prosthetic Dentistry 110 (2013) 420-423.
  • [18] B.M. Stapleton, W.S. Lin, A. Ntounis, B.T. Harris, D. Morton, Application of digital diagnostic impression, virtual planning, and computer-guided implant surgery for a CAD/CAM-fabricated, implant-supported fixed dental prosthesis: A clinical report, The Journal of Prosthetic Dentistry 112 (2014) 402-408.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-0f235388-51aa-458b-8797-72f9add327ec
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