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İmplant üstü sabit protezlerde ölçü doğruluğunu etkileyen faktörler

Yıl 2020, Cilt: 2 Sayı: 3, 138 - 155, 30.10.2020

Öz

Diş hekimliğininde, hastaların kaybolan fonksiyon, fonetik ve estetik ihtiyaçlarını stomagnatik sistem içerisinde tekrar kazandırmak amaçlanır. İmplantlar diş eksikliğinde bu amaçları gerçekleştirmek için tedaviye sunulmuşlardır. İmplant destekli sabit protezlerin yapım aşamasında pasif uyumun sağlanması çok önemlidir ve bunun temelinde hiç şüphesiz ölçü bulunmaktadır. Bu makalemizin amacı implant üstü sabit protezlerde ölçü doğruluğunu etkileyen faktörleri araştırmak ve alacağımız ölçülerde bunları dikkate almaktır.

Kaynakça

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  • 3. Misch CE. The implant quality scale: a clinical assessment of the health--disease continuum. Oral Health. Temmuz 1998;88(7):15-20, 23-5; quiz 25-6.
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  • 8. Stellingsma C, Vissink A, Meijer HJA, Kuiper C, Raghoebar GM. Implantology and the severely resorbed edentulous mandible. Crit Rev Oral Biol Med. 2004;15(4):240–248.
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Factors affecting impression accuracy in implant-supported fixed prostheses

Yıl 2020, Cilt: 2 Sayı: 3, 138 - 155, 30.10.2020

Öz

In dentistry, it is aimed to regain the lost function, phonetic and aesthetic needs of the patients within the stomatognathic system. Implants are offered for treatment to achieve these goals in tooth deficiency. It is very important to ensure passive alignment during the construction of implant-supported fixed prostheses and undoubtedly the impression is based on this. The purpose of this article is to investigate the factors affecting impression accuracy in implant fixed prostheses and to consider these factors in the impressions we will take in the future.

Kaynakça

  • 1. Smith DE, Zarb GA. Criteria for success of osseointegrated endosseous implants. J Prosthet Dent. 01 Kasım 1989;62(5):567-72.
  • 2. Schnitman PA, Shulman LB. Recommendations of the consensus development conference on dental implants. J Am Dent Assoc. 01 Mart 1979;98(3):373-7.
  • 3. Misch CE. The implant quality scale: a clinical assessment of the health--disease continuum. Oral Health. Temmuz 1998;88(7):15-20, 23-5; quiz 25-6.
  • 4. Albrektsson T, Zarb G, Worthington P, Eriksson AR. The long-term efficacy of currently used dental implants: a review and proposed criteria of success. Int J Oral Maxillofac Implants. 1986;1(1):11–25.
  • 5. McKinney RV, Koth DC, Steflik DE. Clinical standards for dental implants. Clin Dent Harperstown PA Harper Row. 1984;27–41.
  • 6. Becker MJ. Ancient" dental implants": a recently proposed example from France evaluated with other spurious examples. Int J Oral Maxillofac Implants. 1999;14(1).
  • 7. Adell R, Lekholm U, Rockler B, Br\aanemark P-I. A 15-year study of osseointegrated implants in the treatment of the edentulous jaw. Int J Oral Surg. 1981;10(6):387–416.
  • 8. Stellingsma C, Vissink A, Meijer HJA, Kuiper C, Raghoebar GM. Implantology and the severely resorbed edentulous mandible. Crit Rev Oral Biol Med. 2004;15(4):240–248.
  • 9. Garg AK. The future role of growth factors in bone grafting. Dent Implantol Update. 1999;10(1):5–7.
  • 10. Ahmad P, Asif JA, Alam MK, Slots J. A bibliometric analysis of Periodontology 2000. Periodontol 2000. 2020;82(1):286–297.
  • 11. Albrektsson T, Sennerby L. State of the art in oral implants. J Clin Periodontol. 1991;18(6):474–481.
  • 12. Zarb GA. Clinical application of osseointegration. An introduction. Swed Dent J Suppl. 1985;28:7–9.
  • 13. Branemark P-I. Osseointegrated implants in the treatment of the edentulous jaw. Experience from a 10-year period. Scand J Plast Reconstr Surg Suppl. 1977;16.
  • 14. Cochran DL. A comparison of endosseous dental implant surfaces. J Periodontol. 1999;70(12):1523–1539.
  • 15. Sorrentino R, Gherlone EF, Calesini G, Zarone F. Effect of implant angulation, connection length, and impression material on the dimensional accuracy of implant impressions: an in vitro comparative study. Clin Implant Dent Relat Res. 2010;12:e63–e76.
  • 16. Filho HG, Mazaro JVQ, Vedovatto E, Assunção WG, Santos PH dos. Accuracy of Impression Techniques for Impants. Part 2–Comparison of Splinting Techniques. J Prosthodont Implant Esthet Reconstr Dent. 2009;18(2):172–176.
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  • 68. Carr AB. A Comparison of Impression Techniques for a Five-Implant Mandibular Model. Int J Oral Maxillofac Implants. 1991;6(4).
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  • 72. Chee W, Jivraj S. Impression techniques for implant dentistry. Br Dent J. 2006;201(7):429.
  • 73. Choi J-H, Lim Y-J, Kim C-W. Evaluation of the accuracy of implant-level impression techniques for internal-connection implant prostheses in parallel and divergent models. Int J Oral Maxillofac Implants. 2007;22(5).
  • 74. Nissan J, Ghelfan O. The press-fit implant impression coping technique. J Prosthet Dent. 2009;101(6):413–414.
  • 75. Burawi G, Houston F, Byrne D, Claffey N. A comparison of the dimensional accuracy of the splinted and unsplinted impression techniques for the Bone-Lock implant system. J Prosthet Dent. 1997;77(1):68–75.
  • 76. Burns J, Palmer R, Howe L, Wilson R. Accuracy of open tray implant impressions: An in vitro comparison of stock versus custom trays. J Prosthet Dent. 01 Mart 2003;89(3):250-5.
  • 77. Conrad HJ, Pesun IJ, DeLong R, Hodges JS. Accuracy of two impression techniques with angulated implants. J Prosthet Dent. 2007;97(6):349–356.
  • 78. Leinfelder KF, Isenberg BP, Essig ME. A new method for generating ceramic restorations: a CAD-CAM system. J Am Dent Assoc. 1989;118(6):703–707.
  • 79. Strub JR, Rekow ED, Witkowski S. Computer-aided design and fabrication of dental restorations: current systems and future possibilities. J Am Dent Assoc. 2006;137(9):1289–1296.
  • 80. Lee SJ, Gallucci GO. Digital vs. conventional implant impressions: efficiency outcomes. Clin Oral Implants Res. 2013;24(1):111–115.
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  • 82. Christensen GJ. Impressions are changing: deciding on conventional, digital or digital plus in-office milling. J Am Dent Assoc. 2009;140(10):1301–1304.
  • 83. Patel N. Integrating three-dimensional digital technologies for comprehensive implant dentistry. J Am Dent Assoc. 2010;141:20S–24S.
  • 84. Güth J-F, Keul C, Stimmelmayr M, Beuer F, Edelhoff D. Accuracy of digital models obtained by direct and indirect data capturing. Clin Oral Investig. 2013;17(4):1201–1208.
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  • 87. Assif D, Marshak B, Schmidt A. Accuracy of implant impression techniques. Int J Oral Maxillofac Implants. 1996;11(2).
  • 88. Vigolo P, Fonzi F, Majzoub Z, Cordioli G. An evaluation of impression techniques for multiple internal connection implant prostheses. J Prosthet Dent. 2004;92(5):470–476.
  • 89. Cabral LM, Guedes CG. Comparative analysis of 4 impression techniques for implants. Implant Dent. 2007;16(2):187–194.
  • 90. Naconecy MM, Teixeira ER, Shinkai RS, Frasca LCF, Cervieri A. Evaluation of the accuracy of 3 transfer techniques for implant-supported prostheses with multiple abutments. Int J Oral Maxillofac Implants. 2004;19(2).
  • 91. Vigolo P, Majzoub Z, Cordioli G. Evaluation of the accuracy of three techniques used for multiple implant abutment impressions. J Prosthet Dent. 2003;89(2):186–192.
  • 92. Assuncao WG, Gennari Filho H, Zaniquelli O. Evaluation of transfer impressions for osseointegrated implants at various angulations. Implant Dent. 2004;13(4):358–366.
  • 93. Del’Acqua MA, Arioli-Filho JN, Compagnoni MA. Accuracy of impression and pouring techniques for an implant-supported prosthesis. Int J Oral Maxillofac Implants. 2008;23(2).
  • 94. Phillips K, Goto Y. Alternative implant impression techniques. Compend Contin Educ Dent Jamesburg NJ 1995. 2002;23(2):170.
  • 95. Daoudi MF, Setchell DJ, Searson LJ. An evaluation of three implant level impression techniques for single tooth implant. Eur J Prosthodont Restor Dent. 2004;12(1):9–14.
  • 96. Spector MR, Donovan TE, Nicholls JI. An evaluation of impression techniques for osseointegrated implants. J Prosthet Dent. 1990;63(4):444–447.
  • 97. Jorge E, Funkenbusch PD, Ercoli C, Moss ME, Graser GN, Tallents RH. Verification jig for implant-supported prostheses: A comparison of standard impressions with verification jigs made of different materials. J Prosthet Dent. 2002;88(3):329–336.
  • 98. Baskai KG. Evaluation of Digital Implant Impressions using an Intra-oral Computerized Scanner (iTero) versus Conventional Implant Impressions: A 3-Dimensional Analysis of Accuracy. University of Toronto (Canada); 2014.
  • 99. Abdel-Azim T, Zandinejad A, Elathamna E, Lin W, Morton D. The Influence of Digital Fabrication Options on the Accuracy of Dental Implant–Based Single Units and Complete-Arch Frameworks. Int J Oral Maxillofac Implants. 2014;29(6).
  • 100. Joda T, Brägger U. Digital vs. conventional implant prosthetic workflows: a cost/time analysis. Clin Oral Implants Res. 2015;26(12):1430–1435.
  • 101. Joda T, Lenherr P, Dedem P, Kovaltschuk I, Bragger U, Zitzmann NU. Time efficiency, difficulty, and operator’s preference comparing digital and conventional implant impressions: a randomized controlled trial. Clin Oral Implants Res. 2017;28(10):1318–1323.
  • 102. Kupeyan HK, Lang BR. The role of the implant impression in abutment selection: a technical note. Int J Oral Maxillofac Implants. 1995;10(4).
  • 103. Alikhasi M, Siadat H, Monzavi A, Momen-Heravi F. Three-dimensional accuracy of implant and abutment level impression techniques: Effect on marginal discrepancy. J Oral Implantol. 2011;37(6):649–657.
  • 104. Lee S-J, Cho S-B. Accuracy of five implant impression technique: effect of splinting materials and methods. J Adv Prosthodont. 2011;3(4):177–185.
  • 105. Aktöre H, Kurtulmuş-Yılmaz S. The evaluation of factors that affect the accuracy of implant impressions. Cumhur Dent J. 18(2):14.
  • 106. Vigolo P, Majzoub Z, Cordioli G. Evaluation of the accuracy of three techniques used for multiple implant abutment impressions. J Prosthet Dent. 2003;89(2):186–192.
  • 107. Burawi G, Houston F, Byrne D, Claffey N. A comparison of the dimensional accuracy of the splinted and unsplinted impression techniques for the Bone-Lock implant system. J Prosthet Dent. 1997;77(1):68–75.
  • 108. Assif D, Nissan J, Varsano I, Singer A. Accuracy of implant impression splinted techniques: effect of splinting material. Int J Oral Maxillofac Implants. 1999;14(6):885–888.
  • 109. Dumbrigue HB, Gurun DC, Javid NS. Prefabricated acrylic resin bars for splinting implant transfer copings. J Prosthet Dent. 2000;84(1):108–110.
  • 110. Mojon P, Oberholzer J-P, Meyer J-M, Belser UC. Polymerization shrinkage of index and pattern acrylic resins. J Prosthet Dent. 1990;64(6):684–688.
  • 111. Ivanhoe JR, Adrian ED, Krantz WA, Edge MJ. An impression technique for osseointegrated implants. J Prosthet Dent. 1991;66(3):410–411.
  • 112. Assif D, Fenton A, Zarb G, Schmitt A. Comparative accuracy of implant impression procedures. Int J Periodontics Restorative Dent. 1992;12(2).
  • 113. Inturregui JA, Aquilino SA, Ryther JS, Lund PS. Evaluation of three impression techniques for osseointegrated oral implants. J Prosthet Dent. 1993;69(5):503–509.
  • 114. JÖRGENSEN KD. A new method of recording the elastic recovery of dental impression materials. Eur J Oral Sci. 1976;84(3):175–182.
  • 115. Assunção WG, Tabata LF, Cardoso A, Rocha EP, Gomes ÉA. Prosthetic Transfer Impression Accuracy Evaluation for Osseointegrated Implants. Implant Dent. Eylül 2008;17(3):248.
  • 116. Fernandez MA, Paez de Mendoza CY, Platt JA, Levon...... - Google Akademik [Internet]. [a.yer 07Nisan2020].Erişimadresi:https://scholar.google.com/scholar?hl=tr&as_sdt=0%2C5&q=Fernandez+MA%2C+Paez+de+Mendoza+CY%2C+Platt+JA%2C+Levon...+Google+Akademik+%5BInternet%5D.+%5Ba.yer+08+Kas%C4%B1m+2019%5D.+Eri%C5%9Fim+adresi%3A+https%3A%2F%2Fscholar.google.com.tr%2Fscholar%3Fhl%3Dtr%26as_sdt%3D0%2C5%26q%3DFernandez%2BMA%2C%2BPae+z%2Bde%2BMendoza%2BCY%2C%2BPlatt%2BJA%2C%2BLevon%2BJA%2C%2BHo%2BVijitra%2BST%2C%2BNimmo%2BA.%2BA%2Bco+mparative%2Bstudy%2Bof%2Bthe%2Baccuracy%2Bbetween%2Bplastic%2Band%2Bmetal%2Bimpression%2Btra+nsfer%2Bcopings%2Bfor%2Bimplant%2Brestorations.%2BJ%2BProsthodont%2B2013%253B22%253A367-+376.&btnG=
  • 117. Walker MP, Ries D, Borello B. Implant cast accuracy as a function of impression techniques and impression material viscosity. Int J Oral Maxillofac Implants. 2008;23(4).
  • 118. Ma T, Nicholls JI, Rubenstein JE. Tolerance measurements of various implant components. Int J Oral Maxillofac Implants. 1997;12(3).
  • 119. Kim S, Nicholls JI, Han C-H, Lee K-W. Displacement of implant components from impressions to definitive casts. Int J Oral Maxillofac Implants. 2006;21(5).
  • 120. Rubenstein JE, Ma T. Comparison of interface relationships between implant components for laser-welded titanium frameworks and standard cast frameworks. Int J Oral Maxillofac Implants. 1999;14(4).
Toplam 118 adet kaynakça vardır.

Ayrıntılar

Birincil Dil Türkçe
Konular Diş Hekimliği
Bölüm Prosthodontics and Maxillofacial Prosthetics
Yazarlar

Natig Bayramov 0000-0003-4201-6150

Yayımlanma Tarihi 30 Ekim 2020
Gönderilme Tarihi 9 Nisan 2020
Yayımlandığı Sayı Yıl 2020 Cilt: 2 Sayı: 3

Kaynak Göster

Vancouver Bayramov N. İmplant üstü sabit protezlerde ölçü doğruluğunu etkileyen faktörler. Dent & Med J - R. 2020;2(3):138-55.




"Dünyada herşey için, medeniyet için, hayat için, başarı için en gerçek yol gösterici ilimdir, fendir. İlim ve fennin dışında yol gösterici aramak gaflettir, cahilliktir, doğru yoldan sapmaktır. Yalnız ilmin ve fenin yaşadığımız her dakikadaki safhalarının gelişimini anlamak ve ilerlemeleri zamanında takip etmek şarttır. Bin, iki bin, binlerce yıl önceki ilim ve fen lisanının koyduğu kuralları, şu kadar bin yıl sonra bugün aynen uygulamaya kalkışmak elbette ilim ve fennin içinde bulunmak değildir."

M. Kemal ATATÜRK