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CAD-CAM VE LAZER SİNTERLEME TEKNİKLERİ İLE ÜRETİLEN METAL ALT YAPILI SERAMİK RESTORASYONLARDA MARJİNAL UYUM

Year 2018, Volume: 28 Issue: 1, 125 - 132, 28.03.2018
https://doi.org/10.17567/ataunidfd.410511

Abstract







Diğer
birçok endüstri alanında olduğu gibi dental teknoloji alanında da üretim
safhaları gittikçe artan bir oranda makineleşmeye başlamıştır. Bilgisayar
teknolojisindeki gelişmeler ile bireysel parçaların uygun maliyetli üretimi
sağlanmaktadır. Son yıllarda bilgisayar yardımı ile üretilmiş restorasyonların
kullanımı yaygınlaşmıştır. Restorasyonların kalitesi ve klinik başarısı
değerlendirilirken marjinal adaptasyon temel belirleyici özelliktir.  Bu çalışmanın amacı, metal seramik
restorasyonların alt yapının hazırlanmasında kullanılan CAD-CAM ve Lazer
sinterleme sistemlerinin avantaj ve dezavantajları, sınıflandırılması ve bu
sistemlerde kullanılan materyaller ve sistemi oluşturan ekipmanlar hakkında ve
ilgili sistemlerle yapılmış marjinal uyum çalışmaları ile ilgili bilgi
vermektir.




Anahtar Kelimeler: CAD-CAM, lazer
sinterleme, marjinal uyum 



MARGINAL ADAPTATION
OF METAL-CERAMIC FIXED PARTIAL DENTURES FABRICATED BY CAD-CAM AND LASER
SINTERING





ABSTRACT




As in many other
industries, production stages are increasingly becoming automated in dental
technology. Advances in computer technology now enable cost-effective
production of individual pieces. Dental restorations produced with computer
assistance have become more common in recent years. The marginal adaptation is
the most important factor when the quality and clinical success of a
restoration was evaluated. The aim of this article was to give an idea about
the CAD/CAM and laser sintering technologies and systems available for
dentistry today. The advantages, disadvantages, classification and equipment’s
of these systems and the studies about the marginal adaptation will discussed
too.

Keywords: CAD-CAM, laser sintering , marginal adaptation









References

  • 1. Beuer F, Schweiger J, Edelhoff D. Digital dentistry: an overview of recent developments for CAD/CAM generated restorations. Br Dent J 2008; 204: 505-11.
  • 2. Miyazaki T, Hotta Y, Kunii J, Kuriyama S, Tamaki Y. A review of dental CAD/CAM: current status and future perspectives from 20 years of experience. Dent Mater J 2009; 28: 44-56.
  • 3. Christensen G J. Computerized restorative dentistry. J Am Dent Assoc 2001; 132: 1301-3.
  • 4. Mehl A, Hickel R. Current State of Development and Perspective of Machine Based Production Methods for Dental Restorations. Int J Comput Dent 1999; 2: 9-35.
  • 5. Luthy H, Filser F, Loeffel O, Schumacher M, Gauckler LJ, Hammerle CHF. Strength and reliability of four-unit all-ceramic posterior bridges. Dent Mater.2005; 21: 930-7.
  • 6. Reich S, Wichmann M, Nkenke E, Proeschel P. Clinical fit of all-ceramic threeunit fixed partial dentures, generated with three different CAD/CAM systems. Eur J Oral Sci. 2005; 113: 174-9.
  • 7. Witkowski S, Komine F, Gerds T. Marginal accuracy of titanium copings fabricated by casting and CAD/CAM techniques. J Prosthet Dent 2006; 96: 47-52.
  • 8. 8).Webber B, McDonald A, Knowles J. An in vitro study of the compressive load at fracture of Procera AllCeram crowns with varying thickness of veneer porcelain. J Prosthet Dent 2003; 89: 154-60.
  • 9. Reiss B. Cerec standard 3-D occlusal contouring in comparison with the new biogeneric occlusal morphing: a case report. Int J Comput Dent 2007; 10: 69-75.
  • 10. Quante K, Quintas AF, Oliveira F, Bottino MA. Vertical marginal discrepancy of ceramic copings with different ceramic materials, finish lines, and luting agents: an in vitro evaluation. J Prosthet Dent 2004; 92: 250-7.
  • 11. Tinschert J, Natt G, Hassenpflug S, Spiekermann H. Status of current CAD/CAM technology in dental medicine. Int J Comput Dent 2004; 7: 25-45.
  • 12. Santos EC, Shiomi M, Osakada K, Laoui T. Rapid manufacturing of metal components by laser forming. Int J Mach Tools Manuf 2006; 46: 1459-68.
  • 13. Delikanlı K, Sofu M, Bekci U. Üretim sektöründe hızlı direkt imalat sistemlerinin yeri ve önemi. MTED 2005; 4: 33-9.
  • 14. Azari A, Nikzad S. The evolution of rapid prototyping in dentistry: a review. Rapid Prototyping J 2009; 15: 216-25.
  • 15. Özuğur B. Hızlı Prototipleme Teknikleri ile Kompleks Yapıdaki Parçaların Üretilebilirliklerinin Araştırılması. Gazi Üniversitesi en Bilimleri Enstitüsü.Yüksek Lisans Tezi, 2006, Ankara, (Danışman: Yard. Doç. Dr. İhsan Korkut).
  • 16. Uysal H. Hızlı Prototip Üretimi. Yıldız Teknik Üniversitesi, Makine Mühendisliği Anabilimdalı İmal Usulleri Programı. Yüksek Lisans Tezi, 2000,İstanbul, (Danışman: Prof. Dr. Erhan Altan).
  • 17. Sundar MJ, Chikmagalur SB, Pasha F. Marginal fit and microleakage of cast and metal laser sintered copings—An in vitro study. J Prosthodont Res. 2014; 58: 252–8.
  • 18. Shokry TE, Attia M, Mosleh I, Elhosary M, Hamza T, Shen C. Effect of metal selection and porcelain firing on the marginal accuracy of titanium-based metal ceramic restorations. J Prosthet Dent 2010; 103: 45-52.
  • 19. Harish V, Mohamed Ali SA, Jagadesan N, Mohamed I, Siva S, Debasish B, Febel H. Evaluation of Internal and Marginal Fit of Two Metal Ceramic System – In Vitro Study. J Clin Diagn Res 2014; 8: 53–6.
  • 20. Xu D, Xiang N, Wei B. The marginal fit of selective laser melting fabricated metal crowns: an in vitro study. J Prosthet Dent 2014; 112: 1437-40.
  • 21. Huang Z, Zhang L, Zhu J, Zhang X. Clinical marginal crowns fabricated with a selective laser melting technology. J Prosthet Dent 2015; 113: 623-7.
  • 22. Patil A, Singh K, Sahoo S, Suvarna S, Kumar P, Singh A. Comparative assessment of marginal accuracy of grade II titanium and Ni-Cr alloy before and after ceramic firing: An in vitro study. Eur J Dent 2013; 7: 272-7.
  • 23. Kim KB, Kim JH, Kim WC, Kim HY, Kim JH. Evaluation of the marginal and internal gap of metal-ceramic crown fabricated with a selective laser sintering technology: two- and three-dimensional replica techniques.J Adv Prosthodont 2013; 5: 179-86.
  • 24. Park JK, Kim HY, Kim WC, Kim JH. Accuracy evaluation of metal copings fabricated by computer-aided milling and direct metal laser sintering systems. J Adv Prosthodont 2015; 7: 122-8.
  • 25. Ucar Y, Akova T, Akyil MS, Brantley WA. Internal fit evaluation of crowns prepared using a new dental crown fabrication technique: laser-sintered Co-Cr crowns. J Prosthet Dent 2009; 102: 253-9.
  • 26. Örtorp A, Jönsson D, Mouhsen A, von Steyern PV. The fit of cobalt- chromium three-unit fixed dental prostheses fabricated with four different techniques: A comparative in vitro study. Dent Mater 2011; 27: 356-63.
  • 27. Kim KB, Kim WC, Kim HY, Kim JH. An evaluation of marginal fit of three-unit fixed dental prostheses fabricated by direct metal laser sintering system. Dent Mater. 2013; 29: 91-6.
  • 28. Nesse H, Ulstein DM, Vaage MM, Qilo M. Internal and marginal fit of cobaltchromium fixed dental prostheses fabricated with 3 different techniques. J Prosthet Dent 2015; 114: 686-92.
Year 2018, Volume: 28 Issue: 1, 125 - 132, 28.03.2018
https://doi.org/10.17567/ataunidfd.410511

Abstract

References

  • 1. Beuer F, Schweiger J, Edelhoff D. Digital dentistry: an overview of recent developments for CAD/CAM generated restorations. Br Dent J 2008; 204: 505-11.
  • 2. Miyazaki T, Hotta Y, Kunii J, Kuriyama S, Tamaki Y. A review of dental CAD/CAM: current status and future perspectives from 20 years of experience. Dent Mater J 2009; 28: 44-56.
  • 3. Christensen G J. Computerized restorative dentistry. J Am Dent Assoc 2001; 132: 1301-3.
  • 4. Mehl A, Hickel R. Current State of Development and Perspective of Machine Based Production Methods for Dental Restorations. Int J Comput Dent 1999; 2: 9-35.
  • 5. Luthy H, Filser F, Loeffel O, Schumacher M, Gauckler LJ, Hammerle CHF. Strength and reliability of four-unit all-ceramic posterior bridges. Dent Mater.2005; 21: 930-7.
  • 6. Reich S, Wichmann M, Nkenke E, Proeschel P. Clinical fit of all-ceramic threeunit fixed partial dentures, generated with three different CAD/CAM systems. Eur J Oral Sci. 2005; 113: 174-9.
  • 7. Witkowski S, Komine F, Gerds T. Marginal accuracy of titanium copings fabricated by casting and CAD/CAM techniques. J Prosthet Dent 2006; 96: 47-52.
  • 8. 8).Webber B, McDonald A, Knowles J. An in vitro study of the compressive load at fracture of Procera AllCeram crowns with varying thickness of veneer porcelain. J Prosthet Dent 2003; 89: 154-60.
  • 9. Reiss B. Cerec standard 3-D occlusal contouring in comparison with the new biogeneric occlusal morphing: a case report. Int J Comput Dent 2007; 10: 69-75.
  • 10. Quante K, Quintas AF, Oliveira F, Bottino MA. Vertical marginal discrepancy of ceramic copings with different ceramic materials, finish lines, and luting agents: an in vitro evaluation. J Prosthet Dent 2004; 92: 250-7.
  • 11. Tinschert J, Natt G, Hassenpflug S, Spiekermann H. Status of current CAD/CAM technology in dental medicine. Int J Comput Dent 2004; 7: 25-45.
  • 12. Santos EC, Shiomi M, Osakada K, Laoui T. Rapid manufacturing of metal components by laser forming. Int J Mach Tools Manuf 2006; 46: 1459-68.
  • 13. Delikanlı K, Sofu M, Bekci U. Üretim sektöründe hızlı direkt imalat sistemlerinin yeri ve önemi. MTED 2005; 4: 33-9.
  • 14. Azari A, Nikzad S. The evolution of rapid prototyping in dentistry: a review. Rapid Prototyping J 2009; 15: 216-25.
  • 15. Özuğur B. Hızlı Prototipleme Teknikleri ile Kompleks Yapıdaki Parçaların Üretilebilirliklerinin Araştırılması. Gazi Üniversitesi en Bilimleri Enstitüsü.Yüksek Lisans Tezi, 2006, Ankara, (Danışman: Yard. Doç. Dr. İhsan Korkut).
  • 16. Uysal H. Hızlı Prototip Üretimi. Yıldız Teknik Üniversitesi, Makine Mühendisliği Anabilimdalı İmal Usulleri Programı. Yüksek Lisans Tezi, 2000,İstanbul, (Danışman: Prof. Dr. Erhan Altan).
  • 17. Sundar MJ, Chikmagalur SB, Pasha F. Marginal fit and microleakage of cast and metal laser sintered copings—An in vitro study. J Prosthodont Res. 2014; 58: 252–8.
  • 18. Shokry TE, Attia M, Mosleh I, Elhosary M, Hamza T, Shen C. Effect of metal selection and porcelain firing on the marginal accuracy of titanium-based metal ceramic restorations. J Prosthet Dent 2010; 103: 45-52.
  • 19. Harish V, Mohamed Ali SA, Jagadesan N, Mohamed I, Siva S, Debasish B, Febel H. Evaluation of Internal and Marginal Fit of Two Metal Ceramic System – In Vitro Study. J Clin Diagn Res 2014; 8: 53–6.
  • 20. Xu D, Xiang N, Wei B. The marginal fit of selective laser melting fabricated metal crowns: an in vitro study. J Prosthet Dent 2014; 112: 1437-40.
  • 21. Huang Z, Zhang L, Zhu J, Zhang X. Clinical marginal crowns fabricated with a selective laser melting technology. J Prosthet Dent 2015; 113: 623-7.
  • 22. Patil A, Singh K, Sahoo S, Suvarna S, Kumar P, Singh A. Comparative assessment of marginal accuracy of grade II titanium and Ni-Cr alloy before and after ceramic firing: An in vitro study. Eur J Dent 2013; 7: 272-7.
  • 23. Kim KB, Kim JH, Kim WC, Kim HY, Kim JH. Evaluation of the marginal and internal gap of metal-ceramic crown fabricated with a selective laser sintering technology: two- and three-dimensional replica techniques.J Adv Prosthodont 2013; 5: 179-86.
  • 24. Park JK, Kim HY, Kim WC, Kim JH. Accuracy evaluation of metal copings fabricated by computer-aided milling and direct metal laser sintering systems. J Adv Prosthodont 2015; 7: 122-8.
  • 25. Ucar Y, Akova T, Akyil MS, Brantley WA. Internal fit evaluation of crowns prepared using a new dental crown fabrication technique: laser-sintered Co-Cr crowns. J Prosthet Dent 2009; 102: 253-9.
  • 26. Örtorp A, Jönsson D, Mouhsen A, von Steyern PV. The fit of cobalt- chromium three-unit fixed dental prostheses fabricated with four different techniques: A comparative in vitro study. Dent Mater 2011; 27: 356-63.
  • 27. Kim KB, Kim WC, Kim HY, Kim JH. An evaluation of marginal fit of three-unit fixed dental prostheses fabricated by direct metal laser sintering system. Dent Mater. 2013; 29: 91-6.
  • 28. Nesse H, Ulstein DM, Vaage MM, Qilo M. Internal and marginal fit of cobaltchromium fixed dental prostheses fabricated with 3 different techniques. J Prosthet Dent 2015; 114: 686-92.
There are 28 citations in total.

Details

Primary Language Turkish
Subjects Health Care Administration
Journal Section Derleme
Authors

Abdullah Keleş This is me

Ş. Begüm Türker

Publication Date March 28, 2018
Published in Issue Year 2018 Volume: 28 Issue: 1

Cite

APA Keleş, A., & Türker, Ş. B. (2018). CAD-CAM VE LAZER SİNTERLEME TEKNİKLERİ İLE ÜRETİLEN METAL ALT YAPILI SERAMİK RESTORASYONLARDA MARJİNAL UYUM. Atatürk Üniversitesi Diş Hekimliği Fakültesi Dergisi, 28(1), 125-132. https://doi.org/10.17567/ataunidfd.410511
AMA Keleş A, Türker ŞB. CAD-CAM VE LAZER SİNTERLEME TEKNİKLERİ İLE ÜRETİLEN METAL ALT YAPILI SERAMİK RESTORASYONLARDA MARJİNAL UYUM. Ata Diş Hek Fak Derg. March 2018;28(1):125-132. doi:10.17567/ataunidfd.410511
Chicago Keleş, Abdullah, and Ş. Begüm Türker. “CAD-CAM VE LAZER SİNTERLEME TEKNİKLERİ İLE ÜRETİLEN METAL ALT YAPILI SERAMİK RESTORASYONLARDA MARJİNAL UYUM”. Atatürk Üniversitesi Diş Hekimliği Fakültesi Dergisi 28, no. 1 (March 2018): 125-32. https://doi.org/10.17567/ataunidfd.410511.
EndNote Keleş A, Türker ŞB (March 1, 2018) CAD-CAM VE LAZER SİNTERLEME TEKNİKLERİ İLE ÜRETİLEN METAL ALT YAPILI SERAMİK RESTORASYONLARDA MARJİNAL UYUM. Atatürk Üniversitesi Diş Hekimliği Fakültesi Dergisi 28 1 125–132.
IEEE A. Keleş and Ş. B. Türker, “CAD-CAM VE LAZER SİNTERLEME TEKNİKLERİ İLE ÜRETİLEN METAL ALT YAPILI SERAMİK RESTORASYONLARDA MARJİNAL UYUM”, Ata Diş Hek Fak Derg, vol. 28, no. 1, pp. 125–132, 2018, doi: 10.17567/ataunidfd.410511.
ISNAD Keleş, Abdullah - Türker, Ş. Begüm. “CAD-CAM VE LAZER SİNTERLEME TEKNİKLERİ İLE ÜRETİLEN METAL ALT YAPILI SERAMİK RESTORASYONLARDA MARJİNAL UYUM”. Atatürk Üniversitesi Diş Hekimliği Fakültesi Dergisi 28/1 (March 2018), 125-132. https://doi.org/10.17567/ataunidfd.410511.
JAMA Keleş A, Türker ŞB. CAD-CAM VE LAZER SİNTERLEME TEKNİKLERİ İLE ÜRETİLEN METAL ALT YAPILI SERAMİK RESTORASYONLARDA MARJİNAL UYUM. Ata Diş Hek Fak Derg. 2018;28:125–132.
MLA Keleş, Abdullah and Ş. Begüm Türker. “CAD-CAM VE LAZER SİNTERLEME TEKNİKLERİ İLE ÜRETİLEN METAL ALT YAPILI SERAMİK RESTORASYONLARDA MARJİNAL UYUM”. Atatürk Üniversitesi Diş Hekimliği Fakültesi Dergisi, vol. 28, no. 1, 2018, pp. 125-32, doi:10.17567/ataunidfd.410511.
Vancouver Keleş A, Türker ŞB. CAD-CAM VE LAZER SİNTERLEME TEKNİKLERİ İLE ÜRETİLEN METAL ALT YAPILI SERAMİK RESTORASYONLARDA MARJİNAL UYUM. Ata Diş Hek Fak Derg. 2018;28(1):125-32.

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