Maxillary Obturator Prosthesis Made with Polyetherketoneketone Using Optical Impression and CAD/CAM System
Author:
Affiliation:
1. Division of General Dentistry, Chiba Dental Center, Tokyo Dental College
2. Department of Removable Prosthodontics & Gerodontology, Tokyo Dental College
Publisher
Tokyo Dental College
Subject
General Medicine
Link
https://www.jstage.jst.go.jp/article/tdcpublication/64/1/64_2022-0020/_pdf
Reference33 articles.
1. 1) Alqurashi H, Khurshid Z, Syed AUY, Rashid Habib S, Rokaya D, Zafar MS (2021) Polyetherketoneketone (PEKK): An emerging biomaterial for oral implants and dental prostheses. J Adv Res 28: 87-95.
2. 2) Arakida I (2016) Some of the clinical notes on maxillofacial prosthetics by local practitioner. Ann Jpn Prosthodont Soc 8: 243-249.
3. 3) Baba K, Inukai M, John MT (2008) Feasibility of oral health-related quality of life assessment in prosthodontic patients using abbreviated Oral Health Impact Profile questionnaires. J Oral Rehabil 35: 224-228.
4. 4) Bidra AS, Taylor TD, Agar JR (2013) Computeraided technology for fabricating complete dentures: Systematic review of historical background, status, and future perspectives. J Prosthet Dent 109: 361-366.
5. 5) Brucoli M, Boffano P, Pezzana A, Chiara C, Arnaldo B (2020) The use of optical scanner for the fabrication of maxillary obturator prostheses. Oral Maxillofac Surg 24: 157-161.
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2. Combination of CAD/CAM technologies and conventional processing in the fabrication of a maxillary obturator prosthesis: a clinical report;Journal of Medicine and Life;2024-03
3. Prosthetic Treatment of Partially Edentulous Maxillofacial Defect Patients;Removable Partial Dentures;2024
4. PROSTHETIC TREATMENT OF A PATIENT WITH RESECTION OF THE HARD PALATE WITH AN OBTURATOR WITH A SILICONE BASE;MEDIS – International Journal of Medical Sciences and Research;2023-12-10
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