[1] Kihara H, Hatakeyama W, Komine F, et al.Accuracy and practicality of intraoral scanner in dentistry:A literature review[J]. J Prosthodont Res. 2020; 64(2):109-113. [2] 中华口腔医学会口腔修复学专业委员会. 树脂陶瓷复合材料椅旁计算机辅助设计与辅助制作修复技术指南[J]. 中华口腔医学杂志, 2022, 57(9):895-898. [3] 王思维, 叶嘉慧, 刘云松, 等. 数字化虚拟仿真设计在口腔美学修复中的应用和研究进展[J]. 中华口腔医学杂志, 2022, 57(1):6. [4] 吴江, 余昊翰, 于海, 等. 应用数字化技术完成牙列缺损伴严重开口受限患者可摘局部义齿修复1例[J]. 中华口腔医学杂志, 2022, 57(6):4. [5] Skirbutis G, Dzingutė A, Masiliūnaitė V, et al.PEKK polymer’s properties and its use in prosthodontics. A review[J]. Stomatologija. 2018; 20(2):54-58. [6] Papathanasiou I, Kamposiora P, Papavasiliou G, et al.The use of PEKK in digital prosthodontics:A narrative review[J]. BMC Oral Health. 2020; 20(1):217. [7] Najeeb S, Zafar M S, Khurshid Z, et al.Applications of polyetheretherketone (PEKK) in oral implantology and prosthodontics[J]. J Prosthodont Res. 2016; 60(1):12-19. [8] Harb IE, Abdel-Khalek EA, Hegazy SA.CAD/CAM Constructed Poly(etheretherketone) (PEKK) Framework of Kennedy Class I Removable Partial Denture:A Clinical Report[J]. J Prosthodont. 2019; 28(2):e595-e598. [9] Zoidis P, Papathanasiou I, Polyzois G.The Use of a Modified Poly-Ether-Ether-Ketone (PEKK) as an Alternative Framework Material for Removable Dental Prostheses. A Clinical Report[J]. J Prosthodont. 2016; 25(7):580-584. [10] Mayinger F, Micovic D, Schleich A, et al.Retention force of polyetheretherketone and cobalt-chrome-molybdenum removable dental prosthesis clasps after artificial aging[J]. Clin Oral Investig. 2021; 25(5):3141-3149. [11] 赵铱民. 口腔修复学[M]. 第8版. 北京:人民卫生出版社, 2020. [12] Tannous F, Steiner M, Shahin R, et al.Retentive forces and fatigue resistance of thermoplastic resin clasps[J]. Dent Mater. 2012; 28(3):273-278. [13] Parr GR, Tharp GE, Rahn AO.Prosthodontic principles in the framework design of maxillary obturator prostheses[J]. J Prosthet Dent. 1989; 62(2):205-212. [14] Oh W, Roumanas ED.Optimization of maxillary obturator thickness using a double-processing technique[J]. J Prosthodont. 2008; 17(1):60-63. [15] Hanawa S, Kitaoka A, Koyama S, et al.Influence of maxillary obturator prostheses on facial morphology in patients with unilateral maxillary defects[J]. J Prosthet Dent. 2015; 113(1):62-70. [16] Park JH, Lee KS, Lee JY, et al.Fabricating a Maxillary Obturator Using an Intraoral Digital Impression:A Case History Report[J]. Int J Prosthodont. 2017; 30(3):266-268. [17] Brucoli M, Boffano P, Pezzana A, et al.The use of optical scanner for the fabrication of maxillary obturator prostheses[J]. Oral and Maxil Surg. 2020; 24(2):157-161. [18] Palavicini J, Kee E, Yu A.A Digital Workflow for Fabrication of a Maxillary Obturator[J]. Journal of dental technology:the peer-reviewed publication of the National Association of Dental Laboratories. 2021; 38(6):24-27. [19] Kattadiyil MT, Mursic Z, Alrumaih H, et al.Intraoral scanning of hard and soft tissues for partial removable dental prosthesis fabrication[J]. J Prosthet Dent. 2014; 112(3):444-448. [20] Tasopoulos T, Chatziemmanouil D, Kouveliotis G, et al.PEKK Maxillary Obturator Prosthesis Fabrication Using Intraoral Scanning, 3D Printing, and CAD/CAM[J]. Int J Prosthodont. 2020; 33(3):333-340. |