[1] Tabatabaian F. Color aspect of monolithic zirconia restorations: A review of the literature[J]. J Prosthodont, 2019, 28(3): 276-287. [2] Lameira DP, Buarque e Silva WA, Andrade e Silva F, et al. Fracture strength of aged monolithic and bilayer zirconia-based crowns[J]. Biomed Res Int, 2015, 2015: 418641. [3] 万乾炳.口腔氧化锆修复材料分代之我见[J].国际口腔医学杂志,2021,48(2): 125-128. [4] Kolakarnprasert N, Kaizer MR, Kim DK, et al. New multi-layered zirconias: Composition, microstructure and translucency[J]. Dent Mater, 2019, 35(5):797-806. [5] Vardhaman S, Borba M, Kaizer MR, et al. Wear behavior and microstructural characterization of translucent multilayer zirconia[J]. Dent Mater, 2020, 36(11): 1407-1417. [6] Maruo Y, Yoshihara K, Irie M, et al. Flexural properties, bond ability, and crystallographic phase of highly translucent multi-layered zirconia[J]. J Appl Biomater Funct Mater, 2020, 18: 1-9. [7] Pekkan G, Pekkan K, Bayindir BC, et al. Factors affecting the translucency of monolithic zirconia ceramics: A review from materials science perspective[J]. Dent Mater J, 2020, 39(1): 1-8. [8] 林冰,鲍旭东,陈剑锋.牙科氧化锆陶瓷半透明性的影响因素及提高方法的研究进展[J].口腔颌面修复学杂志,2017,18(4): 246-249. [9] Subaşi MG, Alp G, Johnston WM, et al. Effect of thickness on optical properties of monolithic CAD-CAM ceramics[J]. J Dent, 2018, 71: 38-42. [10] Tuncel i, Turp I, Üşümez A. Evaluation of translucency of monolithic zirconia and framework zirconia materials[J]. J Adv Prosthodont, 2016, 8(3): 181-186. [11] Lee YK, Cha HS, Ahn JS. Layered color of all-ceramic core and veneer ceramics[J]. J Prosthet Dent, 2007, 97(5): 279-286. [12] Gracis S, Thompson VP, Ferencz JL, et al. A new classification system for all-ceramic and ceramic-like restorative materials[J]. Int J Prosthodont, 2015, 28(3): 227-235. [13] Bae EJ, Jeong ID, Kim WC, et al. A comparative study of additive and subtractive manufacturing for dental restorations[J]. J Prosthet Dent, 2017, 118(2): 187-193. [14] Tabatabaian F, Motamedi E, Sahabi M, et al. Effect of thickness of monolithic zirconia ceramic on final color[J]. J Prosthet Dent, 2018, 120(2): 257-262. [15] Kang CM, Peng TY, Huang HH. Effects of thickness of different types of high-translucency monolithic multilayer precolored zirconia on color accuracy: An in vitro study[J]. J Prosthet Dent, 2021, 126(4): 587.e1-587.e8. [16] Kim HK, Kim SH, Lee JB, et al. Effect of the amount of thickness reduction on color and translucency of dental monolithic zirconia ceramics[J]. J Adv Prosthodont, 2016, 8(1): 37-42. [17] 黄慧,张富强,孙静,等.三种稀土氧化物着色剂对氧化钇稳定的四方多晶氧化锆陶瓷性能的影响[J].中华口腔医学杂志,2006,41(6): 327-330. [18] Giti R, Hojati SA. Effect of varying thickness and number of coloring liquid applications on the color of anatomic contour monolithic zirconia ceramics[J]. J Dent (Shiraz), 2018, 19(4): 311-319. [19] Orhun E. The effect of coloring liquid dipping time on the fracture load and color of zirconia ceramics[J]. J Adv Prosthodont, 2017, 9(1): 67-73. [20] 史也,吴效民.氧化锆全瓷修复体颜色再现的影响因素[J].口腔颌面修复学杂志,2014,15(3): 179-182. [21] Kim HK, Kim SH. Optical properties of pre-colored dental monolithic zirconia ceramics[J]. J Dent, 2016, 55: 75-81. [22] 王宇华,黄慧,姜慧,等.升温速率对氧化锆陶瓷透光性的影响[J].口腔医学研究,2011,27(3): 177-179. [23] Fathy SM, El-Fallal AA, El-Negoly SA, et al. Translucency of monolithic and core zirconia after hydrothermal aging[J]. Acta Biomater Odontol Scand, 2015, 1(2-4): 86-92. [24] Grambow J, Wille S, Kern M. Impact of changes in sintering temperatures on characteristics of 4YSZ and 5YSZ[J]. J Mech Behav Biomed Mater, 2021, 120: 104586. [25] Ebeid K, Wille S, Hamdy A, et al. Effect of changes in sintering parameters on monolithic translucent zirconia[J]. Dent Mater, 2014, 30(12): e419-e424. [26] Attachoo S, Juntavee N. Role of sintered temperature and sintering time on spectral translucence of nano-crystal monolithic zirconia[J]. J Clin Exp Dent, 2019, 11(2): e146-e153. [27] Cokic SM, Vleugels J, Van Meerbeek B, et al. Mechanical properties, aging stability and translucency of speed-sintered zirconia for chairside restorations[J]. Dent Mater, 2020, 36(7): 959-972. [28] Moon W, Park JH, Lee HA, et al. Influence of additive firing on the surface characteristics, streptococcus mutans viability and optical properties of zirconia[J]. Materials (Basel), 2021, 14(5): 1286. [29] 李水根,庞莉苹,姚江武.烧结次数对牙科全瓷开放性总孔体积、透明度和色度的影响[J].华西口腔医学杂志,2012,30(4):417-419+424. [30] 江月梅,杨瑛,詹文辉,等.微波烧结和常规烧结对牙科用氧化锆半透性影响的对比研究[J].华西口腔医学杂志,2015,33(6):642-645. [31] Presenda A, Salvador MD, Penaranda-Foix FL, et al. Effect of microwave sintering on microstructure and mechanical properties in Y-TZP materials used for dental applications[J]. Ceram Int, 2015, 41(5): 7125-7132. [32] Kim HK, Kim SH, Lee JB, et al. Effect of polishing and glazing on the color and spectral distribution of monolithic zirconia[J]. J Adv Prosthodont, 2013, 5(3): 296-304. [33] Manziuc MM, Gasparik C, Burde AV, et al. Color and masking properties of translucent monolithic zirconia before and after glazing[J]. J Prosthodont Res, 2021, 65(3): 303-310. [34] Sen N, Us YO. Mechanical and optical properties of monolithic CAD-CAM restorative materials[J]. J Prosthet Dent, 2018, 119(4): 593-599. [35] Pop-Ciutrila IS, Ghinea R, Colosi HA, et al. Dentin translucency and color evaluation in human incisors, canines, and molars[J]. J Prosthet Dent, 2016, 115(4): 475-481. [36] Tabatabaian F, Karimi M, Namdari M. Color match of high translucency monolithic zirconia restorations with different thicknesses and backgrounds[J]. J Esthet Restor Dent, 2020, 32(6): 615-621. [37] Kang CM, Peng TY, Shimoe S. Color accuracy of different types of monolithic multilayer precolored zirconia ceramics[J]. J Prosthet Dent, 2020, 124(6): 789.e1-789.e7. [38] Malkondu O, Tinastepe N, Kazazoglu E. Influence of type of cement on the color and translucency of monolithic zirconia[J]. J Prosthet Dent, 2016, 116(6): 902-908. [39] Bacchi A, Boccardi S, Alessandretti R, et al. Substrate masking ability of bilayer and monolithic ceramics used for complete crowns and the effect of association with an opaque resin-based luting agent[J]. J Prosthodont Res, 2019, 63(3): 321-326. [40] Dai S, Chen C, Tang M, et al. Choice of resin cement shades for a high-translucency zirconia product to mask dark, discolored or metal substrates[J]. J Adv Prosthodont, 2019, 11(5): 286-296. [41] Dotto L, Soares Machado P, Slongo S, et al. Layering of discolored substrates with high-value opaque composites for CAD-CAM monolithic ceramics[J]. J Prosthet Dent, 2021, 126(1): 128.e1-128.e6. [42] Fondriest J. Shade matching in restorative dentistry: the science and strategies[J]. Int J Periodontics Restorative Dent, 2003, 23(5): 467-479. [43] 杨胜涛,周密,袁泉,等.三种环境光源对于高透分层氧化锆颜色的影响[J].四川大学学报(医学版),2022,53(1): 105-108. [44] Zhang F, Inokoshi M, Batuk M, et al. Strength, toughness and aging stability of highly-translucent Y-TZP ceramics for dental restorations[J]. Dent Mater, 2016, 32(12): e327-e337. [45] Nakamura T, Nakano Y, Usami H, et al. Translucency and low-temperature degradation of silica-doped zirconia: A pilot study[J]. Dent Mater J, 2016, 35(4): 571-577. [46] Zhang F, Vanmeensel K, Batuk M, et al. Highly-translucent, strong and aging-resistant 3Y-TZP ceramics for dental restoration by grain boundary segregation[J]. Acta Biomater, 2015, 16: 215-222. [47] Chevalier J, Gremillard L, Virkar AV, et al. The tetragonal-monoclinic transformation in zirconia: lessons learned and future trends[J]. J Am Ceram Soc, 2009, 92(9): 1901-1920. [48] Alghazzawi TF. The effect of extended aging on the optical properties of different zirconia materials[J]. J Prosthodont Res, 2017, 61(3): 305-314. [49] Ângela Maziero Volpato C, Francisco Cesar P, Antônio Bottino M. Influence of accelerated aging on the color stability of dental zirconia[J]. J Esthet Restor Dent, 2016, 28(5): 304-312. |