Load-bearing properties of minimal-invasive monolithic lithium disilicate and zirconia occlusal onlays: finite element and theoretical analyses.
暂无分享,去创建一个
[1] Susanne Stampf,et al. Prospective clinical split-mouth study of pressed and CAD/CAM all-ceramic partial-coverage restorations: 7-year results. , 2013, The International journal of prosthodontics.
[2] C. Stanford,et al. Relative translucency of six all-ceramic systems. Part I: core materials. , 2002, The Journal of prosthetic dentistry.
[3] I. Krejci,et al. The Influence of Antagonist Standardization on Wear , 1999, Journal of dental research.
[4] M. Arksornnukit,et al. Compressive fracture resistance of porcelain laminates bonded to enamel or dentin with four adhesive systems. , 2007, Journal of prosthodontics : official journal of the American College of Prosthodontists.
[5] H. Maia,et al. Novel-design ultra-thin CAD/CAM composite resin and ceramic occlusal veneers for the treatment of severe dental erosion. , 2011, The Journal of prosthetic dentistry.
[6] J. Robert Kelly,et al. Development of a clinically validated bulk failure test for ceramic crowns. , 2010, The Journal of prosthetic dentistry.
[7] Albert J Feilzer,et al. The influence of design parameters on the FEA-determined stress distribution in CAD-CAM produced all-ceramic dental crowns. , 2005, Dental materials : official publication of the Academy of Dental Materials.
[8] Daniel Edelhoff,et al. Tooth structure removal associated with various preparation designs for anterior teeth. , 2002, The Journal of prosthetic dentistry.
[9] T. P. Weihs,et al. Nanoindentation mapping of the mechanical properties of human molar tooth enamel. , 2002, Archives of oral biology.
[10] G. Schwartz. Taxonomic and functional aspects of the patterning of enamel thickness distribution in extant large-bodied hominoids. , 2000, American journal of physical anthropology.
[11] Linda S. Pellicore,et al. Birth Defects Research Part B: Developmental and Reproductive Toxicology Early View (Online Version of Record published before inclusion in an issue) , 2011 .
[12] B. Lawn,et al. Overview: Damage in brittle layer structures from concentrated loads , 2002 .
[13] B. Darvell,et al. Stress distribution and failure mode of dental ceramic structures under Hertzian indentation. , 2003, Dental materials : official publication of the Academy of Dental Materials.
[14] P. Koidis,et al. Survival of ceramic veneers made of different materials after a minimum follow-up period of five years: a systematic review and meta-analysis. , 2012, The European journal of esthetic dentistry : official journal of the European Academy of Esthetic Dentistry.
[15] Yu Zhang,et al. Overview: Damage resistance of graded ceramic restorative materials. , 2012, Journal of the European Ceramic Society.
[16] W Jiang,et al. Stress distribution in molars restored with inlays or onlays with or without endodontic treatment: a three-dimensional finite element analysis. , 2010, The Journal of prosthetic dentistry.
[17] V. Thompson,et al. Contact fatigue response of porcelain-veneered alumina model systems. , 2012, Journal of biomedical materials research. Part B, Applied biomaterials.
[18] H. Dumfahrt,et al. Clinical performance of porcelain laminate veneers for up to 20 years. , 2012, The International journal of prosthodontics.
[19] Clinical indications for altering vertical dimension of occlusion. Functional and biologic considerations for reconstruction of the dental occlusion. , 2000, Quintessence international.
[20] S. BRODETSKY,et al. Theory of Plates and Shells , 1941, Nature.
[21] G. Schwartz,et al. Enamel thickness and the helicoidal wear plane in modern human mandibular molars. , 2000, Archives of oral biology.
[22] Mauro Fradeani,et al. Esthetic rehabilitation of a severely worn dentition with minimally invasive prosthetic procedures (MIPP). , 2012, The International journal of periodontics & restorative dentistry.
[23] M. Wolkewitz,et al. Influence of preparation design and ceramic thicknesses on fracture resistance and failure modes of premolar partial coverage restorations. , 2013, The Journal of prosthetic dentistry.
[24] B. Lawn,et al. Effect of an adhesive interlayer on the fracture of a brittle coating on a supporting substrate , 2003 .
[25] M. Behr,et al. Two-body wear of dental porcelain and substructure oxide ceramics , 2011, Clinical Oral Investigations.
[26] J R Kelly,et al. Clinically relevant approach to failure testing of all-ceramic restorations. , 1999, The Journal of prosthetic dentistry.
[27] E. D. Rekow,et al. Failure Modes in Ceramic‐Based Layer Structures: A Basis for Materials Design of Dental Crowns , 2007 .
[28] I. Denry,et al. State of the art of zirconia for dental applications. , 2008, Dental materials : official publication of the Academy of Dental Materials.
[29] Brian R. Lawn,et al. Designing damage-resistant brittle-coating structures: II. Trilayers , 2003 .
[30] C. Stanford,et al. Relative translucency of six all-ceramic systems. Part II: core and veneer materials. , 2002, The Journal of prosthetic dentistry.
[31] T. Chow,et al. Rehabilitating a patient with bruxism-associated tooth tissue loss: a literature review and case report. , 2003, General dentistry.
[32] E. D. Rekow,et al. Performance of Dental Ceramics: Challenges for Improvements , 2011, Journal of dental research.
[33] K Lyons,et al. Clinical trials in zirconia: a systematic review. , 2010, Journal of oral rehabilitation.
[34] Jan W V van Dijken,et al. A prospective 15-year evaluation of extensive dentin-enamel-bonded pressed ceramic coverages. , 2010, Dental materials : official publication of the Academy of Dental Materials.
[35] B. Lawn,et al. Fatigue and damage tolerance of Y-TZP ceramics in layered biomechanical systems. , 2004, Journal of biomedical materials research. Part B, Applied biomaterials.
[36] S A Gansky,et al. Mechanical properties of the dentinoenamel junction: AFM studies of nanohardness, elastic modulus, and fracture. , 2001, Journal of biomedical materials research.
[37] Huajian Gao,et al. Elastic contact versus indentation modeling of multi-layered materials , 1992 .
[38] Yu Zhang,et al. Improving the resistance to sliding contact damage of zirconia using elastic gradients. , 2010, Journal of biomedical materials research. Part B, Applied biomaterials.
[39] B. Lawn,et al. Use of contact testing in the characterization and design of all-ceramic crownlike layer structures: a review. , 2001, The Journal of prosthetic dentistry.
[40] B. Lawn,et al. Design maps for failure of all-ceramic layer structures in concentrated cyclic loading. , 2007, Acta materialia.
[41] K. Hiller,et al. Partial ceramic crowns: influence of ceramic thickness, preparation design and luting material on fracture resistance and marginal integrity in vitro. , 2007, Operative dentistry.
[42] E. D. Rekow,et al. Concerns of Hydrothermal Degradation in CAD/CAM Zirconia , 2010, Journal of dental research.
[43] B. Lawn,et al. A simple indentation stress strain relation for contacts with spheres on bilayer structures , 1998 .
[44] B. Lawn,et al. Long-term strength of ceramics for biomedical applications. , 2004, Journal of biomedical materials research. Part B, Applied biomaterials.
[45] Vanni Lughi,et al. Low temperature degradation -aging- of zirconia: A critical review of the relevant aspects in dentistry. , 2010, Dental materials : official publication of the Academy of Dental Materials.
[46] M. Kern,et al. Dynamic fatigue and fracture resistance of non-retentive all-ceramic full-coverage molar restorations. Influence of ceramic material and preparation design. , 2010, Dental materials : official publication of the Academy of Dental Materials.
[47] B. Lawn,et al. Characterization of damage modes in dental ceramic bilayer structures. , 2002, Journal of biomedical materials research.
[48] Kenneth J Anusavice,et al. Standardizing failure, success, and survival decisions in clinical studies of ceramic and metal-ceramic fixed dental prostheses. , 2012, Dental materials : official publication of the Academy of Dental Materials.
[49] M. Swain,et al. Biaxial flexural strength, elastic moduli, and x-ray diffraction characterization of three pressable all-ceramic materials. , 2003, The Journal of prosthetic dentistry.
[50] G. Macho,et al. Enamel thickness and the helicoidal occlusal plane. , 1994, American journal of physical anthropology.
[51] Yu Zhang,et al. Competition of fracture mechanisms in monolithic dental ceramics: flat model systems. , 2009, Journal of biomedical materials research. Part B, Applied biomaterials.
[52] J. Mixson,et al. Clinical evaluation of restored maxillary incisors: veneers vs. PFM crowns. , 1995, Journal of the American Dental Association.
[53] Pascal Magne,et al. In vitro fatigue resistance of CAD/CAM composite resin and ceramic posterior occlusal veneers. , 2010, The Journal of prosthetic dentistry.
[54] Daniel Edelhoff,et al. Tooth structure removal associated with various preparation designs for posterior teeth. , 2002, The International journal of periodontics & restorative dentistry.
[55] W. Soboyejo,et al. Bioinspired design of dental multilayers. , 2007, Journal of materials science. Materials in medicine.
[56] B. Lawn,et al. Fatigue sensitivity of Y-TZP to microscale sharp-contact flaws. , 2004, Journal of biomedical materials research. Part B, Applied biomaterials.
[57] S. Ringer,et al. Strength, fracture toughness and microstructure of a selection of all-ceramic materials. Part I. Pressable and alumina glass-infiltrated ceramics. , 2004, Dental materials : official publication of the Academy of Dental Materials.
[58] M. Molin,et al. Influence of film thickness on joint bend strength of a ceramic/resin composite joint. , 1996, Dental materials : official publication of the Academy of Dental Materials.