Effects of a low-shrinkage methacrylate monomer and monoacylphosphine oxide photoinitiator on curing efficiency and mechanical properties of experimental resin-based composites.
暂无分享,去创建一个
M. Dramićanin | I. Zeković | N. Mitrović | I. Cvijović-Alagić | V. Miletic | D. Manojlović | M. Milosevic
[1] J. Stansbury,et al. Polymerization development of "low-shrink" resin composites: Reaction kinetics, polymerization stress and quality of network. , 2013, Dental materials : official publication of the Academy of Dental Materials.
[2] D. Watts,et al. The relationship between cyclic hygroscopic dimensional changes and water sorption/desorption of self-adhering and new resin-matrix composites. , 2013, Dental materials : official publication of the Academy of Dental Materials.
[3] R. Moraes,et al. Color stability, conversion, water sorption and solubility of dental composites formulated with different photoinitiator systems. , 2013, Journal of dentistry.
[4] P. Vallittu,et al. Physical properties and depth of cure of a new short fiber reinforced composite. , 2013, Dental materials : official publication of the Academy of Dental Materials.
[5] J. Ferracane,et al. Sorption, solubility, shrinkage and mechanical properties of "low-shrinkage" commercial resin composites. , 2013, Dental materials : official publication of the Academy of Dental Materials.
[6] M. Hadis,et al. Progress in dimethacrylate-based dental composite technology and curing efficiency. , 2013, Dental materials : official publication of the Academy of Dental Materials.
[7] F. García-Godoy,et al. Interaction of LED light with coinitiator-containing composite resins: effect of dual peaks. , 2012, Journal of dentistry.
[8] M. Bradley,et al. Degree of conversion and microhardness of TPO-containing resin-based composites cured by polywave and monowave LED units. , 2012, Journal of dentistry.
[9] J. Ferracane,et al. A comparative study between crack analysis and a mechanical test for assessing the polymerization stress of restorative composites. , 2012, Dental materials : official publication of the Academy of Dental Materials.
[10] Anne Peutzfeldt,et al. Depth of cure of resin composites: is the ISO 4049 method suitable for bulk fill materials? , 2012, Dental materials : official publication of the Academy of Dental Materials.
[11] Bernard Nysten,et al. New insight into the "depth of cure" of dimethacrylate-based dental composites. , 2012, Dental materials : official publication of the Academy of Dental Materials.
[12] S. Prahl,et al. Curing efficiency of dental resin composites formulated with camphorquinone or trimethylbenzoyl-diphenyl-phosphine oxide. , 2012, Dental materials : official publication of the Academy of Dental Materials.
[13] B. Van Meerbeek,et al. Bonding of low-shrinking composites in high C-factor cavities. , 2012, Journal of dentistry.
[14] N. Ilie,et al. The effect of aging on the mechanical properties of nanohybrid composites based on new monomer formulations , 2012, Clinical Oral Investigations.
[15] N. Ilie,et al. The mechanical stability of nano-hybrid composites with new methacrylate monomers for matrix compositions. , 2012, Dental materials : official publication of the Academy of Dental Materials.
[16] V. Miletic,et al. Micro-Raman spectroscopic analysis of the degree of conversion of composite resins containing different initiators cured by polywave or monowave LED units. , 2012, Journal of dentistry.
[17] T. Maneski,et al. Analysis of local shrinkage patterns of self-adhering and flowable composites using 3D digital image correlation. , 2011, Quintessence international.
[18] Neil B. Cramer,et al. Recent Advances and Developments in Composite Dental Restorative Materials , 2011, Journal of dental research.
[19] J. Ferracane,et al. Photoinitiator type and applicability of exposure reciprocity law in filled and unfilled photoactive resins. , 2011, Dental materials : official publication of the Academy of Dental Materials.
[20] A. Santini. Current status of visible light activation units and the curing of light-activated resin-based composite materials. , 2010, Dental update.
[21] Jordan E. Boulden,et al. Characterization of N'Durance: a nanohybrid composite based on new nano-dimer technology. , 2010, Compendium of continuing education in dentistry.
[22] V. Miletic. Micro-Raman spectroscopic studies on the adhesive-dentine interface and the degree of conversion of dental adhesives , 2010 .
[23] J. Jeng,et al. The effect of BisGMA on cyclooxygenase-2 expression, PGE2 production and cytotoxicity via reactive oxygen species- and MEK/ERK-dependent and -independent pathways. , 2009, Biomaterials.
[24] S. Ban,et al. Effect of various visible light photoinitiators on the polymerization and color of light-activated resins. , 2009, Dental materials journal.
[25] R. Price,et al. Effect of delivering light in specific narrow bandwidths from 394 to 515nm on the micro-hardness of resin composites. , 2009, Dental materials : official publication of the Academy of Dental Materials.
[26] N. Moszner,et al. A partially aromatic urethane dimethacrylate as a new substitute for Bis-GMA in restorative composites. , 2008, Dental materials : official publication of the Academy of Dental Materials.
[27] D. Watts,et al. Synthesis, characterization, shrinkage and curing kinetics of a new low-shrinkage urethane dimethacrylate monomer for dental applications. , 2007, Dental materials : official publication of the Academy of Dental Materials.
[28] F. Rueggeberg,et al. Molar extinction coefficients and the photon absorption efficiency of dental photoinitiators and light curing units. , 2005, Journal of dentistry.
[29] R. Hickel,et al. In vitro embryotoxicity assessment with dental restorative materials. , 2005, Journal of dentistry.
[30] N. Satsangi,et al. Synthesis of low-shrinkage polymerizable liquid-crystal monomers. , 2004, Journal of biomedical materials research. Part B, Applied biomaterials.
[31] C. Kleverlaan,et al. Curing efficiency and heat generation of various resin composites cured with high-intensity halogen lights. , 2004, European journal of oral sciences.
[32] S. Imazato,et al. Estrogenicity of Fissure Sealants and Adhesive Resins Determined by Reporter Gene Assay , 2000, Journal of dental research.
[33] Y. Hashimoto,et al. Estrogenic activity of dental materials and bisphenol-A related chemicals in vitro. , 2000, Dental materials journal.
[34] A. Peutzfeldt,et al. Resin composites in dentistry: the monomer systems. , 1997, European journal of oral sciences.
[35] E. Greener,et al. Effect of photoinitiator on degree of conversion of unfilled light-cured resin. , 1994, Journal of dentistry.