« Previous
Dental Materials
Volume 26, Issue 3
, Pages e159-e169
, March 2010
Effect of low-elastic modulus liner and base as stress-absorbing layer in composite resin restorations
References
- . Amalgam vs. composite resin. J Am Dent Assoc. 1998;129:1757–1759
- . Four-year clinical evaluation of posterior resin-based composite restorations placed using the total-etch technique. J Esthet Restor Dent. 2001;13:50–57
- . Conference report. Direct adhesive materials: current perceptions and evidence––future solutions. J Dent. 2001;29:307–316
- . Microleakage and polymerization shrinkage of various polymer restorative materials. J Dent Child. 2008;75:125–133
- . Complete marginal seal of class V resin composite restorations effected by increased flexibility. J Dent Res. 1990;69:1240–1243
- . The competition between the composite–dentin bond strength and the polymerization contraction stress. J Dent Res. 1984;63:1396–1399
- . A review of polymerization contraction: the influence of stress development versus stress relief. Oper Dent. 1996;21:17–24
- . 3D-finite element analyses of cusp movements in a human upper premolar, restored with adhesive resin-based composites. J Biomech. 2001;34:1269–1277
- . Curing shrinkage and volumetric changes of resin-modified glass ionomer restorative materials. Dent Mater. 1995;11:359–362
- . A clinical evaluation of posterior composite resin restorations: 8-year findings. J Dent. 1998;26:311–317
- . Effect of adhesive layer properties on stress distribution in composite restorations––a 3D finite element analysis. Dent Mater. 2002;18:295–303
- . Changing restorative traditions: the use of bases and liners. J Am Dent Assoc. 1994;125:65–67
- . The effects of filling techniques and a low-viscosity composite liner on bond strength to class II cavities. J Dent. 2003;31:59–66
- . Polymerization shrinkage: effects of boundary conditions and filling technique of resin composite restorations. J Dent. 2004;32:459–470
- . Volumetric contraction in some tooth-coloured restorative materials. Aust Dent J. 2007;52:112–117
- . Volumetric dimensional change of six direct core materials. Dent Mater. 2004;20:345–351
- . A characterization of first-generation flowable composites. J Am Dent Assoc. 1998;129:567–577
- . Contraction stress of flowable composite materials and their efficacy as stress-relieving layers. J Am Dent Assoc. 2003;134:721–728
- . Marginal and internal adaptation of extended class I restorations lined with flowable composites. J Dent. 2003;31:231–239
- . Microleakage of posterior packable resin composites with and without flowable liners. Oper Dent. 2001;26:302–307
- . A morphological and tensile bond strength evaluation of an unfilled adhesive with low-viscosity composites and a filled adhesive in one and two coats. J Dent. 2001;29:435–441
- . Does an incremental filling technique reduce polymerization shrinkage stresses?. J Dent Res. 1996;75:871–878
- . Do dental composites always shrink toward the light?. J Dent Res. 1998;77:1435–1445
- . Photoelastic analysis of polymerization contraction stresses in resin composite restorations. J Dent. 1998;26:165–171
- Effects of incremental curing on contraction stresses associated with various resin composite buildups. Quintessence Int. 2004;35:299–306
- . Setting stresses in composites for two different curing modes. Dent Mater. 1993;9:2–5
- . Finite element analysis of strength characteristics of various resin based restorative materials in class V cavities. J Oral Rehabil. 2003;30:630–641
- . Setting shrinkage and hygroscopic expansion of resin-modified glass-ionomer in experimental cylindrical cavities. Dent Mater J. 1999;18:63–75
- . Biomechanics in clinical dentistry. Chicago: Quintessence Publishing Co.; 1987;
- . Experimental stress analysis. 2nd ed.. New York: McGraw-Hill Inc.; 1978;
- . Polymerization contraction and conversion of light-curing BisGMA-based methacrylate resins. Biomaterials. 1993;14:871–875
- . Resin composites in dentistry: the monomer systems. Eur J Oral Sci. 1997;105:97–116
- . Reduction of polymerization shrinkage stress and marginal microleakage using soft-start polymerization. J Esthet Restor Dent. 2003;15:93–103
- . Theoretical considerations of contraction stress. Compend Contin Educ Dent Suppl. 1999;25:S24–32
- . The elastic moduli across various types of resin/dentin interfaces. Dent Mater. 2008;24:1102–1106
- . Dental materials and their selection. 2nd ed.. Chicago: Quintessence Publishing Co.; 1997;
- . Polymerization shrinkage and elasticity of flowable composites and filled adhesives. Dent Mater. 1999;15:128–137
- . Polymerization shrinkage and microleakage in class II cavities of various resin composites. Oper Dent. 2003;28:635–641
- . The influence of water sorption on the development of setting shrinkage stress in traditional and resin-modified glass ionomer cements. Dent Mater. 1995;11:186–190
- . Advances in glass-ionomer cements. Chicago: Quintessence Publishing Co.; 1999;
- . FTIR investigation of polymerisation and polyacid neutralisation kinetics in resin-modified glass-ionomer dental cements. Biomaterials. 2002;23:3289–3295
- . Effect of a resin-modified glass ionomer liner on volumetric polymerization shrinkage of various composites. Dent Mater. 1998;14:417–423
- . Water-dependent interfacial transition zone in resin-modified glass-ionomer cement/dentin interfaces. J Dent Res. 2004;83:644–649
- . Determination of polymerization shrinkage stress by means of a photoelastic investigation. Dent Mater. 2004;20:313–321
PII: S0109-5641(09)00421-7
doi: 10.1016/j.dental.2009.11.076
© 2009 Academy of Dental Materials. Published by Elsevier Inc. All rights reserved.
« Previous
Dental Materials
Volume 26, Issue 3
, Pages e159-e169
, March 2010
