Pineda-Vélez E,
Yadalam PK, Ardila CM. Efficacy
of the finite element analysis in assessing the effects
of light curing on the mechanical properties of direct restorative composites: A systematic review. J Clin Exp Dent.
2024;16(11):e1411-21.
doi:10.4317/jced.62021
https://doi.org/10.4317/jced.62021
_____
References
1.
Demarco FF, Cenci MS, Montagner
AF, de Lima VP, Correa MB, Moraes RR, et al. Longevity of composite restorations is definitely not only about materials.
Dent Mater. 2023;39:1-12. |
|
|
|
2.
Burke FJ, Lucarotti PS. The ultimate guide to restoration longevity in England and Wales. Part 4: resin composite restorations: time to next intervention and to extraction
of the restored tooth. Br Dent J. 2018;224:945-6 |
|
|
|
3.
Fidalgo-Pereira R, Carpio D, Torres O, Carvalho O, Silva F, Henriques B, et al. The influence of inorganic fillers on the
light transmission through
resin-matrix composites during the light-curing procedure: an integrative review. Clin Oral Investig. 2022;26:5575-94. |
|
|
|
4.
Schmalz G, Schwendicke F,
Hickel R, Platt JA. Alternative Direct Restorative Materials for Dental Amalgam: A Concise Review Based on an
FDI Policy Statement. Int Dent J. 2023:S0020-6539(23)00969-3. |
|
|
|
5.
Bourgi R, Cuevas-Suarez CE, Devoto W, Monjarás-Ávila AJ, Monteiro P, Kharma K, et al. Effect of contamination and decontamination
methods on the bond strength of adhesive systems to dentin: A systematic review. J Esthet Restor Dent. 2023;35:1218-38. |
|
|
|
6.
Kowalska A, Sokolowski J,
Bociong K. The Photoinitiators Used in Resin Based Dental Composite-A Review and Future Perspectives. Polymers (Basel). 2021;13:470. |
|
|
|
7.
Moraes RR, Cenci MS, Moura JR, Demarco FF, Loomans
B, Opdam N. Clinical
performance of resin composite
restorations. Curr Oral Health Rep. 2022;9:22-31. |
|
|
|
8.
Versluis A, Tantbirojn D,
Lee MS, Tu LS, DeLong R. Can hygroscopic expansion compensate polymerization shrinkage? Part I. Deformation of restored teeth. Dent Mater 2011;27:126-33. |
|
|
|
9.
Sakaguchi RL, Wiltbank
BD, Murchison CF. Cure induced
stresses and damage in particulate reinforced polymer matrix composites: a review of the scientific literature. Dent Mater 2005;21:43-6. |
|
|
|
10.
Pottier JG, Gregg A, Aregawi W, Nasiri E, Fok A, Liu Y, et al. A standardized method to
determine the effect of polymerization shrinkage on the cusp
deflection and shrinkage induced built-in stress of class II tooth models. J Mech Behav Biomed Mater. 2020 Nov;111:103987. |
|
|
|
11.
Oliveira LRS, Braga SSL, Bicalho AA, Ribeiro MTH,
Price RB, Soares CJ. Molar cusp
deformation evaluated by micro-CT and enamel crack formation to compare incremental and bulk-filling
techniques. J Dent. 2018 Jul;74:71-8. |
|
|
|
12.
van Dijken JWV, Pallesen
U. Bulk-filled posterior resin
restorations based on stress-decreasing resin technology: a randomized, controlled 6-year evaluation. Eur J Oral Sci. 2017;125:303-9. |
|
|
|
13.
Heintze SD, Ilie N, Hickel R, Reis A, Loguercio A, Rousson V. Laboratory mechanical parameters of composite resins and their relation to fractures and
wear in clinical trials-a systematic review. Dent Mater. 2017;33:e101-14. |
|
|
|
14.
Grochowalski JM, Chady T.
Rapid Identification of Material Defects Based on Pulsed Multifrequency
Eddy Current Testing and the k-Nearest Neighbor Method. Materials (Basel). 2023;16:6650. |
|
|
|
15.
Li H, Li F, Zhu L. Effect
of Resin-Missing Defects on Tensile Behavior
of Carbon Fiber/Epoxy Composites. Polymers (Basel). 2024;16:348. |
|
|
|
16.
Martin L, Jain P, Ferguson
Z, Gholamalizadeh T, Moshfeghifar
F, Erleben K, et al.. A systematic comparison between FEBio and PolyFEM for biomechanical
systems. Comput Methods Programs Biomed. 2024;244:107938. |
|
|
|
17.
Sacks MS, Motiwale S, Goodbrake C, Zhang W. Neural Network Approaches
for Soft Biological Tissue and Organ Simulations. J Biomech Eng. 2022;144:121010. |
|
|
|
18.
Richert R, Farges JC, Tamimi F, Naouar N, Boisse P, Ducret M. Validated Finite Element Models of Premolars: A Scoping Review. Materials (Basel). 2020;13(15):3280. |
|
|
|
19.
Smith AL, Davis J, Panagiotopoulou O, Taylor AB,
Robinson C, Ward CV, et al. Does the model reflect
the system? When two-dimensional biomechanics is not 'good enough'.
J R Soc Interface. 2023;20(198):20220536. |
|
|
|
20.
Versluis A, Tantbirojn D,
Douglas WH. Do dental composites always shrink toward the light? J Dent Res 1998;77:1435-45. |
|
|
|
21.
Katona TR, Winkler MM.
Stress analysis of a bulk-filled
class V light-cured composite restoration. J Dent Res 1994;73:1470-7. |
|
|
|
22.
Chuang SF, Huang PS, Chen TY, Huang LH, Su KC, Chang
CH. Shrinkage behaviors
of dental composite restorations-The
experimental-numerical hybrid
analysis. Dent Mater.
2016;32:e362-e73. |
|
|
|
https://doi.org/10.1016/j.dental.2016.09.022 |
|
|
|
23.
Kuś W, Mucha W, Jiregna
IT. Multiscale Analysis
of Composite Structures with Artificial Neural Network Support
for Micromodel Stress Determination. Materials (Basel). 2023;17:154. |
|
|
|
24.
Münchow EA, Meereis CTW,
de Oliveira da Rosa WL, da Silva AF, Piva E. Polymerization shrinkage stress
of resin-based dental materials:
A systematic review and
meta-analyses of technique
protocol and photo-activation
strategies. J Mech Behav Biomed Mater. 2018;82:77-86. |
|
|
|
25.
Page MJ, McKenzie JE, Bossuyt
PM, Boutron I, Hoffmann
TC, Mulrow CD, et al. The
PRISMA 2020 statement: An
updated guideline for reporting systematic reviews. Int J Surg. 2021;88:105906. |
|
|
|
26.
Sheth VH, Shah NP, Jain R, Bhanushali N, Bhatnagar V. Development and validation of a risk-of-bias tool for
assessing in vitro studies
conducted in dentistry: The QUIN. J Prosthet Dent. 2022;S0022-3913(22)00345-6. |
|
|
|
27.
Tantbirojn D, Pfeifer CS,
Amini AN, Versluis A.
Simple optical method for measuring free shrinkage. Dent Mater. 2015;31:1271-8. |
|
|
|
28.
Manchorova-Veleva NA. Three-dimensional
biomechanical study of functional stresses in composite restorations of masticatory teeth. Folia Med (Plovdiv). 2011;53(4):60-5. |
|
|
|
29.
Liu X, Li H, Li J, Lu P, Fok
AS. An acoustic emission study on interfacial debonding in composite restorations. Dent Mater. 2011;27:934-41. |
|
|
|
30.
Koplin C, Jaeger R, Hahn
P. A material model for internal stress of dental composites
caused by the curing process.
Dent Mater. 2009;25:331-8. |
|
|
|
31.
Jakubinek MB, O'Neill C, Felix
C, Price RB, White MA. Temperature excursions at the pulp-dentin junction during the curing
of light-activated dental restorations.
Dent Mater. 2008;24:1468-76. |
|
|
|
32.
Kuijs RH, Fennis WM, Kreulen CM, Barink M, Verdonschot N. Does layering minimize shrinkage stresses in composite restorations? J Dent Res. 2003;82:967-71 |
|
|
|
33.
Sakaguchi RL, Shah NC, Lim BS, Ferracane JL, Borgersen SE. Dynamic mechanical analysis of storage modulus development in light-activated polymer matrix composites. Dent Mater. 2002;18:197-202. |
|
|
|
34.
Winkler MM, Chen J, Qian H, Hamula DW, Carlson TJ, Katona TR.
Experimental validation of a finite
element model of light-activated polymerization shrinkage. J Biomed Mater Res.
2000;53:554-9. |
|
|
|
35.
Watts DC, al Hindi A. Intrinsic 'soft-start' polymerisation shrinkage-kinetics in an acrylate-based resin-composite.
Dent Mater 1999;15:39-45. |
|
|
|
36.
Watts DC, Cash AJ. Determination of polymerization shrinkage kinetics in visible-light-cured
materials: methods development. Dent Mater 1991;7:281-7. |
|
|
|
37.
Asmussen E, Peutzfeldt A.
Direction of shrinkage of
light-curing resin composites. Acta Odontol Scand 1999;57:310-5. |
|
|
|
38.
Braga RR, Boaro LC, Kuroe
T, Azevedo CL, Singer JM. Influence
of cavity dimensions and their derivatives (volume and 'C' factor) on shrinkage stress development
and microleakage of composite
restorations. Dent Mater 2006;22:818-23. |
|
|
|
39.
Sutton MA, Yan JH, Tiwari
V, Schreier HW, Orteu JJ.
The effect of out-of-plane motion on 2D and 3D digital image correlation measurements. Opt Laser Eng 2008;46:746-57. |
|
|
|
40.
Lau A, Li JY, Heo YC, Fok A. A study of polymerization shrinkage kinetics using digital image correlation. Dent Mater. 2015;31:391-8. |