Soriano-Valero
S, Román-Rodriguez JL, Agustín-Panadero R, Bellot-Arcís C, Fons-Font A,
Fernández-Estevan L. Systematic review of chewing simulators: Reality and
reproducibility of in vitro studies. J Clin Exp Dent.
2020;12(12):e1189-95.
doi:10.4317/jced.57279
https://doi.org/10.4317/jced.57279
_____________
References
1.
Özcan M, Jonasch M. Effect of Cyclic Fatigue Tests on Aging and Their
Translational Implications for Survival of All-Ceramic Tooth-Borne Single
Crowns and Fixed Dental Prostheses. J Prosthodont. 2018;27:364-375. |
|
|
|
2.
Conserva E, Menini M, Tealdo T, Bevilacqua M, Pera F, Ravera G, et al.
Robotic chewing simulator for dental materials testing on a sensor-equipped
implant setup. Int J Prosthodont. 2008;21:501-8. PMid:19149066 |
|
|
|
3.
Singhatanadgit W, Junkaew P, Singhatanadgid P. Effect of bidirectional
loading on contact and force characteristics under a newly developed
masticatory simulator with a dual-direction loading system. Dent Mater J.
2016;35:952-961. |
|
|
|
4.
Rues S, Huber G, Rammelsberg P, Stober T. Effect of impact velocity and
specimen stiffness on contact forces in a weight-controlled chewing
simulator. Dent Mater. 2011;27:1267-72. |
|
|
|
5.
Moher D, Liberati A, Tetzlaff J, Altman DG. Preferred Reporting Items for
Systematic Reviews and Meta-Analyses: The PRISMA Statement. PLoS Med.
2009;6:1000097. |
|
|
|
6.
Faggion CMJr. Guidelines for reporting pre-clinical in vitro studies on
dental materials. J Evid Based Dent Pract. 2012;12:182-9. |
|
|
|
7.
Jensen AL, Abbott PV. Experimental model: dye penetration of extensive
interim restorations used during endodontic treatment while under load in a
multiple axis chewing simulator. J Endod. 2007;33:1243-6. |
|
|
|
8.
Heintze SD, Albrecht T, Cavalleri A, Steiner M. A new method to test the
fracture probability of all-ceramic crowns with a dual-axis chewing
simulator. Dent Mater. 2011;27:10-9. |
|
|
|
9.
Shahin R, Tannous F, Kern M. Inlay-retained cantilever fixed dental
prostheses to substitute a single premolar: impact of zirconia framework
design after dynamic loading. Eur J Oral Sci. 2014;122:310-6. |
|
|
|
10.
Michalakis KX, Stratos A, Hirayama H, Kang K, Touloumi F, Oishi Y. Fracture
resistance of metal ceramic restorations with two different margin designs
after exposure to masticatory simulation. J Prosthet Dent. 2009;102:172-8. |
|
|
|
11.
Conserva E, Menini M, Tealdo T, Bevilacqua M, Ravera G, Pera F, et al. The
use of a masticatory robot to analyze the shock absorption capacity of
different restorative materials for prosthetic implants: a preliminary
report. Int J Prosthodont. 2009;22:53-5. PMid:19260428 |
|
|
|
12.
Raabe D, Harrison A, Ireland A, Alemzadeh K, Sandy J, Dogramadzi S, et al.
Improved single- and multi-contact life-time testing of dental restorative
materials using key characteristics of the human masticatory system and a
force/position-controlled robotic dental wear simulator. Bioinspir Biomim.
2012;7:016002. |
|
|
|
13.
Ruben JL, Roeters FJM, Montagner AF, Huysmans MCDNJM. A multifunctional
device to simulate oral ageing: the "Rub&Roll". J Mech Behav
Biomed Mater. 2014;30:75-82. |
|
|
|
14.
Alemzadeh K, Raabe D. Prototyping artificial jaws for the Bristol Dento-Munch
Robo-Simulator. 'A parallel robot to test dental components and materials'.
Conf Proc IEEE Eng Med Biol Soc. 2007;2007:1453-6. |
|
|
|
15.
Abouelleil H, Jeannin C, Sadat A, Grosgogeat B. Development of a chewing
simulator for testing dental materials: a pilot study. Br J Appl Sci Technol.
2015;5:1-8. |
|
|
|
16.
Aksel H, Askerbeyli-Örs S, Deniz-Sungur D. Vertical root fracture resistance
of simulated immature permanent teeth filled with MTA using different
vehicles. J Clin Exp Dent. 2017;9:178-181. |
|
|
|
17.
Rosentritt M, Schumann F, Krifka S, Preis V. Influence of zirconia and
lithium disilicate tooth- or implant-supported crowns on wear of antagonistic
and adjacent teeth. J Adv Prosthodont. 2020;12:1-8. |
|
|
|
18.
DeLong R, Douglas WH. An artificial oral environment for testing dental
materials. IEEE Trans Biomed Eng. 1991;38:339-45. |