PL EN


Preferencje help
Widoczny [Schowaj] Abstrakt
Liczba wyników
Tytuł artykułu

Hardness investigation of conventional, bulk fill and flowable dental composites

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Purpose: of the present paper is to investigate the micro-hardness of three types of resin-based composites – conventional, bulk fill and flowable. Design/methodology/approach: Cylindrical specimens with a diameter of 5 mm and thicknesses of 2, 3 and 4 mm were made from each composite. They were light cured for 20, 40 and 60 s with light intensity of 600, 1000 or 1500 mW/cm2. The Vickers micro-hardness was measured on the top and bottom surface of the specimens. Findings: The highest micro-hardness was measured in bulk fill composite, followed by conventional and the lowest was measured in the flowable one. Increasing the light intensity leads to increase of the micro-hardness on both surfaces of the three composites. The increase of the irradiation time results in increase of the micro-hardness mainly on the bottom surface of the composites. The change of the layer thickness influences the conventional and the flowable composites and almost does not affect the hardness of the bulk fill composite. Research limitations/implications: The limitations of this study concerns to the values of the light intensity, which are defined by the light curing unit (LCU) used. There are many LCUs on the market; consequently, constant investigations of dental composites micro-hardness are needed. Practical implications: The investigation of the micro-hardness of the three types of composites in different modes would be very helpful for clinicians to obtain successful polymerization of composite restorations in their everyday practice. Originality/value: The micro-hardness of three types resin-based dental composites – conventional, bulk fill and flowable is investigated and compared in varying of three mode parameters – light intensity, curing time and layer thickness.
Rocznik
Strony
68--77
Opis fizyczny
Bibliogr. 36 poz., rys., tab., wykr.
Twórcy
autor
  • Faculty of Dental Medicine, Medical University of Varna, 55 Marin Drinov Str, 9002 Varna, Bulgaria
autor
  • Faculty of Dental Medicine, Medical University of Varna, 55 Marin Drinov Str, 9002 Varna, Bulgaria
Bibliografia
  • [1] G. Georgiev, V. Panov, T. Dikova, Investigation of light intensity of wireless LED light curing units, Journal of Technical University of Gabrovo 60 (2020) 40-45.
  • [2] T. Dikova, J. Maximov, V. Todorov, G. Georgiev, V. Panov, Optimization of photopolymerization process of dental composites, Processes 9/5 (2021) 779. DOI: https://doi.org/10.3390/pr9050779
  • [3] L.G. Sensi, H.E. Strassler, W. Webley, Direct composite resins, Inside Dentistry 3/7 (2007) 76.
  • [4] K.J. Anusavice, C. Shen, H.R. Rawls (eds.), Phillips' science of dental materials, Twelfth Edition, Elsevier, Austin, Texas, 2012, 291-293.
  • [5] R. Van Noort, R. Barbour, Introduction to dental materials, E-Book, Elsevier, Austin, Texas, 2014, 96-123.
  • [6] T. Dikova, Dental Materials Science, Lectures and laboratory classes notes Part II, MU-Varna, Varna, 2014, 150.
  • [7] T. Dikova, M. Milkov, Nanomaterials in dental medicine, Proceedings of the 10th Workshops “Nanoscience & Nanotechnology”, Sofia, Bulgaria, 2009, 203-209.
  • [8] S.B. Mitra, D. Wu, B.N. Holmes, An application of nanotechnology in advanced dental materials, The Journal of the American Dental Association 134/10 (2003) 1382-1390. DOI: https://doi.org/10.14219/jada.archive.2003.0054
  • [9] A. Olmez, N. Oztas, H. Bodur, The effect of flowable resin composite on microleakage and internal voids in class II composite restorations, Operative Dentistry 29/6 (2004) 713-719.
  • [10] G. Furtos, B. Baldea, L. Silaghi-Dumitrescu, D. Bratu, M. Moldovan, C. Prej merean, Measuring the radiopacity of flowable resin composites using scanned radiograph images, Particulate Science and Technology 30/5 (2012) 391-402. DOI: https://doi.org/10.1080/02726351.2011.589489
  • [11] I.C. Mirică, G. Furtos, B. Bâldea, O. Lucaciu, A. Ilea, M. Moldovan, R.S. Câmpian, Influence of filler loading on the mechanical properties of flowable resin composites, Materials 13/6 (2020) 1477. DOI: https://doi.org/10.3390/ma13061477
  • [12] A.R. Yacizi, G. Ozgunaltay, B. Dayangac, The effect of different types of flowable restorative resins on microleakage of Class V cavi ties, Operative Dentistry 28/6 (2003) 773-778.
  • [13] V. Miletic, P. Pongprueksa, J. De Munck, N.R. Brooks, B. Van Meerbeek, Curing characteristics of flowable and sculptable bulk-fill composites, Clinical Oral Investigations 21/4 (2017) 1201-1212. DOI: https://doi.org/10.1007/s00784-016-1894-0
  • [14] S.A Son, J.K. Park, D.G. Seo, C.C. Ko, Y.H. Kwon, How light attenuation and filler content affect the microhardness and polymerization shrinkage and translucency of bulk-fill composites?, Clinical Oral Investigations 21/2 (2017) 559-565. DOI: https://doi.org/10.1007/s00784-016-1920-2
  • [15] C.M. Rosatto, A.A. Bicalho, C. Verissimo, G.F. Braganca, M.P. Rodrigues, D. Tantbirojn, A. Versluis, C.J. Soares, Mechanical properties, shrinkage stress, cuspal strain and fracture resistance of molars restored with bulk-fill composites and incremental filling technique, Journal of Dentistry 43/12 (2015) 1519-1528. DOI: https://doi.org/10.1016/j.jdent.2015.09.007
  • [16] A. Van Ende, J. De Munck, K.L. Van Landuyt, A. Poitevin, M. Peumans, B. Van Meerbeek, Bulk-filling of high C-factor posterior cavities: effect on adhesion to cavity-bottom dentin, Dental Materials 29/3 (2013) 269-277. DOI: https://doi.org/10.1016/j.dental.2012.11.002
  • [17] A. Van Ende, D.P. Lise, J. De Munck, J. Vanhulst, M. Wevers, B. Van Meerbeek, Strain development in bulk-filled cavities of different depths characterized using a non-destructive acoustic emission approach, Dental Materials 33/4 (2017) 165-177. DOI: https://doi.org/10.1016/j.dental.2016.12.012
  • [18] B.M. Fronza, F.A. Rueggeberg, R.R. Braga, B. Mogilevych, L.E.S. Soares, A.A. Martin, G. Ambrosano, M. Giannini, Monomer conversion, microhardness, internal marginal adaptation, and shrinkage stress of bulk-fill resin composites, Dental Materials 31/12 (2015) 1542-1551. DOI: https://doi.org/10.1016/j.dental.2015.10.001
  • [19] I.M. Tomaszewska, J.O. Kearns, N. Ilie, G.J.P. Fleming, Bulk fill restoratives: to cap or not to cap - that is the question?, Journal of Dentistry 43/3 (2015) 309-316. DOI: https://doi.org/10.1016/j.jdent.2015.01.010
  • [20] A. Santini, V. Miletic, M.D. Swift, M. Bradley, Degree of conversion and microhar dness of TPO-containing resin-based composites cured by polywave and monowave LED units, Journal of Dentistry 40/7 (2012) 577-584. DOI: https://doi.org/10.1016/j.jdent.2012.03.007
  • [21] M.R. Bouschlicher, F.A. Rueggeberg, B.M Wilson, Correlation of bottom-to-top surface microhardness and conversion ratios for a variety of resin composite compositions, Operative Dentistry 29/6 (2004) 698-704.
  • [22] R.B. Price, C.A. Felix, P. Andreou, Evaluation of a second-generation LED curing light, Journal of Canadian Dental Association 69/10 (2003) 666.
  • [23] M. El-Nawawy, L. Koraitim, O. Abouelatta, H. Hegazi, Depth of cure and microhardness of nanofilled, packable and hybrid dental composite resins, American Journal of Biomedical Engineering 2/6 (2012) 241-250. DOI: https://doi.org/10.5923/j.ajbe.20120206.03
  • [24] J.H. Jang, S.H. Park, I.N. Hwang, Polymerization shrinkage and depth of cure of bulk-fill resin composites and highly filled flowable resin, Operative Dentistry 40/2 (2015) 172-180. DOI: https://doi.org/10.2341/13-307-L
  • [25] F.A. Rizzante, J.A. Duque, M.A. Duarte, R.F. Mondelli, G. Mendonca, S.K. Ishikiriama, Polymerization shrinkage, microhardness and depth of cure of bulk fill resin composites, Dental Materials Journal 38/3 (2019) 403-410. DOI: https://doi.org/10.4012/dmj.2018-063
  • [26] A. Santini, S. Turner, General dental practitioners’ knowledge of polymerisation of resin-based composite restorations and light curing unit technology, Brazilian Dental Journal 211/6 (2011) E13. DOI: https://doi.org/10.1038/sj.bdj.2011.768
  • [27] G. Georgiev, Factors associated with light curing units: A questionnaire survey, Scripta Scifientica Medicinae Dentalis 5/2 (2019) 37-43. DOI: http://dx.doi.org/10.14748/ssmd.v5i2.5805
  • [28] A.C. Objelean, L. Silaghi-Dimitrescu, G. Furtos, M.A. Badea, M. Moldovan, The influence of organic-inorganic phase mixures on degradation behavior of some resin composites used in conservative dentistry, Journal of Optoelectronics and Advanced Materials 18/3 (2016) 567-575.
  • [29] Safety Data Sheet, Evetric, Ivoclar Vivadent AG, Schaan, Liechtenstein, 2015, 6.
  • [30] 3M Filtek One Bulk Fill Restorative, Technical Product Profile, 3m.com: St. Paul, MN, USA. Available online: https://multimedia.3m.com/mws/media/1317671O/3m-filtek-one-bulk-fill-restorative-technical-product-profile.pdf (accessed on 2 April 2021).
  • [31] 3M Filtek One Bulk Fill Restorative, Safety Data Sheet, 3m.com: St. Paul, MN, USA, Available online: https://multimedia.3m.com/mws/mediawebserver?mwsId=SSSSSuUn_zu8l00xm82Bm8_ZPv70k17zHvu9lxtD7SSSSSS-- (accessed on 2 April 2021).
  • [32] G-Aenial Universal Flo, Technical Manual, GC, Leuven, Belgium. Available online: https://cdn.gceurope.com/v1/PID/gaenialuniversalflo/manual/MAN_G-aenial_Universal_Flo_Technical_Manual_en.pdf (accessed on 2 April 2021).
  • [33] Y.K. Lee, Influence of filler on the difference between the transmitted and reflected colors of experimental resin composites, Dental Materials 24/9 (2008) 1243-1247. DOI: https://doi.org/10.1016/j.dental.2008.01.014
  • [34] N. Ilie, S. Bucuta, M. Draenert, Bulk-fill resin-based composites: an in vitro assessment of their mechanical performance, Operative Dentistry 38/6 (2013) 618-625. DOI: https://doi.org/10.2341/12-395-L
  • [35] R.H. Halvorson, R.L. Erickson, C.L. Davidson, The effect of filler and content on conversion of resin-based composite, Dental Materials 19/4 (2003) 327-333. DOI: https://doi.org/10.1016/S0109-5641(02)00062-3
  • [36] D. Garcia, P. Yaman, J. Dennison, G. Neiva, Polymerization shrinkage and depth of cure of bulk fill flowable composite resins, Operative Dentistry 39/4 (2014) 441-448. DOI: https://doi.org/10.2341/12-484-L
Uwagi
PL
Opracowanie rekordu ze środków MNiSW, umowa Nr 461252 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2021).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-40e5572d-90ab-45b3-aab7-a4a0a239f115
JavaScript jest wyłączony w Twojej przeglądarce internetowej. Włącz go, a następnie odśwież stronę, aby móc w pełni z niej korzystać.