DAFTAR PUSTAKA Perbandingan Kekuatan Tekan (Compressive Strength) Resin Komposit Nanofill dengan Teknik Bulk Fill pada Ketebalan yang Berbeda.

DAFTAR PUSTAKA
Anusavice K.J., 2003. Phillip’s Science of Dental Mterials, 10th ed, W.B.
Philadelphia : Saunders Company, pp : 227-249.
Aryanto M., Armilia M., Aripin D., 2013. Compressive Strength of Hybrid
Composites Resin With Post Curing Light Emitting Diode Using Three
Different Sizes of Lightbox, Dent.J .(Maj.Ked.Gigi)., 46 (2) : 101-106.
Braga R.R., Ballester R.Y., Ferracane J.L., 2005. Factors Involved in the
Development of Polymerization Srinkage Stress in Resin Composite :
Systematic Review, J Dent Mater ., 21 (10) : 962-70.
Brandao L., Adabo G.L., Vaz L.G., Saad J.R.C., 2005. Compressive Strength and
Compressive Fatigue Limit of Conventional and High Viscosity Posterior
Resin Composite, Braz Oral Res., 19 (4) : 272-7.
Bryant R.W., 1998. Composite Resin in : Mounth GJ, Hume WR, Preservation
and Restoration of Tooth Structure, London : Mosby, pp : 93-100.
Christensen G. J., 2012. Advantages and Challenges of Bulk-fill Resins, Clinical
Report Foundation., 5 (1) : 1-6.
Combe E.C., 1992. Note on Dental Material, 6th ed, Edinburg : Churchill
Livingstone, pp : 30-31.
Craig R.G., Power J.M., 2002. Restorative Dental Materials, 11th ed, Missouri :
Mosby, pp : 51, 232.
Dahlan M.S., 2013. Statistik Untuk Kedokteran dan Kesehatan , 5th., Jakarta :

Salemba Medika, pp : 17, 77, 88-93.
Fabianelli A., Pollington S., Davidson C.L., Cagidiaco M.C., Goracci C., 2009.
The Relevance of Micro-Leakage Studies, Int Dent., 9 (3) : 64-74.
Federer W.T., 1997. Experimental Design Theory and Application , 3rd., New
Delhi Bombay Calculata : Oxford and IBH Publishing Co.
Fontes S.T., Femandez M.R., De Moura C.M., Meireles S.S., 2009, Color
Stability of Nanofilll Composite : Effect of Different Immersion Media,
Journal of Applied Oral Sciensce., 17 (5) : 388-391.
Gogna R., Jagadis S., Shashikal K., 2011. A Comparative In Vitro Study of
Microleakage by Radioactive Isotope and Compressive Strength of Three
Nanofilled Composite Resin Restorations, J Conserv Dent., 14 (2) : 128131.
38

Hamaouda I.M., Eldaker H.A., 2012. Evaluation of the Mechenical Properties of
Nanofiller Composite Resin Restorative Materials, Journal of
Biomaterials and Nanobiotechnology., 3 : 38-242.Hedge M.N., Hedge P.,
Bhandary S., Deepika K., 2011. An Evaluation of Compressive Strength
of Newer Nanocomposite : An In Vitro Study, J Conserv Dent., 14 (1) :
36-3.
Hambire U.V., Tripathi V.K., Mapari A.G., 2012. Improvement in the

Compressive Strength and Flexular Strength of Dental Composite,
ARPN., 7 (8) : 1066-1069.
Herrero A.A., Yaman P., Dennison J.B., 2005. Polimerization Shrinkage and
depth of Cure of Packable Composite, Quintessense Int., 36 (1) : 25-31.
Kang A., Son S.A., Hur B., Kwon YH., Ro J.H., Park J.K., 2012. The Color
Stability of Silorane-and Methacrylate-Based Resin Composites, J Dent
Mater ., 31 (5) : 879-84.
Katona A., Barrak I., 2016. Comparison of Composite Restoration Techniques,
Interdisciplinary Description of Complex System (Hillside Dental)., 14
(1) : 254-258.
Kaur H., Nandlal B., 2013. Effect of Dietary Solvent on the Strength of
Nanocomposite, Compomer, Glass Ionomer Cement : An In Vitro Study,
J Conserv Dent., 16 (6) : 572-531.
Kwong W.J., 2013. How to Complete Bulk Fill Restoration, Dental Product
Report., 12 (1).
Lazarchik D.A., Barry D.H., Christy L.S., Stephen W.L., Frederick A.R., 2007.
Hardness Comparison of Bulk-fill Transtooth and Incremental-filled
Occusally Irradiates Composite Resin, J Prosthet Dent., 98 (2) : 129-140.
Lee S.K., Baek C.J., Hyun S.H., Seol H.J., Kim H.I., Kwon., 2008. The Effect of
Light Intensity and Light Curing Time on The Degree of Polimerization

of Dental Composite Resin, J Dent Mater ., 27 (4) : 523-533.
Lien W., Vandwalle K.S., 2010. Physical Properties of a New Silorane-Based
Restorative System, J Dent Mater ., 26 : 337-344.
Li Y., Lin H., Zheng G., Zhang X., Xu Y., 2015. Comparison Study on Resin
Modified Luting Glass Ionomer Cements, Bio-Medical Materials and
Engineering., 26 (2015) : S9-S17.
Manappallil J.J., 2003. Basic Dental Materials, 2nded, New Delhi : Jaypee
Brothers Medical Publishers, pp : 94-117.
39

Moezzyzade M., 2012. Evaluation of the Compressive Strength of Hybrid and
Nanocomposites, J Dent Mater ., 30 (1) : 24-29.
Nagi S.M., Moharam L.M., Zaazou M.H., 2015. Effect of Resin Thickness and
Curing Time on the Micro-Hardness of Bulk-Fill Resin Composite, J
Clin Dent., 7 (5) : 600-4.
Nurmalasari A., 2015. Perbedaan Kekerasan Permukaan Resin Komposit Nano
Pada Perendaman Teh Hitam dan Kopi, Jurnal Wiyata., 2 (1) : 1-6.
Nicholson J.W., 2002. The Chemistry of Medical and Dental Materials, RSC :
Cambridge, pp : 144-145.
Park J.K., Kim T.H., Ko C.C., Garcia G.F., Kim H.I., Kwon Y.H., 2011. Effect of

Staining Solutions on Discoloration of Resin Nanocomposites, Am J
Dent., 23 (1) : 39-42.
Pasril Y., Pratama W.A., 2013. Comparison of Compressive Strength Hybrid
Composite Resin Using Halogen and LED Light, IDJ ., 2 (2) : 83-90.
Pitt Ford TR., 1993. Restorasi gigi, 2nd., Jakarta : EGC, pp : 9, 65.
Price R.B., Doyle G., Murphy D., 2000. Effect of Composite Thickness on the
Shear Bond Strength to Dentin, J Dent Assoc., 66 : 35-9.
Putriyanti F., Herda E., Soufyan A., 2012. Pengaruh Saliva Buatan Terhadap
Diametral Tensile Strenght Micro Fine Hybrid Resin Composite yang
direndam dalam minuman isotonic, Jurnal PDGI., 60 (1) : 43-47.
Rao A., 2008. Principles and Practice of Pedodontics, 2nd ed, New Delhi : Jaypee,
pp : 143.
Rueggeberg R.H., Caughman W.F., Curtis J.W., 1994. Effect of Light Intensity
and Exposure Duration on Cure of Resin Composite, Oper Dent., 19 (1) :
26-32.
Sakaguchi R.L., Power J.M., 2006. Restorative Dental Materials, 12th ed, United
States : Elsevier, pp : 514.
Sapra V., Taneja S., Kumar M.,2013. Surface Geometri of Various Nanofiller
Composite Using Different Polishing System : a Comparative Study, J
Conserv Dent., 16 (6) : 559-563.

Sarcev I.N., Petronijevic B.S., Atanackovic T.M., 2002. A Biomechanical Model
for a new Incremental Technique for Tooth Retoration, Acta Bioeng
Biomech., 14 (3) : 85-91.
40

Schneider L.F.J., Calvalcante L.M., Silikas N., 2010. Shrinkage Stresses
Generated During Resin-Composite Applications : A Review, J Dent
Biomech.,1 (1) : 1-4.
Sigusch B.W., Volpel A., Braun I., Uhl A., Jandt K.D., 2007. Influence of
Different Light Curing Units on The Cytotoxicity of Various Dental
Composites, Dental Materials., 23 : 1342-1348.
Soanca A., Roman A., Moldovan M., Bondor C.I., Rominu M., 2012. Evaluation
of Mechanical Properties of Some Composite Biomaterials,
Optoelectronics and Advanced Materials-Rapid Comunications., 6 (1-2) :
258-262.
Son S.A., Roh H.M., Hur B., Kwon Y.H., Park J.K., 2014. The Effect of Resin
Thickness on Polymerization Characteristics of Silorane-Based
Composite Resin, The Korean Academy of Conservative Dentistry., 39
(4) : 310-318.
Sularsih., Sarianoferni., 2007. Penggunaan Resin Komposit untuk Mengurangi

Resiko Barodontalgia, Universitas Hangtuah Fakultas Kedokteran Gigi.,
1 (2) : 100-105.
Susanto A.A., 2005. Effect of Materials Thickness and Leght of Light Exposure
on the Surface Hardness Ligth-Cure Composite Resin, Maj. Ked. Gigi
(Dent.J )., 38 (1) : 32-35.
Tham W.L., Chow W.S., Mohdlshak Z.A., 2010. Simulated Body Fluid and
Water Absorption Effects on Polymethyl Methacrylate Hydroxyapatite
Denture Base Composites, Polymer Letters., 4 (9) : 517-528.
Van Ende., Annelies., Munck D.J., Kristen L., Van L., Poitevin A., 2012. Bulk
Filling of High Factor C Posterior Cavities : Effect of Andhesion to
Cavity Bottom Dentin, J Dent Matter ., (9) : 1-9.
Van Noorth R., 2007. Introduction to Dental Material, 3rd, London : Mosby, pp :
99-120.

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