• Tidak ada hasil yang ditemukan

 Perlu penelitian lebih lanjut dengan membandingkan penggunaan dentin

replacement pada beberapa jenis kavitas restorasi gigi posterior.

 Perlu penelitian in vivo mengenai penggunaan dentin replacement pada restorasi kompleks gigi posterior.

61 DAFTAR PUSTAKA

Abed YA, Sabry HA, Alrobeigy NA. Degree of convertion and surface hardness of bulk fill composite versus incremental-fill composite. Tanta denta Journal.2015;2:71-80.

Al-Zahawi AR, Rahman MSA, Ahmed SM. Efek of two composites on gingival microleakage of class II restoration using four different placement techniques (an in vitry study). International Journal of recent Advences in Multidisciplinary research. 2015;2(9):0727-31

Andrade Cl, Goncalves TM, Santos Il, Barros MS, Araujo NR, Cury AA. Direct adhesive pin-retained restoration fior severely worv dentition treatment : A 1,5 year follow-up report. Brazilian Dental Journal. 2014 ; 25(4): 357-62.

Anusavice KJ. Chapter 4 : Mechanical properties of dental materials in Philips Science of Dental Material. 12th Ed. Elviester.2013:49-65

Andari. ES, Wulandari.E, Merry. D. Efek Larutan kopi robusta terhadap kekuatan tekan resin komposit nanofiller. Stomatognatic (J.K.G Unej), 2014;

11(1): 6-11.

Aryanto M, Armilia M, Aripin. D, Compressive strength resin komposit hybrid post curing dengan light emitting dioda menggunakan tiga ukuran lightbox yang berbeda, Dent. J (Maj. Ked. Gigi, 2013; 46(2) : 101-6.

Alkhudhairy FI. The effect of curing intensity on mechanical properties of different bulk fill composite resin. Clinical, Cosmetic And Investigational Dentistry. 2017; 9 : 1-6.

Abuelenain D, Nell EA, Al-Dharrab. Surface characterization and mechanical behavior of bulk fill versus incremental dental composites. Tanta Dental Journal.

2017; 56-61.

Baishal LW, Studervant JR. Chapter 1 : Clinical significance of dental anatomy, hystologi, psycology and occlusion in Studervant’s Art an Science of Operative dentistry.6th Ed. Elsevier.2013 :23

62 Badr SBY, Ibrahim MA, Banna MEI Compressive strength and compressive fatigue limit behavior of two flouride releasing materials, Advanoes in Medical Sciences, 2013; 2(3): 30-6.

Basri. MHC, Erlita. I, Ichrom. MY, Kekasaran permukaan resin komposit nanofiller setelah perendaman alam air sungai dan air PDAM, Dentino (Jur. Ked.

Gigi), 2017; II(1):101-6.

Belli S, Eraslan, Eskitascioglu G. Direct restoration of endodontically treated teeth : a brief summary of material and techiques. Curr Oral Health. 2015 : 182-9 Bicalho. AA, Valdivia. ADCM, Barreto. BCF, Tantbirojn. A, Versluis. A, Soares.

CJ. Incremental filling technique and composite material-part II: shrinkage and shrinkage stress. Operative Dentistry, 2014; 39(2): 83-92.

Bichacho. N. The Centripetal Build-Up For Composite Resin Posterior Restorations in Cosmetic Dentistry Edition. 1994 :8-11

Boushell LW, D Aldridge, Jr Wilder. Chapter 14 :Complex amalgam restorations in Studervant’s art an acience of operative dentistry.6th Ed. Elsevier.2013 : 429-53

Baraudi K, Rodrigues JC. Flowable resin composites: a systematic review and clinical considerations. Journal of Clinical and Diagnostic Research. 2015; 9(6):

18-24.

Caldas S, Filho S, Campos E, Andrade M. Compressive strength of dental composite resins photo-activated with different light tips. IOP Publishing. 2013:

1-4

Dentsply. SDR: smart denntin replacement.

http://dentsplymea.com/sites/default/files/SDR_OPL_factfile_3p.pdf. Diakses pada 20 Juni 2017

Diansari V, Eriwati YK, Indrani DJ. Kebocoran mikro pada restorasi komposit resin dengan sistem total- etch dan self-etch pada berbagai jarak penyinaran.

Indonesia Journal of Dentistry. 2010; 15(2): 121-30.

Didem A, Gozde Y, Nurhan O. Comparative mechanical properties of bulk-fill resins, open journal of composite materials. 2014; 4: 117-21.

63 Dalawi DA. Gharib DH, Talabani RM. Pin- retained restoration with resin. Boned composite of a badly broken tooth. IOSR Journal of Dental and Medical Sciences, 2015; 14 ( 9): 48-50.

Fabianelli A, Sgarr A, Goracci C, Cantoro A, Pollington S, Ferrari M.

Microleakage in class II restorations: open vs olosed centripetal build-up technique. Operative Dentistry, 2010; 35(3): 308-13.

Gajewski V, Preifer C, Salgado N, Boarol L, Braya R. Monomer used in resin composites degree of conversion, mechanical properties and water sorption/solubility. Braz Dent J.2012; 35(2): 508-14

Ghareecb NH, Dayem RN, Kamel JH, Qaizi SD. Evaluation of theinfluanenca of three types of light curing systems on temperature rise, dept of cure and degree of conversion of three resin based composite (an in vitri study). Journal of interdisciplinary Med.Dent.Sc.2014;2(1): 1-7

Garoushi. SK, hatem. M, Lassila. LVJ, Vallittu. PK,The Effect of Short Fiber Composite Base on Microleakage and Load-Bearing Capacity of Posterior Restorations, Acta Biomater Odontol Scand, 2015;1(1): 6-12.

Gill R, Miliar B, Deb S. Properties of a bulk-fill flowable composite resin with high depth of cure. Jurnal of Stomatology. 2017; 7: 377-387

Haraldo, Heymann, Riher AV, Roberson MB. Chapter 8 : Introduction to composite restorations in Studervant’s Art an Science of Operative dentistry.6th Ed. Elsevier.2013 :218-27

Harsi, Sari N, Sinarep. Karasteristik kekuatan bending dan kekuatan tekan komposit serat hybrid kapas/gelas sebagai pengganti produk kayu. Dinamika Teknik Mesin. 2015; 5(2): 59-65

Hirata R. Two Techniques for Posterior Composite Restorations. Journal of Cosmetic Dentistry. 2015; 30 : 4.

Ibrahim BH, Al-Azzawi HJ. Fracture resistance of endodontically treated premolar teeth with extensive MOD cavities restored with different bulk fill composite restorations an in vitro study. J Bagh College Dentisry. 2017; 29(2):

26-32

64 Jayanthi N, Vinod V, Comparative evaluation of compressive strength and flexural strength of convensional core materials with nanohybrid composite resin core material an in vitro study. J Indian Prosthodont Soe. 2013; 13(3): 281-9.

Kiran. KV, Tatikonda. A, Jhajharia. K, Raina. S, Lau. H, Katare. D, Kaur. RK. In vitro evaluation of the compressive strength of microhybrid and nanocomposites.

OHDM. 2014; 13(4):1-6

Kramer N, Godoy FG, Lohbaver U, Frankkerbegn R. Light curing of resin-based composite in LED.2014. Am.J.Dent : 135-142

Krusheed DA, Gharib DH, Saeed HM, talabani RM, Hamad Am. Pin-retained with resin bonded composite of a badly broken tooth. JDMS. 2015;4(9):48-50 Kapoor N, Bahuguna N, Anand S. Influence of composite inertion technique on gap formation. 2016; 19 (1): 77-81

Lestari S. Efek lama penyinaran terhadap kebocoran tepi tumpatan resin komposit flowable.stomatognatic (J.K.G Unej), 2012; 9(3): 110-3.

Lotfi N, Esmaeili B, Ahmadizenous G, Bijani A, Khadem H. Gingival microleakage in class ii composite restorations using different flowable composites as liner: An In Vitro Evaluation. Caspian J Dent Res. 2015; 4(1): 10-16

Mahn E. Clinical criteria for the succeful curing of composite material.

Rev.Clin.Periodontia.Implantol.Rehabil.Oral.2013;6(3):148-53

Markovska N. Stress decreasing flowable composite resin:review of SDR material. 2010:5-10

Marurkar. A, Satishkumar. KS, Ratnakar. P, An In Vitro Analysis Comparing Microleakage Between Smart Dentin Replacement and Flowable Composite When Used as a Liner Under Conventional Composite, European Journal of Pharmaceutical and Medical Research, 2017; 4(6): 694-8.

Melkumyam TV, makhamadaminova KD,Kamilov EK. Clinical and experimental evaluation of the effectiveness of “soft start” polymerization in dental composite restoration. International Journal of biomedicine.2012; 2(3):242-45.

65 Mounterrubbianessi R, Orsini G, Tosi G, Conti C, Librando V, Procaccini M.Spectroscopic and mechanical properties of a new generation of bulk fill compositeies.Frointers in Physiology.2016; 7:9-10

Mincik J, Urban D, Timkova S, Urban R. Fracture resistance of endodontically treated maxillary premolars restored by various direct filluing materials : an in vitro study. International Journal of Biomaterial. 2016 : 1-5

Moezzyzadeh M, Evaluation of the compressive strength of hybrid and nanocomposites. Jurnal Dental School, 2012; 1: 24-9

Mota EB. Evaluation Inorganik particles of composite resins with nanofiller content. Stomatologija Baltic Dental And Maxillofacial Journal. 2012;14: 103-7.

Nadig RR, Bugalia A, Usha G, Karthik J, Rao R, Vedhavathi B. Effect of four different placement techniques on marginal microleakage in class II composite restorations: an in vitro study. World Journal of Dentistry. 2011; 2(2): 111-6.

Nurhapsari. A, Perbandingan kebocoran tepi antara restorasi resin komposit tipe bulk-fill dan tipe packable dengan menggunakan sistem adhesif total etch dan self etch. Odonto Dental Journal. 2016; 3(1):7-13

Ozyurek T, Ulker O, Demiryurek E, Yilmas F. The effect of endodontic access cavity preparation design on the fracture strength of endodontically treated teeth : traditional versus consercvative preparation. JOE. 2018 ; 44(5): 800-804

Pasril Y, Pratama W. Perbandingan kekuatan tekan resin komposit hybrid menggunakan sinar halogen dan LED. IDJ. 2013; 2(2) : 83-89

Pradeep K, Ginjupalli K, Kuttappa MA, Kudva A, Butule R. In vitro comparison strength of bulk-fill composites and nanohybrid composite, World Journal of Dentistry. 2016; 7 (3): 119-22.

Ptronijevic. B, Marcovic. D, Sarcev. I, Andelcovic. A, Knezevic. MJ, Fracture Resistance of Restored Maxillary Premolar, Contemporary Materials, 2012;

III(2): 219-25

Permana DP. Perbandingan tingkat kebocoran mikro resin komposit bulk-fill dengan teknik penumpatan oblique inkremental dan bulk. 2016; 2(3): 135-140.

66 Phino Mb, Rego GF, Vidal RC. Alonso RC, Schneider L, et.al. Clinical time required and internal adaptation in cavities restored with bulk fill Composites.

The Journal of Contemporary Dental Practice. 2017; 18(12) : 1107-1111.

Rawls HR. Chapter 6 : Dental polymers in Philips Science of Dental Material.

Elviester.12th Ed. 2013:109-10

Rawls HR. Chapter 13: Resin-based composites in Philips Science of Dental Material. Elviester.12th Ed. 2013:277-84

Ribeiro BC, Boaventure JM, Goncalves JB, Rastelli AN, Babnato VS, Saad JR.

Degree of convertion of nanofilled and mycrohibrid composite resin photo-actived by different generations of LEDs. J.Appl.Oral.Sci.2012; 20(2): 42-7 Rusmayati A, Erlita I, Nahzi MYI. Perbedaan perubahan warna resin komposit nanofiller yang dipoles dan tidak dipoles pada perendaman larutan teh hijau.

Dentino (Jur. Ked. Gigi). 2017; II(1): 72-7.

Rosatto CMP, Bicalho AA, Verissimo C, Braganea GF, Rodrigues MP, Tantbirojn D,.et al. Mechanical properties shrinkage stress,cuspal strain and fracture resistance of molar restorated with bulk fill composite and incremental filling techinique. Journal of Dentistry. 2015:34-41

Silva C, Dias K. Compressive strength of esthetic restorative material polymerized with quartz-tungsten-halogen light and blue LED. Braz Dent J. 2009;

20(1) : 54-57

Susanto A. Effect of material thichness and length of light exposure on the surface hardness light-cured composite resins. Maj.Ked.Gigi (Dent. J). 2005;

38(1): 32-35

Souza FH, Camacho GB, Demarco FF, Powers JM. Fracture resistance and gap formation of MOD restoration : influence of restorative technique, bevel preparation and water storage. Operative Dentistry. 2008; 33(1): 37-43

Sarfi. S, Bali. D, Grewal. MS, Effect of different Layering technique on microleakage of nanofilled composite in class I restorations: An in vitro study.

Journal of the International Clinical Dental Research Organizatin. 2017; 9(1):1-8 Sakaguchi RL, Power JM. Chapter 1: Role and significance of restorative dental materials in Craig’s restorative dental material. Elseiver Mosby.13th Ed.2012 : 16

67 Sakaguchi RL, Power JM. Chapter 4: Fundamentals of Materials Science in Craig’s restorative dental material. Elseiver Mosby.13th Ed.2012 : 34-41

Sakaguchi RL, Power JM. Chapter 5: Testing of dental materials and biomechanics. Craig’s restorative dental material. Elseiver Mosby.13th Ed.2012 : 84-100

Sakaguchi RL, Power JM. Chapter 9: Restorative materials—composites and polymers in Craig’s restorative dental material. Elseiver Mosby.13th Ed.2012 : 174-181

Segal P, Lugassy D, Mijintsky E, Dekel M, Amar AB, Ormianer Z,Matalon S.

The effect of the light intensity and light distance of LED and QTH curing devides on the hardness of two light curing nano resin composites. Material Sciences and Applications.2015;6: 1071-83.

Sonwane. SR, Hambire UV. Comparison of flexural & compressive strengths of nano hybrid composites. International Journal of Engineering Trends and Applications (IJETA). 2015; 2(2):7-11.

Salem MA, Awad M, Magdy N. Two year clinical evaluation of smart dentin replacement flowable resin composite as a liner under class II resin composite restorations. Journal of Advenced Medical and Dental Sciences Research. 2017: 5 (2); 99-105.

Tsujimoto A, Barkmeier WW, Takamizawa T, Latta MA, Miyazaki M, Depth of cure flexural properties and volumetric shrinkage of low and high viscosity bulk-fill giomers and resin composites. Dental Materials Journal. 2017; 36(2): 205-13 Tsujimo A, Barkmeier W, Takamizawa T, latta MA, Miyazaki M. Mechanical properties, volumetric shrinkage and depth of cure of short fiber reinforced resin composite. Dental Material Journal. 2016; 35(3) : 418-424

Tolidis K, Boutsioukiu C, Gerasimou P, Balkan. Effect of composite resin shade and LED light intensity on microhardnes. Balk J.Sto,.2011;15:127-32.

Taha NA, Palamara JE, Messer HH. Fracture strength and frcture patterns of root filled teeth restorated with direct restorations.Journal of Dentistry.2011; 39 : 527-535

68 Vianna-de-Pinho MG, Rego GF.Vidal ML,Alonso RBC, Schneider LFJ, Cavalcanta LM. Clinical time : required and internal adaptation in cavities restored with bulk-fill composite. The Journal Contemporary dental Practice.2017; 18(2):1107-11

Yildis E, Simsek M, Pamir Z. Fracture strength of restorations in proximal cavities of primary molars. Scaning Wiley Periodicals. 2016 ; 38 : 43-49

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