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1

Demirci, M., E. Yildiz, and Ö. Uysal. "Comparative Clinical Evaluation of Different Treatment Approaches Using a Microfilled Resin Composite and a Compomer in Class III Cavities: Two-year Results." Operative Dentistry 33, no. 1 (2008): 7–14. http://dx.doi.org/10.2341/07-34.

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Clinical Relevance For two years, the three restoration/adhesive combinations used in this study (Dyract AP/Prime & Bond NT with NRC pretreatment, Dyract AP/Prime & Bond NT with phosphoric acid pretreatment and Filtek A110/Single Bond) exhibited very good clinical performance in Class III cavities. Clinically simplified systems and handling characteristics of materials may effect their clinical performance.
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Vanga, V. Narsimha. "Effect of Cola on Surface Microhardness and Marginal Integrity of Resin Modified Glass Ionomer and Compomer Restoration – An in vitro St." PJSR 4, no. 2 (2011): 34–40. https://doi.org/10.5281/zenodo.8273054.

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This study was carried out to evaluate the surface microhardness and marginal integrity of a resin modified glass ionomer and a compomer after immersing them in a cola soft drink for variable periods of time. The study was conducted in two parts. Forty two standard class V cavities were prepared on extracted human premolars, restored with Dyract AP and Fuji II LC and evaluated for marginal integrity. Forty two circular discs (CDs) were prepared with Dyract AP and Fuji II LC to test microhardness. These specimens were immersed in a cola drink under low, medium and high immersion regimes. Margin
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3

Rodrigues Filho, Leonardo Eloy, Luis Antônio dos Santos Burger, Silvia Kenshima, José Roberto de Oliveira Bauer, Igor Studart Medeiros, and Antonio Muench. "Effect of light-activation methods and water storage on the flexural strength of two composite resins and a compomer." Brazilian Oral Research 20, no. 2 (2006): 143–47. http://dx.doi.org/10.1590/s1806-83242006000200010.

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The present study evaluated the flexural strength of three composite resins recommended for direct esthetic restorations: a polyacid modified composite (Dyract AP), a unimodal composite resin (Filtek Z250) and a hybrid composite resin (Point 4). The variation factors, apart from the type of composite resin, were the light activation method and the water storage period. The composite resins were light-cured in continuous mode (40 s, 500 mW/cm²) or in ramp mode (0-800 mW/cm² for 10 s followed by 30 s at 800 mW/cm²) and stored for 24 hours or 30 days in distilled water at 37°C. The data were anal
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Yalcin, Filiz. "The Weight Change of Various Light-Cured Restorative Materials Stored in Water." Journal of Contemporary Dental Practice 6, no. 2 (2005): 72–79. http://dx.doi.org/10.5005/jcdp-6-2-72.

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Abstract This study investigated weight changes of seven different light-cured composite restorative materials, one polyacid glass ionomer compomer, and one light-cured glass-ionomer cement following short-term and long-term storage in water. Two packable composites, three universal (hybrid) composites, one microglass composite, one polyacid glass ionomer resin composite (compomer), one microhybrid low-viscosity (flowable) composite, and one light cured glass ionomer composite cement were evaluated in this study. The weight changes of these specimens were measured daily (short-term storage), a
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5

Saleem, Dr Sazan Sherdil. "Comparative evaluation of compressive strength of esthetic restorative materials." Mustansiria Dental Journal 14, no. 1 (2018): 24. http://dx.doi.org/10.32828/mdj.v14i1.751.

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The present study was aimed to evaluate and compare the compressive strength ofconventional glass ionomer cement with resin modified glass ionomer, compomer andmicrohybrid composite. A total of 40 specimens of esthetic restorative materials werefabricated using customized cylindrical teflon mould measuring 6mm height and 4mmdiameter and were grouped with ten specimens in each group, Group I: Conventionalglass ionomer cement (Fuji II). Group II: Resin modified glass ionomer (Fuji II LC).Group III: Compomer (Dyract AP) and Group IV: Microhybrid composite resin(Tetric Ceram).They were covered wit
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6

Daou, Maha, Bruno Tavernier, and Jean-Marc Meyer. "Two-Year Clinical Evaluation of Three Restorative Materials in Primary Molars." Journal of Clinical Pediatric Dentistry 34, no. 1 (2009): 53–58. http://dx.doi.org/10.17796/jcpd.34.1.h4p6141065388h0h.

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A variety of alternatives to amalgam are now available for use in Class I and Class II restorations in primary teeth, including glass ionomer cements, compomers and resin modified glass ionomer cements(RMGIC). Objectives: This study evaluated the two-year clinical performance of three restorative dental materials: A resin modified glass ionomer cement (Fuji IILC), a compomer (Dyract AP) and a high viscosity glass ionomer cement (Fuji IX), in primary molars of pediatric patients with high caries risk activity and compared these results to those reported for amalgam restorations. Study design: O
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7

Mansuri, Samir, Abdul Mujeeb, Seema Abid Hussain, and Kausar Ramaswamy. "In vitro Evaluation of Topical Fluoride ph and their Effect on Surface Hardness of Composite Resin-based Restorative Materials." Journal of Contemporary Dental Practice 15, no. 2 (2014): 190–94. http://dx.doi.org/10.5005/jp-journals-10024-1513.

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ABSTRACT Aim The aim of the study was to correlate the pH and fluoride ion uptake with surface hardness of composite resin based restorative materials after topical fluoride application. Methodology Forty disks of each of test materials Composite (Filtek Z350XT, 3M ESPE, St Paul, MN, USA), Resin modified glass ionomer (Vitremer) and Compomer (Dyract AP) were made and ten disks of each material were placed in different test solutions – 1.23% APF gel, Sodium fluoride mouth rinse, 0.9% neutral fluoride and distilled water (Control group). After 36 hours of immersion, specimens were subjected to m
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8

Shenvi, S., V. Shivanna, K. R. Jadhav, M. Seal, A. Praveen, and A. Khaitan. "Comparative evaluation of fluoride release among four commercially available dental restorative materials: An In-Vitro study." Endodontics Today 23, no. 1 (2025): 46–54. https://doi.org/10.36377/et-0077.

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INTRODUCTION. Several fluoride-containing dental restoratives are currently available, including glass ionomers (GIC), resin-modified glass ionomer cement (RMGIC), polyacid-modified composite resins (compomers), composites, and amalgams. The fluoride release capabilities of these materials differ due to their matrices and setting mechanisms, which in turn influence their antibacterial and cariostatic properties. Glass ionomer cements are particularly favored for their chemical bonding and fluoride release. However, their limitations include water sensitivity and reduced wear resistance, leadin
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9

Guler, Mehmet Sami. "The stress distribution of different types of restorative materials in primary molar." Open Chemistry 20, no. 1 (2022): 1451–57. http://dx.doi.org/10.1515/chem-2022-0240.

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Abstract The aim of this finite element analysis study is to evaluate the stress distributions of different types of restorative materials at Class I cavity in the primary molar. The non-cracked caries-free primary mandibular second molar that is extracted for orthodontic reasons is used to create a three-dimensional model. Two models were prepared as Model 1: the tooth model without restoration (control group) and Model 2: the tooth model with Class I restoration. Five different types of restorative materials were tested in Model 2 (resin modified glass ionomer [Fuji II LC], compomer [Dyract
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10

Al-Jazairy, Yousra Hussain, and Ahmed A. El-Hejazi. "The Color Differences Between Different Thicknesses of Resin Veneered Over Amalgam." Journal of Contemporary Dental Practice 6, no. 4 (2005): 38–45. http://dx.doi.org/10.5005/jcdp-6-4-38.

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Abstract Statement of Problem Composites and compomers are popular in dental practice. However, little is known about their esthetic appearance as veneering restorative materials over amalgam restorations. Purpose This in vitro study was designed to assess the color differences of composite and compomer restorative materials, placed in thicknesses of 1 mm and 2 mm over amalgam. Material and Methods Thirty six cylindrical Teflon molds were filled with amalgam (13 mm diameter, 2 mm thickness) and stored at 37°C and 100% relative humidity for 7 days. Nine veneers (for each thickness of 1 and 2 mm
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11

Taher, Nadia Malek. "The Effect of Bleaching Agents on the Surface Hardness of Tooth Colored Restorative Materials." Journal of Contemporary Dental Practice 6, no. 2 (2005): 18–26. http://dx.doi.org/10.5005/jcdp-6-2-18.

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Abstract Aim of the Study The aim of this study was to evaluate the effect of at-home (Opalesence/Dr. kit 15%, Ultradent, Products, Inc. South Jordan, UT, USA) and in-office (Superoxol 35%, Sultan Chemists, Inc., Englewood, NJ, USA) bleaching on the surface hardness of the following tooth colored restorative materials: composite resin, Point-4 (P4), Kerr Corporation, Orange, CA, USA; ormocer, Admira (AD),VOCO, Germany; compomer Dyract AP (DY), Dentsply DeTrey GmbH, Germany; and resin modified glass ionomer cement, Fuji II LC (FL), GC Corporation, Japan. Methodology Sixty specimens were prepare
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12

Al-Nahedh, Hend, and Nasrien Ateyah. "Effect of Different Bonding Conditions on the Shear Bond Strength of Two Compomers to Bovine Dentin." Journal of Contemporary Dental Practice 7, no. 4 (2006): 9–16. http://dx.doi.org/10.5005/jcdp-7-4-9.

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Abstract Aim Despite the improvements to compomer materials, the bond strength of these materials remains inferior to .composite/resin bonding. systems and limits their clinical use. The purpose of this study was to evaluate the effect of acidic conditioning with phosphoric acid and Prompt L-Pop (PLP) on the shear bond strength of two compomers Dyract AP (DAP) and Composan Glass (CG) to dentin. Methods and Materials Sixty extracted bovine teeth were used to test the shear bond strength of two compomers to flat dentin labial surfaces. The dentin specimens were randomly assigned to six groups of
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13

Ateyah, Nasrien Z., and Nadia Malek Taher. "Shear Bond Strength of Resin Modified Glass Ionomer Cement Bonded to Different Tooth-Colored Restorative Materials." Journal of Contemporary Dental Practice 8, no. 2 (2007): 25–34. http://dx.doi.org/10.5005/jcdp-8-2-25.

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Abstract Aim The aim of this study was to determine in vitro the shear bond strength (MPa) and the type of bond failure when resin-modified glass ionomer cement (RMGIC) was bonded with different tooth-colored restorative materials. Methods and Materials The RMGIC tested was Fuji II LC (FL) and the tooth-colored restorative materials used were composite resin Point-4 (P4), Compomer Dyract AP (DY), and Ormocere Admira (AD). A total number of 60 FL specimens were prepared using Teflon molds. The specimens were divided into six equal groups. Each group of ten specimens was bonded to a tested tooth
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14

Mondelli, Rafael Francisco Lia, Linda Wang, Fernanda Cristina Pimentel Garcia, et al. "Evaluation of weight loss and surface roughness of compomers after simulated toothbrushing abrasion test." Journal of Applied Oral Science 13, no. 2 (2005): 131–35. http://dx.doi.org/10.1590/s1678-77572005000200007.

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This study aimed at analyzing the compomers wear by an "in vitro" toothbrushing abrasion test. The null hypotheses tested were that there would be no differences in weight loss and no significant changes in surface roughness of the compomers after this test. The utilized commercial brands were Dyract (Dentsply), Dyract AP (Dentsply), Compoglass F (Vivadent), Freedom (SDI), F2000 (3M ESPE), which were compared to the two resin composites Z100 (3M ESPE) and Silux Plus (3M ESPE). Ten cylindrical specimens for each commercial brand were prepared with 5mm diameter and 3mm thickness. An appropriate
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15

Owens, Barry M. "The Effect of Different Drying Methods for Single Step Adhesive Systems on Microleakage of Tooth Colored Restorations." Journal of Contemporary Dental Practice 4, no. 1 (2003): 1–9. http://dx.doi.org/10.5005/jcdp-4-1-1.

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Abstract The purpose of this in vitro study was to evaluate microleakage of tooth colored restoratives and accompanying single step adhesive systems using two drying methods (syringe air versus “sponge” applicator blotting). Eighty teeth were randomly assigned to four material groups. Class V cavity preparations, located half in enamel and half in cementum at the cementoenamel junction (CEJ), with a 1.0 mm enamel bevel were completed. The adhesive/composite groups included: (1) Single-Bond/Z-100 Composite, (2) Prime & Bond 2.1/Dyract AP Compomer, (3) OptiBond Solo Plus/Prodigy Composite, a
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16

Abud Al-Sheed, Dr Mohammed I. "Microleakage of Dyract AP compomers in class V preprations of deciduous teeth after air-dried versus not dried salivary contamination at the occlusal wall (in vitro study)." Mustansiria Dental Journal 7, no. 1 (2018): 35–40. http://dx.doi.org/10.32828/mdj.v7i1.364.

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This in vitro study was conducted to asses the affect of salivary contamination incase of air dried or not dried (kept moist) before the application of the bonding agent(prime and bond NT) on the microleakage of Dyract AP compomers (advanceperformance) in primary molars at the occlusal wall of class V preparations andcompare it to the standardized technique of application.Sixty class V cavities were prepared in 30 teeth (exfoliated primary molars), thecavities were prepared in the middle third of the buccal and lingual surface of eachcrown and randomly divided into three groups (each group con
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17

Toh, C.G., and Kasim N.H. Abu. "Clinical evaluation of a compomer in the restoration of class I and II cavities in permanent posterior teeth: 1-year results." April 1, 2001. https://doi.org/10.5281/zenodo.811331.

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The clinical performances of a compomer (Dyract AP") is combination with a non-rinse conditioner (K-0100?) and self-priming adhesive (K-0 I07?) were compared with a hybrid composite resin (Spectrum TPH?) in combination with a 36% phosphoric acid conditioner (DeTrey Conditioner?) and self-priming adhesive (K-0107?) in a randomized controlled split-mouth model. 23 patients with bilateral occlusal and/or interproximal caries had their teeth restored with Dyract AP in one quadrant and Spectrum TPH in the opposite quadrant by either one of the 2 evaluators. Removal of tooth structure was as dictate
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