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Journal articles on the topic 'Dental bonding'

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1

Seo, Deog-Gyu. "Bonding for dental ceramic." Journal of The Korean Dental Association 50, no. 7 (2012): 377–83. http://dx.doi.org/10.22974/jkda.2012.50.7.002.

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Recently, ceramic materials have become a popular choice for dentists performing esthetic indirect restorations. The longevity and success of ceramic dental restorations depends on the adhesive procedures of resin cements. However, dental ceramics can be classified in various ways, depending on the compositions. Also, the applications for resin cement require multiple clinical steps. Therefore, understanding the different ceramic substrates involved in each procedure, as well as the proper adhesive steps for the resin cements is important to us for long-term clinical success.
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2

Adnan, S. "Dental materials: Bonding agents bite." British Dental Journal 217, no. 3 (2014): 108. http://dx.doi.org/10.1038/sj.bdj.2014.659.

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3

Mokeem, Lamia Sami, Isadora Martini Garcia, and Mary Anne Melo. "Degradation and Failure Phenomena at the Dentin Bonding Interface." Biomedicines 11, no. 5 (2023): 1256. http://dx.doi.org/10.3390/biomedicines11051256.

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Damage in the bonding interface is a significant factor that leads to premature failure of dental bonded restorations. The imperfectly bonded dentin-adhesive interface is susceptible to hydrolytic degradation and bacterial and enzyme attack, severely jeopardizing restorations’ longevity. Developing caries around previously made restorations, also called “recurrent or secondary caries,” is a significant health problem. The replacement of restorations is the most prevailing treatment in dental clinics, leading to the so-called “tooth death spiral”. In other words, every time a restoration is rep
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Park, Minsu, Sungwon Ju, Roscoe Linstadt, Jinsoo Ahn, and Kollbe Ahn. "Dental Adhesion Enhancement on Zirconia Inspired by Mussel’s Priming Strategy Using Catechol." Coatings 8, no. 9 (2018): 298. http://dx.doi.org/10.3390/coatings8090298.

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Zirconia has recently become one of the most popular dental materials in prosthodontics being used in crowns, bridges, and implants. However, weak bonding strength of dental adhesives and resins to zirconia surface has been a grand challenge in dentistry, thus finding a better adhesion to zirconia is urgently required. Marine sessile organisms such as mussels use a unique priming strategy to produce a strong bonding to wet mineral surfaces; one of the distinctive chemical features in the mussel’s adhesive primer proteins is high catechol contents among others. In this study, we pursued a bioin
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Manuja, N., R. Nagpal, and IK Pandit. "Dental Adhesion." Journal of Clinical Pediatric Dentistry 36, no. 3 (2012): 223–34. http://dx.doi.org/10.17796/jcpd.36.3.68805rl1r037m063.

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Contemporary dental adhesives show favorable immediate results in terms of bonding effectiveness. However, the durability of resin-dentin bonds is their major problem. It appears that simplification of adhesive techniques is rather detrimental to the long term stability of resin-tooth interface. The hydrostatic pulpal pressure, the dentinal fluid flow and the increased dentinal wetness in vital dentin can affect the intimate interaction of certain dentin adhesives with dentinal tissue. Bond degradation occurs via water sorption, hydrolysis of ester linkages of methacrylate resins, and activati
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6

Spielman, Andrew I., and Judit Forrai. "History of the Dental Cement." Kaleidoscope history 14, no. 28 (2024): 397–99. http://dx.doi.org/10.17107/kh.2024.28.26.

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The history of adhesives in dentistry dates back to the first millennium when Mayans used to attach semiprecious stones to teeth as dental jewellery. The first dental cement was introduced in 1796 and, as demand for esthetics and bonding strength increased, was perfected throughout the next 150 years. Since 1955, new adhesives using bonding agents have been developed.
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Azeem, Muhammad, Sabir Ali, Ambreen Shaukat, and Arfan ul Haq. "TRADITIONAL LECTURE." Professional Medical Journal 25, no. 06 (2018): 937–40. http://dx.doi.org/10.29309/tpmj/2018.25.06.284.

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Introduction: Use of audiovisual aids is not new to improve dental teachingefficiency. Objective: To compare the effectiveness of traditional lecture versus video fororthodontic training of dental interns. Study design: Prospective, Randomized trial. Setting:Orthodontic Dental Section, Faisalabad Medical University. Period: 15.7.2017 to 5.2.2018.Materials & Methods: Two groups of 15 dental interns were selected randomly at OrthodonticDental Section, Faisalabad Medical University. One group was presented with traditional lecturewhile other group was shown a video. The learning objective of
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8

Cacciafesta, V. "Dental hard tissues and bonding (2005)." European Journal of Orthodontics 28, no. 3 (2005): 306. http://dx.doi.org/10.1093/ejo/cjl018.

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9

Steinke, R., P. Newcomer, S. Komarneni, and R. Roy. "Dental cements: Investigation of chemical bonding." Materials Research Bulletin 23, no. 1 (1988): 13–22. http://dx.doi.org/10.1016/0025-5408(88)90219-x.

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10

Liu, Honghua, Jiahua Ni, Luhai Wu, and Guo He. "Diffusion bonding of mismatch dental alloys." Journal of Biomedical Materials Research Part B: Applied Biomaterials 9999B (2009): NA. http://dx.doi.org/10.1002/jbm.b.31556.

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11

Wirwicki, Mateusz, and Tomasz Topoliński. "Shear Strength Testing of Bonded Joints of Dental Materials." Solid State Phenomena 224 (November 2014): 198–203. http://dx.doi.org/10.4028/www.scientific.net/ssp.224.198.

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Zirconium dioxide is a material more and more used by technicians and dental surgeons due to its chemical composition and excellent mechanical strength. It features high biocompatibility and may be used even in 6-unit fixed dental bridges. Adhesive bonding is one of the methods used in dental applications. New generation bonding agents featuring high mechanical strength are widely available on the market. This article presents the equipment designed and manufactured to European Standards for bonded joint testing as well as specimen geometry and bonding method. Monotonic and fatigue tests of bo
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12

Pioch, T., S. Stotz, H. J. Staehle, and H. Duschner. "Applications of Confocal Laser Scanning Microscopy to Dental Bonding." Advances in Dental Research 11, no. 4 (1997): 453–61. http://dx.doi.org/10.1177/08959374970110041201.

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The introduction of confocal laser scanning microscopy (CLSM) has provided a valuable new technique for the visualization of bonding structures such as a hybrid layer in dentin (Watson, 1989, 1991), In the case of seven commercially-available dentin bonding systems, it could be demonstrated that the CLSM renders considerably more detailed information than the SEM because of its nondestructive nature and because of the possibility of a distinction between components of bonding agents. With most of the bonding systems, measurements of the thickness of the hybrid layer could be carried out when t
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13

Lim, Bum-Soon, and Soo-Bok Her. "Bonding to zirconia with resin cements." Journal of The Korean Dental Association 49, no. 5 (2011): 265–78. http://dx.doi.org/10.22974/jkda.2011.49.5.002.

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The introduction of zirconia-based materials to the dental field broadened the design and application limits of, all-ceramic restorations. Most ceramic restorations are adhesively luted to the prepared tooth, however, resin bonding to zirconia components is less reliable than those to other dental ceramic systems. It is important for high retention, prevention of microleakage, and increased fracture resistance, that bonding techniques be improved for zirconia systems. Strong resin bonding relies on micromechanical interlocking and adhesive chemical bonding to the ceramic surface, requiring sur
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14

Aditi, Kulshrestha, Singh Harpreet, and Gautam Rishu. "Historical Evolution of Dentin Bonding Agents: A Clinician's Perspective." INTERNATIONAL JOURNAL OF MULTIDISCIPLINARY RESEARCH AND ANALYSIS 06, no. 01 (2023): 452–54. https://doi.org/10.5281/zenodo.7588844.

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The development of dentin bonding agents has revolutionized the field of esthetic and restorative dentistry. Buonocore’s discovery on enamel acid-etching followed by description of hybrid layer by Nakabayashi et al are some of the major breakthroughs which are responsible for changing paradigms in adhesive dentistry.On the basis of mode of use,dental adhesives can be divided in generations. Currently, challenges lie in front of the researchers to develop products that not only bind to the tooth but also contain antibacterial, remineralizing and enzymatic-inhibitory properties that can in
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15

Arossi, G. A., R. R. Dihl, M. Lehmann, K. S. Cunha, M. L. Reguly, and H. H. R. de Andrade. "In vivo genotoxicity of dental bonding agents." Mutagenesis 24, no. 2 (2008): 169–72. http://dx.doi.org/10.1093/mutage/gen066.

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16

Manso, Adriana P., and Ricardo M. Carvalho. "Dental Cements for Luting and Bonding Restorations." Dental Clinics of North America 61, no. 4 (2017): 821–34. http://dx.doi.org/10.1016/j.cden.2017.06.006.

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17

Uo, Motohiro, Göran Sjoren, Anders Sundh, Fumio Watari, Maud Bergman, and Ulf Lerner. "Cytotoxicity and bonding property of dental ceramics." Dental Materials 19, no. 6 (2003): 487–92. http://dx.doi.org/10.1016/s0109-5641(02)00094-5.

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18

Bal, Sourav Chandra Bidyasagar, Radha Prasanna Dalai, Sashikant Sethy, Sukhvinder Oberoi, and Amit Mehta. "Implant & Dental Plaque: A Close Bonding." Indian Journal of Public Health Research & Development 10, no. 11 (2019): 309. http://dx.doi.org/10.5958/0976-5506.2019.03480.6.

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19

Vojvodic, Denis, Vjekoslav Jerolimov, Domagoj Zabarovic, and Ante Loncar. "Bond Strengths of Two Dental Bonding Systems." Military Medicine 165, no. 7 (2000): 560–65. http://dx.doi.org/10.1093/milmed/165.7.560.

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20

Kim, Kwang-Mahn. "Luting between Resin Cement and Dental Prosthetic Materials." Journal of The Korean Dental Association 53, no. 3 (2015): 195–200. http://dx.doi.org/10.22974/jkda.2015.53.3.003.

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Cementation is the last procedure and an important factor to access successful fixed prosthodontic treatment. Even though there are many kinds of luting materials in dental field, the resin cements are popularly used in now. Metals, polymers and ceramics are used as a material of fixed dental prosthesis. The bonding mechanisms between teeth and fixed restorations are composed of mechanical and chemical mechanism. In dentistry, we are relying on mechanical bonding, but we tried to get chemical bonding and many ways are introduced. So, we have to approach luting procedure differently by the mate
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21

Yu, F., M. L. Luo, R. C. Xu, et al. "Evaluation of a Collagen-Reactive Monomer with Advanced Bonding Durability." Journal of Dental Research 99, no. 7 (2020): 813–19. http://dx.doi.org/10.1177/0022034520913540.

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This study evaluated the use of a new collagen-reactive monomer (CRM), isocyanate-terminated urethane methacrylate precursor, which has covalent affinity to dental collagen, in the formation of dentin-resin bonds and compared it with 2 other dental adhesives. Dentin specimens were bonded with either the CRM-based adhesive (CBA), One-Step (OS; Bisco, Inc.), or a negative adhesive (NA) control and subjected to 24-h storage in water, thermocycling to simulate 1-y clinical function, or a matrix metalloproteinase–mediated aging process. We tested the microtensile bond strength (µTBS), characterized
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22

Yoon, S. I., Yong Keun Lee, Yeon Ung Kim, et al. "The Effects of Hydroxyapatite on Bonding Strength between Dental Luting Cement and Human Teeth." Key Engineering Materials 284-286 (April 2005): 953–56. http://dx.doi.org/10.4028/www.scientific.net/kem.284-286.953.

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This study aimed to investigate the effects of hydroxyapatite on bonding strength between dental luting cement and human teeth. In the previous study, bonelike forming ability by mixing hydroxyapatite with several bone cements was reported in a protein-free acellular simulated body fluid with ion concentrations nearly equal to those of the human blood plasma. Therefore in this experiment, we assumed that if bonelike apatite layer could form between dental luting cement and human teeth, the bonding strength between the two would improve. In addition, we expected the HA mixed dental luting cemen
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23

Kim, Mul Kyel, and Kwang-Mahn Kim. "Survey study on the using state of dentin bonding systems in Korea." Journal of The Korean Dental Association 54, no. 10 (2016): 780–88. http://dx.doi.org/10.22974/jkda.2016.54.10.003.

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Dentin bonding systems are unique dental materials which are rapidly evolute and essential materials for bonding of restorative materials to dentin. Now, 4th generation, 5th generation, 6th generation and 7th generation of dentin bonding systems are used in clinic. We investigated the frequency, motivation of choosing dentin bonding systems and satisfaction of them by survey in 2014. 5th generation of dentin bonding systems are mostly used in Korea and young dentist have tendency to choose newly developed dentin bonding systems.
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24

Fleming, Garry JP. "Advances in Dental Materials." Primary Dental Journal 3, no. 2 (2014): 54–61. http://dx.doi.org/10.1308/205016814812143950.

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The dental market is replete with new restorative materials marketed on the basis of novel technological advances in materials chemistry, bonding capability or reduced operator time and/or technique sensitivity. This paper aims to consider advances in current materials, with an emphasis on their role in supporting contemporary clinical practice.
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25

Bhandi, Shilpa H., Mohamed Moustafa Awad, H. Alqahtani, A. Al-Mudahi, MS Murayshed, and A. Alrahlah. "Adhesive Bonding to Computer-aided Design/Computer-aided Manufacturing Esthetic Dental Materials: An Overview." Journal of Contemporary Dental Practice 18, no. 7 (2017): 622–26. http://dx.doi.org/10.5005/jp-journals-10024-2095.

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ABSTRACT Aim To review the adhesive bonding to different computer-aided design/computer-aided manufacturing (CAD/CAM) esthetic restorative materials. Background The use of CAD/CAM esthetic restorative materials has gained popularity in recent years. Several CAD/ CAM esthetic restorative materials are commercially available. Adhesive bonding is a major determinant of success of CAD/ CAM restorations. Review result An account of the currently available bonding strategies are discussed with their rationale in various CAD/ CAM materials. Conclusion Different surface treatment methods as well as ad
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26

Mas Ayu, Hassan, M. M. Mustaqieem, Rosdi Daud, A. Shah, Andril Arafat, and M. S. Dambatta. "Effect of Polylactic Acid/Hydroxyapatite Coating on Dental Implant Using Finite Element Method." Materials Science Forum 995 (June 2020): 103–8. http://dx.doi.org/10.4028/www.scientific.net/msf.995.103.

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Finite element analysis (FEA) has been proven to be a precise and applicable method for evaluating dental implant systems. This is because FEA allows for measurement of the stress distribution inside of the bone and various dental implant designs via simulation analysis during mastication where such measurements are impossible to perform in-vitro or in-vivo experiment. That is why the relationship between implant design and load distribution at the implant bone interface is a crucial issue to understand. This research study focuses on a static simulation and bonding strength for PLA/HA coating
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Alshabib, Abdulrahman, Khaled Abid Althaqafi, Hani S. AlMoharib, Mahir Mirah, Yasser F. AlFawaz, and Hamad Algamaiah. "Dental Fiber-Post Systems: An In-Depth Review of Their Evolution, Current Practice and Future Directions." Bioengineering 10, no. 5 (2023): 551. http://dx.doi.org/10.3390/bioengineering10050551.

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The field of dental medicine is constantly evolving and advancing toward minimally invasive techniques. Several studies have demonstrated that bonding to the tooth structure, particularly enamel, yields the most predictable results. In some instances, however, significant tooth loss, pulpal necrosis, or irreversible pulpitis may limit the options available to the restorative dentist. In these cases, placement of a post and core followed by a crown is the preferred treatment option, provided all requirements are met. This literature review provides an overview of the historical development of d
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Mok, Zi Hong, Gordon Proctor, and Maya Thanou. "Emerging nanomaterials for dental treatments." Emerging Topics in Life Sciences 4, no. 6 (2020): 613–25. http://dx.doi.org/10.1042/etls20200195.

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The emergence of nanomaterials for dental treatments is encouraged by the nanotopography of the tooth structure, together with the promising benefits of nanomedicine. The use of nanoparticles in dentistry, also termed as ‘nanodentistry', has manifested in applications for remineralisation, antimicrobial activity, local anaesthesia, anti-inflammation, osteoconductivity and stem cell differentiation. Besides the applications on dental tissues, nanoparticles have been used to enhance the mechanical properties of dental composites, improving their bonding and anchorage and reducing friction. The s
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Hashiguchi, Makiko, Hideo Sato, Y. Nishi, et al. "Effect of Surface Treatments on Bonding Strength of Zirconia to Dental Cements." Key Engineering Materials 396-398 (October 2008): 575–78. http://dx.doi.org/10.4028/www.scientific.net/kem.396-398.575.

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The aim of this study was to investigate the effect of surface treatments on bonding strength of two kinds of zirconia to two kinds of dental cements. After thermal cycling, the shear bonding strength of both zirconia with alumina coating increased in both cements. The shear bonding strength of both zirconia with sandblasting decrease in Fuji plus after thermal cycling (p<0.05). There was no significant difference between NANOZR and Y-TZP (p>0.05). The bonding strengths of NANOZR with the alumina coating were higher than those with sandblasting after thermal-cycling (p<0.05).
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30

Kakar, Surbhi, and Rohit Nagar. "Dentin Bonding Agents-II Recent Trials." World Journal of Dentistry 3, no. 1 (2012): 115–18. http://dx.doi.org/10.5005/jp-journals-10015-1140.

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ABSTRACT Most modern adhesive systems are superior to their predecessors, especially in terms of retention that is no longer the main cause of premature clinical failure. Recent adhesives also appear less sensitive to substrate and other clinical covariables. Various recent trials have been conducted on various issues like the antibacterial properties of self-ethching dental adhesive system (which are effective against bacteria that invade through microleakage at the resin dentin interphase), shear bond strength of composite resin to dentin, using newer dentin bonding agents, nanoleakege expre
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31

Elshereksi, Nidal W., Mariyam J. Ghazali, Andanastuti Muchtar, and Che H. Azhari. "Aspects of Titanate Coupling Agents and their Application in Dental Polymer Composites: A Review." Advanced Materials Research 1134 (December 2015): 96–102. http://dx.doi.org/10.4028/www.scientific.net/amr.1134.96.

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Silanes are extensively used in dental composites to facilitate chemical bonding among the phases of composites. Despite their popularity, the dental application of silanes as coupling agents is still restricted by a few limitations, which include their hydrolytic instability in aqueous oral environment and their inefficiency to bond with nonsilica fillers. Titanate coupling agents can provide good interphase bonding, improve mechanical properties, enhance filler homogenous dispersibility, and modify the rheological behavior of composites. Moreover, moisture resistance can be improved by addin
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32

Farronato, Marco, Davide Farronato, Francesco Inchingolo, Laura Grassi, Valentina Lanteri, and Cinzia Maspero. "Evaluation of Dental Surface after De-Bonding Orthodontic Bracket Bonded with a Novel Fluorescent Composite: In Vitro Comparative Study." Applied Sciences 11, no. 14 (2021): 6354. http://dx.doi.org/10.3390/app11146354.

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The use of a new fluorescent composite can reduce some of the problems related to procedures of de-bonding orthodontic bracket (enamel damage, dentine lesions, and composite residuals). The aim of the presented study was to compare the effect of fluorescent and conventional non-fluorescent composite on dental surface and composite remnants by in vitro de-bonding tests. De-bonding of florescent composite (DFC) and the de-bonding of standard composite (DSC) were performed by operators on an in vitro sample of 48 teeth under UV light (360–370 nm min 20 mW/cm2). Modified ARI (Adhesive Remnant Inde
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33

He, Xi, Shiyang Yu, Huimin Wang, et al. "A novel resin cement to improve bonding interface durability." RSC Advances 12, no. 37 (2022): 24288–300. http://dx.doi.org/10.1039/d2ra04446c.

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34

Mine, Tsutomu, Kazuo Motomura, and Hidekazu Takahashi. "Bonding Strength between Universal Alloy and Dental Porcelain." Nihon Hotetsu Shika Gakkai Zasshi 42, no. 3 (1998): 510–19. http://dx.doi.org/10.2186/jjps.42.510.

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Tomsia, Antoni P., and Joseph A. Pask. "Bonding of Dental Glass to Nickel-Chromium Alloys." Journal of the American Ceramic Society 69, no. 10 (1986): C—239—C—240. http://dx.doi.org/10.1111/j.1151-2916.1986.tb07348.x.

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Yoshihara, K., Y. Yoshida, S. Hayakawa, et al. "Novel Fluoro-carbon Functional Monomer for Dental Bonding." Journal of Dental Research 93, no. 2 (2013): 189–94. http://dx.doi.org/10.1177/0022034513514447.

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Zhang, Jie, Wenjie Hu, Tijana Stijacic, Kwok-Hung Chung, Tingkai Li, and Zhijian Shen. "Bonding of novel self-glazed zirconia dental ceramics." Advances in Applied Ceramics 118, no. 1-2 (2018): 37–45. http://dx.doi.org/10.1080/17436753.2018.1463935.

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Fischer, J. "Ceramic bonding to a dental gold–titanium alloy." Biomaterials 23, no. 5 (2002): 1303–11. http://dx.doi.org/10.1016/s0142-9612(01)00248-4.

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39

Aguilar-Mendoza, Jose A., Juan I. Rosales-Leal, Miguel A. Rodríguez-Valverde, Santiago González-López, and Miguel A. Cabrerizo-Vílchez. "Wettability and bonding of self-etching dental adhesives." Dental Materials 24, no. 7 (2008): 994–1000. http://dx.doi.org/10.1016/j.dental.2007.11.013.

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Chan, Kai Chiu, and Edward J. Swift. "Marginal seal of new-generation dental bonding agents." Journal of Prosthetic Dentistry 72, no. 4 (1994): 420–23. http://dx.doi.org/10.1016/0022-3913(94)90563-0.

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Ahsan, Aisha, and Martin Ashley. "Hypersensitivity to dental composites and resin-bonding agents." Dental Update 43, no. 9 (2016): 836–42. http://dx.doi.org/10.12968/denu.2016.43.9.836.

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42

FUKUSHIMA, Tadao, and Takashi HORIBE. "Bonding of Succinoxy Alkylene Methacrylates to Dental Alloys." Dental Materials Journal 6, no. 1 (1987): 83–89. http://dx.doi.org/10.4012/dmj.6.83.

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FUKUSHIMA, Tadao, Jack L. FERRACANE, Takashi HORIBE, and Toru OKABE. "Bonding of Various Succinoxy Methacrylates to Dental Alloys." Dental Materials Journal 7, no. 1 (1988): 1–12. http://dx.doi.org/10.4012/dmj.7.1.

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Kern, Matthias. "Resin Bonding to Oxide Ceramics for Dental Restorations." Journal of Adhesion Science and Technology 23, no. 7-8 (2009): 1097–111. http://dx.doi.org/10.1163/156856109x432721.

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Bona, Alvaro Della. "Important Aspects of Bonding Resin to Dental Ceramics." Journal of Adhesion Science and Technology 23, no. 7-8 (2009): 1163–76. http://dx.doi.org/10.1163/156856109x440146.

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46

Uusalo, Elina K., Veijo P. Lassila, and Antti U. Yli-Urpo. "Bonding of dental porcelain to ceramic-metal alloys." Journal of Prosthetic Dentistry 57, no. 1 (1987): 26–29. http://dx.doi.org/10.1016/0022-3913(87)90111-9.

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47

Burns, Angus, Annie Hughes, and Michael O’Sullivan. "Orthodontic bonding in special circumstances." British Dental Journal 237, no. 5 (2024): 400–406. http://dx.doi.org/10.1038/s41415-024-7791-z.

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AbstractThis clinical paper provides an in-depth exploration of advanced techniques for bonding orthodontic attachments under special circumstances. Challenges arise when bonding brackets to non-enamel surfaces, such as dental restorations, and in conditions such as amelogenesis imperfecta, which affect enamel integrity. Distinct approaches required for bonding to different restorative materials, including glassy ceramics, zirconia, resin composites and metals, are outlined. Moreover, we describe strategies to manage bonding in conditions including amelogenesis imperfecta, hypodontia and micro
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48

Mijoska, Aneta, and Mirjana Popovska. "Evaluation of zirconia bonding to veneering porcelain." Macedonian Pharmaceutical Bulletin 60, no. 02 (2014): 51–56. http://dx.doi.org/10.33320/maced.pharm.bull.2014.60.02.005.

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Zirconium dioxide as core ceramic material for dental crowns and bridges, possess high strength, chemical stability and superior aesthetics after veneering. Veneering ceramic is considered to be the weakest part of all-ceramic restorations. The adhesion between the core and veneering porcelain is based on the manner in which the connection occurs in metal-ceramic structures. Standard procedures for connecting zirconia to hard dental tissues and veneering materials do not achieve the required strength of bonding. The aim of the paper is to investigate different surface treatments of the zirconi
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49

Gupta, Anjali, Sachin Gupta, and Vineeta Nikhil. "Restorative Dentistry Bonding Strategies: A Narrative Analysis." International Journal of Research and Review 12, no. 6 (2025): 614–22. https://doi.org/10.52403/ijrr.20250669.

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In restorative dentistry, effective bonding techniques are fundamental to achieving long-lasting, functional, and aesthetically pleasing dental restorations. As adhesive materials and technologies have advanced, clinical practices have shifted away from traditional mechanical retention methods toward minimally invasive procedures that rely on strong adhesion to enamel and dentin. This article outlines the primary bonding methods currently in use, such as etch-and-rinse, self-etch, and universal adhesives. Each method offers distinct advantages and challenges concerning bond durability, ease of
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Bertoz, André Pinheiro de Magalhães, Derly Tescaro Narcizo de Oliveira, Carla Maria Melleiro Gimenez, André Luiz Fraga Briso, Francisco Antonio Bertoz, and Eduardo César Almada Santos. "Effect of moisture on dental enamel in the interaction of two orthodontic bonding systems." Dental Press Journal of Orthodontics 18, no. 4 (2013): 89–97. http://dx.doi.org/10.1590/s2176-94512013000400013.

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Abstract:
OBJECTIVE: The purpose of this study was to assess by means of scanning electron microscopy (SEM) the remaining adhesive interface after debonding orthodontic attachments bonded to bovine teeth with the use of hydrophilic and hydrophobic primers under different dental substrate moisture conditions. MATERIAL AND METHODS: Twenty mandibular incisors were divided into four groups (n=5). In Group I, bracket bonding was performed with Transbond MIP hydrophilic primer and Transbond XT adhesive paste applied to moist substrate, and in Group II a bonding system comprising Transbond XT hydrophobic prime
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