The Perio-Resto Interface: In Vitro Comparison of Two Deep Margin Elevation Techniques on Surface Roughness, Marginal Adaptation and Material Integrity
Abstract
1. Introduction
2. Materials and Methods
3. Results
4. Discussion
5. Conclusions
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Acknowledgments
Conflicts of Interest
Abbreviations
| CEJ | cementoenamel junction |
| CI | confidence interval |
| DME | deep margin elevation |
| IDS | immediate dentin sealing |
| MMT | modified matrix technique |
| OPMI | operating microscope |
| OR | Odds ratio |
| R2T | R2 technique |
| SA | supracrestal attachment |
| SEM | scanning electron microscopy |
| V | Cramér’s V |
References
- Jordan, R.A.; Bodechtel, C.; Hertrampf, K.; Hoffmann, T.; Kocher, T.; Nitschke, I.; Schiffner, U.; Stark, H.; Zimmer, S.; Micheelis, W. The Fifth German Oral Health Study (Fünfte Deutsche Mundgesundheitsstudie, DMS V)—Rationale, design, and methods. BMC Oral Health 2014, 14, 161. [Google Scholar] [CrossRef] [Scilit]
- Kassebaum, N.J.; Bernabé, E.; Dahiya, M.; Bhandari, B.; Murray, C.J.L.; Marcenes, W. Global burden of untreated caries: A systematic review and metaregression. J. Dent. Res. 2015, 94, 650–658. [Google Scholar] [CrossRef] [Scilit]
- Bernabé, E.; Sheiham, A. Age, period and cohort trends in caries of permanent teeth in four developed countries. Am. J. Public Health 2014, 104, e115–e121. [Google Scholar] [CrossRef] [Scilit]
- Takahashi, N.; Nyvad, B. Ecological Hypothesis of Dentin and Root Caries. Caries Res. 2016, 50, 422–431. [Google Scholar] [CrossRef] [Scilit] [PubMed]
- Lamster, I.B.; Asadourian, L.; Del Carmen, T.; Friedman, P.K. The aging mouth: Differentiating normal aging from disease. Periodontology 2000 2016, 72, 96–107. [Google Scholar] [CrossRef] [Scilit] [PubMed]
- Jin, L.J.; Lamster, I.B.; Greenspan, J.S.; Pitts, N.B.; Scully, C.; Warnakulasuriya, S. Global burden of oral diseases: Emerging concepts, management and interplay with systemic health. Oral Dis. 2016, 22, 609–619. [Google Scholar] [CrossRef] [Scilit] [PubMed]
- Curzon, M.E.J.; Preston, A.J. Risk groups: Nursing bottle caries/caries in the elderly. Caries Res. 2004, 38, 24–33. [Google Scholar] [CrossRef] [Scilit]
- Hansen, E.K.; Asmussen, E. Visible-light curing units: Correlation between depth of cure and distance between exit window and resin surface. Acta Odontol. Scand. 1997, 55, 162–166. [Google Scholar] [CrossRef] [Scilit]
- Clarkson, J.E.; Worthington, H.V.; Holloway, P.J. Adult dental surveys: A different approach. Community Dent. Health 1995, 12, 65–69. [Google Scholar]
- Hummel, R.; Akveld, N.A.E.; Bruers, J.J.M.; van der Sanden, W.J.M.; Su, N.; van der Heijden, G.J.M.G. Caries Progression Rates Revisited: A Systematic Review. J. Dent. Res. 2019, 98, 746–754. [Google Scholar] [CrossRef] [Scilit]
- Mejàre, I.; Källestål, C.; Stenlund, H. Incidence and progression of approximal caries from 11 to 22 years of age in Sweden: A prospective radiographic study. Caries Res. 1999, 33, 93–100. [Google Scholar] [CrossRef] [Scilit]
- Saintrain, M.V.d.L.; de Souza, E.H.A. Impact of tooth loss on the quality of life. Gerodontology 2012, 29, e632–e636. [Google Scholar] [CrossRef] [Scilit]
- Gerritsen, A.E.; Allen, P.F.; Witter, D.J.; Bronkhorst, E.M.; Creugers, N.H.J. Tooth loss and oral health-related quality of life: A systematic review and meta-analysis. Health Qual. Life Outcomes 2010, 8, 126. [Google Scholar] [CrossRef] [Scilit] [PubMed]
- Halpern, L.R.; Feldman, S. Perioperative risk assessment in the surgical care of geriatric patients. Oral Maxillofac. Surg. Clin. N. Am. 2006, 18, 19–34. [Google Scholar] [CrossRef] [Scilit] [PubMed]
- Smith, I.R.; Brownlea, A.A. Cost-conservative dentistry: Appropriate dentistry at lower cost. Aust. Dent. J. 1993, 38, 360–366. [Google Scholar] [CrossRef] [Scilit] [PubMed]
- Listl, S.; Galloway, J.; Mossey, P.A.; Marcenes, W. Global Economic Impact of Dental Diseases. J. Dent. Res. 2015, 94, 1355–1361. [Google Scholar] [CrossRef] [Scilit] [PubMed]
- Soares, C.J.; Branco, C.A.; Soares, P.B.F.; Fonseca, R.B.; Carlo, H.L.; Neto, A.J.F. Effect of blood contamination during adhesive restorative procedures on dentin-resin cement shear bond strength. Braz. J. Oral Sci. 2007, 6, 1320–1325. [Google Scholar]
- Shimazu, K.; Karibe, H.; Ogata, K. Effect of artificial saliva contamination on adhesion of dental restorative materials. Dent. Mater. J. 2014, 33, 545–550. [Google Scholar] [CrossRef] [Scilit]
- Pooja, N.; Hickel, R.; Ilie, N. Adverse effects of salivary contamination for adhesives in restorative dentistry. A literature review. Am. J. Esthet. Dent. 2017, 30, 156–164. [Google Scholar]
- Bosshardt, D.D. The periodontal pocket: Pathogenesis, histopathology and consequences. Periodontology 2000 2018, 76, 43–50. [Google Scholar] [CrossRef] [Scilit]
- Korsch, M.; Robra, B.-P.; Walther, W. Cement-associated signs of inflammation: Retrospective analysis of the effect of excess cement on peri-implant tissue. Int. J. Prosthodont. 2015, 28, 11–18. [Google Scholar] [CrossRef] [Scilit] [PubMed]
- Wilson, T.G. The positive relationship between excess cement and peri-implant disease: A prospective clinical endoscopic study. J. Periodontol. 2009, 80, 1388–1392. [Google Scholar] [CrossRef] [Scilit] [PubMed]
- Lang, N.P.; Lindhe, J. Clinical Periodontology and Implant Dentistry, 6th ed.; Wiley: Somerset, UK, 2015; ISBN 9781118940488. [Google Scholar]
- Padbury, A.; Eber, R.; Wang, H.-L. Interactions between the gingiva and the margin of restorations. J. Clin. Periodontol. 2003, 30, 379–385. [Google Scholar] [CrossRef] [Scilit]
- Sarfati, A.; Tirlet, G. Deep margin elevation versus crown lengthening: Biologic width revisited. Int. J. Esthet. Dent. 2018, 13, 334–356. [Google Scholar] [PubMed]
- Tal, H.; Soldinger, M.; Dreiangel, A.; Pitaru, S. Periodontal response to long-term abuse of the gingival attachment by supracrestal amalgam restorations. J. Clin. Periodontol. 1989, 16, 654–659. [Google Scholar] [CrossRef] [Scilit]
- Gunay, H.; Seeger, A.; Tschernitschek, H.; Geurtsen, W. Placement of the preparation line and periodontal health—A prospective 2-year clinical study. Int. J. Periodontics Restor. Dent. 2000, 20, 171–181. [Google Scholar]
- Pascal, M.; Spreafico, R.C. Deep margin elevation: A paradigm shift. Am. J. Esthet. Dent. 2012, 2, 86–96. [Google Scholar]
- Frese, C.; Wolff, D.; Staehle, H.J. Proximal box elevation with resin composite and the dogma of biological width: Clinical R2-technique and critical review. Oper. Dent. 2014, 39, 22–31. [Google Scholar] [CrossRef] [Scilit]
- Magne, P.; Kim, T.H.; Cascione, D.; Donovan, T.E. Immediate dentin sealing improves bond strength of indirect restorations. J. Prosthet. Dent. 2005, 94, 511–519. [Google Scholar] [CrossRef] [Scilit] [PubMed]
- Barakah, H. Effect of different curing times and distances on the microhardness of nanofilled resin-based composite restoration polymerized with high-intensity LED light curing units. Saudi Dent. J. 2021, 33, 1035–1041. [Google Scholar] [CrossRef] [Scilit]
- Farahat, F.; Daneshkazemi, A.R.; Hajiahmadi, Z. The Effect of Bulk Depth and Irradiation Time on the Surface Hardness and Degree of Cure of Bulk-Fill Composites. J. Dent. Biomater. 2016, 3, 284–291. [Google Scholar]
- Zuhr, O.; Hürzeler, M. Plastisch-Ästhetische Parodontal-und Implantatchirurgie; Quintessenz: Berlin, Germany, 2011. [Google Scholar]
- Plotino, G.; Abella Sans, F.; Duggal, M.S.; Grande, N.M.; Krastl, G.; Nagendrababu, V.; Gambarini, G. European Society of Endodontology position statement: Surgical extrusion, intentional replantation and tooth autotransplantation: European Society of Endodontology developed by. Int. Endod. J. 2021, 54, 655–659. [Google Scholar] [CrossRef] [Scilit]
- Carvalho, C.V.; Bauer, F.P.F.; Romito, G.A.; Pannuti, C.M.; de Micheli, G. Orthodontic extrusion with or without circumferential supracrestal fiberotomy and root planing. Int. J. Periodontics Restor. Dent. 2006, 26, 87–93. [Google Scholar]
- Tachibana, A.; Muassab Castanho, G.; Nilo Vieira, S.; Bona Matos, A. Influence of blood contamination on bond strength of a self-etching adhesive to dental tissues. J. Adhes. Dent. 2011, 13, 349–358. [Google Scholar]
- Roggendorf, M.J.; Krämer, N.; Dippold, C.; Vosen, V.E.; Naumann, M.; Jablonski-Momeni, A.; Frankenberger, R. Effect of proximal box elevation with resin composite on marginal quality of resin composite inlays in vitro. J. Dent. 2012, 40, 1068–1073. [Google Scholar] [CrossRef] [Scilit]
- Frankenberger, R.; Hehn, J.; Hajtó, J.; Krämer, N.; Naumann, M.; Koch, A.; Roggendorf, M.J. Effect of proximal box elevation with resin composite on marginal quality of ceramic inlays in vitro. Clin. Oral Investig. 2013, 17, 177–183. [Google Scholar] [CrossRef] [Scilit]
- Vertolli, T.J.; Martinsen, B.D.; Hanson, C.M.; Howard, R.S.; Kooistra, S.; Ye, L. Effect of Deep Margin Elevation on CAD/CAM-Fabricated Ceramic Inlays. Oper. Dent. 2020, 45, 608–617. [Google Scholar] [CrossRef] [Scilit]
- Marending, M.; Paqué, F.; Fischer, J.; Zehnder, M. Impact of irrigant sequence on mechanical properties of human root dentin. J. Endod. 2007, 33, 1325–1328. [Google Scholar] [CrossRef] [Scilit]
- Dietschi, D.; Duc, O.; Krejci, I.; Sadan, A. Biomechanical considerations for the restoration of endodontically treated teeth: A systematic review of the literature, Part II (Evaluation of fatigue behavior interfaces, and in vivo studies). Quintessence Int. 2008, 39, 117–129. [Google Scholar]
- Dietschi, D.; Duo, O.; Krejci, I.; Sadan, A. Biomechanical considerations for the restoration of endodontically treated teeth: A systematic review of the literature—Part 1. Composition and micro-and macrostructure alterations. Quintessence Int. 2007, 28, 733–743. [Google Scholar]
- ElHaddad, S.A.-E.; Robaian, A.; Alturki, M.W.; Alharthi, R.; Aldusaymani, A.M.; Alarjani, Y.A.; Almutairi, A.; Elsayed, H.M. Periodontal and restorative outcomes of cervical marginal relocation: A systematic review and meta-analysis. Quintessence Int. 2026. ahead of print. [Google Scholar] [CrossRef] [Scilit]
- Adson, O.; Sarikaya, T.Y.; Bolay, S. Clinical evaluation of deep margin elevation in CAD/CAM indirect restorations: A 24-month follow-up study. J. Dent. 2026, 167, 106522. [Google Scholar] [CrossRef] [Scilit]
- Roshdy, B.N.; Eltoukhy, R.I.; Ali, A.I.; Mahmoud, S.H. Effect of deep margin elevation with different injectable materials on performance of CAD/CAM-Fabricated nanoceramic-resin onlays: 3-year randomized clinical trial. Clin. Oral Investig. 2026, 30, 41. [Google Scholar] [CrossRef] [Scilit]
- Bresser, R.A.; Naves, L.Z.; van der Made, S.A.M.; Cune, M.S.; Gresnigt, M.M.M. Deep margin elevation. A case report study. Int. J. Esthet. Dent. 2023, 18, 142–160. [Google Scholar]
- Geo, T.D.; Gupta, S.; Gupta, S.G.; Rana, K.s. Is Deep margin elevation a reliable tool for cervical margin relocation?—A comparative review. J. Oral Biol. Craniofacial Res. 2024, 14, 33–38. [Google Scholar] [CrossRef] [Scilit] [PubMed]
- Karageorgiou, A.; Fostiropoulou, M.; Antoniadou, M.; Pappa, E. Deep Margin Elevation: Current Evidence and a Critical Approach to Clinical Protocols—A Narrative Review. Adhesives 2025, 1, 10. [Google Scholar] [CrossRef] [Scilit]
- El-Ma’aita, A.M.; Radwan, H.; Al-Rabab’ah, M.A. Deep Margin Elevation—A Retrospective Clinical Study. J. Adhes. Dent. 2024, 26, 117–124. [Google Scholar] [CrossRef] [Scilit]
- Juloski, J.; Köken, S.; Ferrari, M. Cervical margin relocation in indirect adhesive restorations: A literature review. J. Prosthodont. Res. 2018, 62, 273–280. [Google Scholar] [CrossRef] [Scilit] [PubMed]
- Eggmann, F.; Ayub, J.M.; Conejo, J.; Blatz, M.B. Deep margin elevation-Present status and future directions. J. Esthet. Restor. Dent. 2023, 35, 26–47. [Google Scholar] [CrossRef] [Scilit]
- Aldakheel, M.; Aldosary, K.; Alnafissah, S.; Alaamer, R.; Alqahtani, A.; Almuhtab, N. Deep Margin Elevation: Current Concepts and Clinical Considerations: A Review. Medicina 2022, 58, 1482. [Google Scholar] [CrossRef] [Scilit] [PubMed]
- Kielbassa, A.M.; Philipp, F. Restoring proximal cavities of molars using the proximal box elevation technique: Systematic review and report of a case. Quintessence Int. 2015, 46, 751–764. [Google Scholar] [PubMed]
- Samartzi, T.K.; Papalexopoulos, D.; Ntovas, P.; Rahiotis, C.; Blatz, M.B. Deep Margin Elevation: A Literature Review. Dent. J. 2022, 10, 48. [Google Scholar] [CrossRef] [Scilit]
- Mugri, M.H.; Sayed, M.E.; Nedumgottil, B.M.; Bhandi, S.; Raj, A.T.; Testarelli, L.; Khurshid, Z.; Jain, S.; Patil, S. Treatment Prognosis of Restored Teeth with Crown Lengthening vs. Deep Margin Elevation: A Systematic Review. Materials 2021, 14, 6733. [Google Scholar] [CrossRef] [Scilit]
- Bresser, R.A.; Gerdolle, D.; van den Heijkant, I.A.; Sluiter-Pouwels, L.M.A.; Cune, M.S.; Gresnigt, M.M.M. Up to 12 years clinical evaluation of 197 partial indirect restorations with deep margin elevation in the posterior region. J. Dent. 2019, 91, 103227. [Google Scholar] [CrossRef] [Scilit]
- Quirynen, M.; Bollen, C.M. The influence of surface roughness and surface-free energy on supra- and subgingival plaque formation in man. A review of the literature. J. Clin. Periodontol. 1995, 22, 1–14. [Google Scholar] [CrossRef] [Scilit]
- Quirynen, M.; Marechal, M.; Busscher, H.J.; Weerkamp, A.H.; Darius, P.L.; van Steenberghe, D. The influence of surface free energy and surface roughness on early plaque formation. An in vivo study in man. J. Clin. Periodontol. 1990, 17, 138–144. [Google Scholar] [CrossRef]
- Jaramillo-Cartagena, R.; López-Galeano, E.J.; Latorre-Correa, F.; Agudelo-Suárez, A.A. Effect of Polishing Systems on the Surface Roughness of Nano-Hybrid and Nano-Filling Composite Resins: A Systematic Review. Dent. J. 2021, 9, 95. [Google Scholar] [CrossRef] [Scilit]
- van Dijken, J.W.; Sjöström, S. The effect of glass ionomer cement and composite resin fillings on marginal gingiva. J. Clin. Periodontol. 1991, 18, 200–203. [Google Scholar] [CrossRef] [Scilit]
- Arisu, H.D.; Üçtaşli, M.B.; Ömürlü, H.; Eligüzeloğlu, E.; Özcan, S.; Ergun, G. The Effect of Different Finishing and Polishing Systems on the Surface Roughness of Different Composite Restorative Materials. J. Contemp. Dent. Pract. 2007, 8, 89–96. [Google Scholar] [CrossRef] [Scilit]
- Lang, N.P.; Kiel, R.A.; Anderhalden, K. Clinical and microbiological effects of subgingival restorations with overhanging or clinically perfect margins. J. Clin. Periodontol. 1983, 10, 563–578. [Google Scholar] [CrossRef] [Scilit] [PubMed]
- Yotnuengnit, B.; Yotnuengnit, P.; Laohapand, P.; Athipanyakom, S. Emergence angles in natural anterior teeth: Influence on periodontal status. Quintessence Int. 2008, 39, e126–e133. [Google Scholar]
- Halperin-Sternfeld, M.; Saminsky, M.; Machtei, E.E.; Horwitz, J. The association between dental proximal restorations and periodontal disease: A retrospective 10-18 years longitudinal study. Quintessence Int. 2016, 47, 249–259. [Google Scholar] [PubMed]
- Frankenberger, R.; Tay, F.R. Self-etch vs. etch-and-rinse adhesives: Effect of thermo-mechanical fatigue loading on marginal quality of bonded resin composite restorations. Dent. Mater. 2005, 21, 397–412. [Google Scholar] [CrossRef] [Scilit]
- ARSLAN, S.; ERTAS, H.; ZORBA, Y.O. Influence of Ankaferd Blood Stopper on shear bond strength of bonding systems. Dent. Mater. J. 2012, 31, 226–231. [Google Scholar] [CrossRef] [Scilit] [PubMed]
- Ajami, A.A.; Kahnamoii, M.A.; Kimyai, S.; Oskoee, S.S.; Pournaghi-Azar, F.; Bahari, M.; Firouzmandi, M. Effect of three different contamination removal methods on bond strength of a self-etching adhesive to dentin contaminated with an aluminum chloride hemostatic agent. J. Contemp. Dent. Pract. 2013, 14, 26–33. [Google Scholar]
- Sung, E.C.; Tai, E.T.; Chen, T.; Caputo, A.A. Effect of irrigation solutions on dentin bonding agents and restorative shear bond strength. J. Prosthet. Dent. 2002, 87, 628–632. [Google Scholar] [CrossRef] [Scilit] [PubMed]
- Kuphasuk, W.; Harnirattisai, C.; Senawongse, P.; Tagami, J. Bond strengths of two adhesive systems to dentin contaminated with a hemostatic agent. Oper. Dent. 2007, 32, 399–405. [Google Scholar] [CrossRef] [Scilit]
- Kimmes, N.S.; Olson, T.L.; Shaddy, R.S.; Latta, M.A. Effect of ViscoStat and ViscoStat Plus on composite shear bond strength in the presence and absence of blood. J. Adhes. Dent. 2006, 8, 363–366. [Google Scholar]
- Frankenberger, R.; Kramer, N.; Petschelt, A. Technique sensitivity of dentin bonding: Effect of application mistakes on bond strength and marginal adaptation. Oper. Dent. 2000, 25, 324–330. [Google Scholar]
- Dragoo, M.R. Resin-Ionomer and Hybrid-Ionomer Cements: Part II. Human Clinical and Histologic Wound Healing Responses in Specific Periodontal Lesions. Int. J. Periodontics Restor. Dent. 1997, 17, 75–87. [Google Scholar]
- Dragoo, M.R. Resin-ionomer and hybrid-ionomer cements: Part I. Comparison of three materials for the treatment of subgingival root lesions. Int. J. Periodontics Restor. Dent. 1996, 16, 594–601. [Google Scholar]
- Eichelsbacher, F.; Denner, W.; Klaiber, B.; Schlagenhauf, U. Periodontal status of teeth with crown-root fractures: Results two years after adhesive fragment reattachment. J. Clin. Periodontol. 2009, 36, 905–911. [Google Scholar] [CrossRef] [Scilit]
- Martins, T.M.; Bosco, A.F.; Nóbrega, F.J.O.; Nagata, M.J.H.; Garcia, V.G.; Fucini, S.E. Periodontal tissue response to coverage of root cavities restored with resin materials: A histomorphometric study in dogs. J. Periodontol. 2007, 78, 1075–1082. [Google Scholar] [CrossRef] [Scilit]
- Oppermann, R.V.; Gomes, S.C.; Cavagni, J.; Cayana, E.G.; Conceição, E.N. Response to Proximal Restorations Placed Either Subgingivally or Following Crown Lengthening in Patients with No History of Periodontal Disease. Int. J. Periodontics Restor. Dent. 2016, 36, 117–124. [Google Scholar] [CrossRef] [Scilit]
- Bertoldi, C.; Monari, E.; Cortellini, P.; Generali, L.; Lucchi, A.; Spinato, S.; Zaffe, D. Clinical and histological reaction of periodontal tissues to subgingival resin composite restorations. Clin. Oral Investig. 2020, 24, 1001–1011. [Google Scholar] [CrossRef] [Scilit]
- Parma-Benfenali, S.; Fugazzoto, P.A.; Ruben, M.P. The effect of restorative margins on the postsurgical development and nature of the periodontium. Part I. Int. J. Periodontics Restor. Dent. 1985, 5, 64–75. [Google Scholar]
- Schmidt, J.C.; Sahrmann, P.; Weiger, R.; Schmidlin, P.R.; Walter, C. Biologic width dimensions—A systematic review. J. Clin. Periodontol. 2013, 40, 493–504. [Google Scholar] [CrossRef] [Scilit]
- El-Maksoud, O.A.; Hamama, H.; Wafaie, R.A.; El-Wassefy, N.; Mahmoud, S.H. Impact of refrigeration of different Resin composite restorative materials on the marginal adaptation in class II restorations. BMC Oral Health 2024, 24, 1174. [Google Scholar] [CrossRef] [Scilit] [PubMed]






| Outcome | Description | Score |
|---|---|---|
| Roughness | Visually smooth surface | 1 |
| Visually rough surface, grooves | 2 | |
| Marginal seal | 3 transition surfaces without gap | 1 |
| 2 transition surfaces without gap | 2 | |
| 1 transition surfaces without gap | 3 | |
| 0 transition surfaces without gap | 4 | |
| Bubbles/air inclusions | No bubbles/air inclusions | 1 |
| Bubbles/air inclusions | 2 | |
| Overhangs | No overhangs | 1 |
| Overhangs | 2 | |
| Bonding-surplus | No excess bonding | 1 |
| Excess bonding | 2 |
Disclaimer/Publisher’s Note: The statements, opinions and data contained in all publications are solely those of the individual author(s) and contributor(s) and not of MDPI and/or the editor(s). MDPI and/or the editor(s) disclaim responsibility for any injury to people or property resulting from any ideas, methods, instructions or products referred to in the content. |
© 2026 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license.
Share and Cite
Cores Ziskoven, P.; Vogel, D.; Schumann, S.; Kiramira, D.; Nguyen, T.; Geyer, A.M.; Weusmann, J.; Deschner, J. The Perio-Resto Interface: In Vitro Comparison of Two Deep Margin Elevation Techniques on Surface Roughness, Marginal Adaptation and Material Integrity. Dent. J. 2026, 14, 161. https://doi.org/10.3390/dj14030161
Cores Ziskoven P, Vogel D, Schumann S, Kiramira D, Nguyen T, Geyer AM, Weusmann J, Deschner J. The Perio-Resto Interface: In Vitro Comparison of Two Deep Margin Elevation Techniques on Surface Roughness, Marginal Adaptation and Material Integrity. Dentistry Journal. 2026; 14(3):161. https://doi.org/10.3390/dj14030161
Chicago/Turabian StyleCores Ziskoven, Pablo, Dorothea Vogel, Sven Schumann, David Kiramira, Thanya Nguyen, Andreas M. Geyer, Jens Weusmann, and James Deschner. 2026. "The Perio-Resto Interface: In Vitro Comparison of Two Deep Margin Elevation Techniques on Surface Roughness, Marginal Adaptation and Material Integrity" Dentistry Journal 14, no. 3: 161. https://doi.org/10.3390/dj14030161
APA StyleCores Ziskoven, P., Vogel, D., Schumann, S., Kiramira, D., Nguyen, T., Geyer, A. M., Weusmann, J., & Deschner, J. (2026). The Perio-Resto Interface: In Vitro Comparison of Two Deep Margin Elevation Techniques on Surface Roughness, Marginal Adaptation and Material Integrity. Dentistry Journal, 14(3), 161. https://doi.org/10.3390/dj14030161

