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J Dent Res Dent Clin Dent Prospects. 2018;12(3): 196-200. doi: 10.15171/joddd.2018.030
PMID: 30443305        PMCID: PMC6231149

Original Article

Effect of different periodontal ligament simulating materials on the incidence of dentinal cracks during root canal preparation

Ajita Rathi 1 * , Prateeksha Chowdhry 1, Mamta Kaushik 1, Pallavi Reddy 1, Roshni Roshni 1, Neha Mehra 1

Cited by CrossRef: 13


1- Alzahrani S, Hajjaj M, Yeslam H, Marghalani T. Fracture Resistance Evaluation and Failure Modes Rating Agreement for Two Endocrown Designs: An In Vitro Study. Applied Sciences. 2023;13(5):3001 [Crossref]
2- Turky M, Mortada Abd Elfatah Y, Hamdy S. Does selective root canal retreatment preserve the tooth’s fracture resistance? An ex-vivo study. BMC Oral Health. 2024;24(1) [Crossref]
3- Demirel M, Mohammadi R. The Effect of Different Ferrule Configurations and Preparation Designs on the Fatigue Performance of Endodontically Treated Maxillary Central Incisors: A 3D Finite Element Analysis. Applied Sciences. 2024;14(4):1355 [Crossref]
4- Alqarni H, Alfaifi M, Altoman M, AlHelal A, Magdy Ahmed W, Ahmed Azhari A, Kattadiyil M. A novel digital workflow for fabricating artificial periodontal ligament using three-dimensional printing flexible resin: A dental technique. The Saudi Dental Journal. 2024;36(1):123 [Crossref]
5- Truong V, Yi Y, Kim R, Park Y. Food impaction on three‐dimensional printed models with periodontal ligament simulation. Oral Diseases. 2024;30(8):5326 [Crossref]
6- Nezir M, Ozcan S. In-vitro evaluation of fracture resistance of teeth restored with different high-viscosity glass ionomer restorative materials and bulk-fill composite resins. Clin Oral Invest. 2024;28(6) [Crossref]
7- Sharma N, Rani P, Sharma P, Singh I, Sinha D, Mehra D. Resistance to Fracture of Endodontically-treated Teeth with Simulated Cervical Resorption Cavities Restored with Different Restorative Materials: An In Vitro Study. 2023;14(10):844 [Crossref]
8- Tangsripongkul P, Jearanaiphaisarn T. Resin Composite Core and Fiber Post Improved the Fracture Parameters of Endodontically Treated Maxillary Premolars with Wedge-shaped Cervical Lesions. Journal of Endodontics. 2020;46(11):1733 [Crossref]
9- Kharouf N, Pedullà E, Plotino G, Jmal H, Alloui M, Simonis P, Laquerriere P, Macaluso V, Abdellatif D, Richert R, Haikel Y, Mancino D. Stronger than Ever: Multifilament Fiberglass Posts Boost Maxillary Premolar Fracture Resistance. JCM. 2023;12(8):2975 [Crossref]
10- Selvakumar R, Surendran S, Sundar S, Arul B, Natanasabapathy V. Impact of Contracted Endodontic Access Cavities on the Fracture Resistance of Endodontically Treated Teeth After Mechanical Aging by Simulated Chewing Forces. Journal of Endodontics. 2023;49(9):1176 [Crossref]
11- Iosif L, Dimitriu B, Niţoi D, Amza O. Endodontic Dentistry: Analysis of Dentinal Stress and Strain Development during Shaping of Curved Root Canals. Healthcare. 2023;11(22):2918 [Crossref]
12- Taha A, Hafez M. Effect of preparation design on fracture resistance of molars restored with occlusal veneers of different CAD-CAM materials: an in vitro study. BMC Oral Health. 2024;24(1) [Crossref]
13- Pujara S, Jobanputra L, Kumari P, Kalena K, Shah H, Aroori H, Prajapati M, Thakkar J. Comparative Evaluation of Microcrack Formation by K Files Using Mechanical Technique with Help of Reciprocating Contra-Angle Handpiece and Manual Technique: An Invitro Study. International Journal of Innovative Science and Research Technology (IJISRT). 2024;:2568 [Crossref]
14- Ming X, Zhang Z, Xie W, Zhang Y, Li Y, Zhang W. Internal adaptation and mechanical properties of CAD/CAM glass fiber post-cores in molars: An in vitro study. Journal of Dentistry. 2023;138:104685 [Crossref]