The effect of different ferrule heights and crown-to-root ratios on fracture resistance of endodontically-treated mandibular premolars restored with different post-and-core systems: an in vitro study

Author:

Meng Qingfei1,Chen Yuxin2,Ni Ke2,Li Yingmei3,Li Xinran2,Meng Jian1,Chen Lijuan4,Mei May Lei5

Affiliation:

1. Department of Stomatology, Xuzhou Central Hospital

2. Department of Stomatology, Xuzhou Clinical School of Xuzhou Medical University

3. College of Stomatology, Bengbu Medical College

4. Department of Stomatology, Xuzhou first People's Hospital

5. Faculty of Dentistry, University of Otago

Abstract

Abstract Background To investigate the effects of different ferrule heights and crown-to-root ratios on the fracture resistance of endodontically-treated premolars restored with two post-and-core systems. Methods Eighty extracted human mandibular first premolars with single root canal were treated endodontically and cut from 2.0 mm above the buccal cemento-enamel junction, to create horizontal residual roots. The roots were randomly divided into two groups. The roots in group FP were restored with a fiber post-and-core system, while the roots in group MP were restored with a cast metal post-and-core system. Each group was divided into five subgroups with different ferrule heights (0: no ferrule; 1: 1.0mm ferrule; 2: 2.0mm ferrule; 3: 3.0mm ferrule; 4: 4.0mm ferrule). All specimens were subsequently restored with metal crowns and embedded in acrylic resin blocks. The crown-to-root ratios of the specimens were controlled at approximately 0.6, 0.8, 0.9, 1.1, and 1.3 of the five subgroups, respectively. Fracture strengths and fracture modes of the specimens were tested and recorded by a universal mechanical machine. Results Mean fracture strengths (mean ± standard deviation (kN)) of FP/0 to FP/4 and MP/0 to MP/4 were: 0.54 ± 0.09, 1.03 ± 0.11, 1.06 ± 0.17, 0.85 ± 0.11; 0.57 ± 0.10, 0.55 ± 0.09, 0.88 ± 0.13, 1.08 ± 0.17, 1.05 ± 0.18 and 0.49 ± 0.09, respectively. Two-way ANOVA revealed significant effects of different ferrule heights and crown-to-root ratios on the fracture resistance (P < 0.001), but no difference in fracture resistance between two post-and-core systems (P = 0.973). The highest fracture strengths of the specimen were found with the ferrule length of 1.92 mm in group FP and 2.07 mm in group MP, the crown-to-root ratio of which in 0.90 and 0.92 respectively., there is a significant difference in fracture modes among the groups(P < 0.05). Conclusions When a certain height of ferrule is prepared and a cast metal or fiber post-and-core system is restored for the residual root, the clinical crown-to-root ratio of the tooth after restoration should be kept within 0.90 to 0.92, so as to improve the fracture resistance of endodontically-treated mandibular first premolars.

Publisher

Research Square Platform LLC

Reference24 articles.

1. Ding X, Li J, Zhang X, Yan X. Effects of 3 different residual root treatments after post-and-core restoration: An in vitro fracture resistance experiment and finite element analysis. J Prosthet Dent. 2020;124(4):485.e1-485.e10.

2. Aesthetic Surgical Crown Lengthening Procedure;Oliveira PS;Case Rep Dent,2015

3. An in vitro study evaluating the effect of ferrule design on the fracture resistance of endodontically treated mandibular premolars after simulated crown lengthening or forced eruption methods;Meng Q;BMC Oral Health,2018

4. Treatment of Teeth with an Insufficient Clinical Crown. Part 2: Treatment Cost and Time and Patient Outcomes;Cortellini P;Int J Periodontics Restorative Dent,2021

5. In vitro fracture resistance of zirconia, glass-fiber, and cast metal posts with different lengths;Palepwad AB;J Indian Prosthodont Soc,2020

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