Easwaran Harshini Nivetha, Swaminathan Kavitha, Haridoss Selvakumar, Muthu M S, Jayakumar Priya
Department of Pediatric and Preventive Dentistry, Sri Ramachandra Dental College and Hospital, Sri Ramachandra Institute of Higher Education and Research, Chennai, India.
Centre for Early Childhood Caries Research, Department of Pediatric and Preventive Dentistry, Sri Ramachandra Dental College and Hospital, Sri Ramachandra Institute of Higher Education and Research, Chennai, India.
J Oral Biol Craniofac Res. 2023 Nov-Dec;13(6):663-670. doi: 10.1016/j.jobcr.2023.08.010. Epub 2023 Sep 6.
To investigate the influence of Conventional Straight (CS) line and Modified Straight (MS) line access preparations with various restorative materials on the fracture resistance of primary molars using Finite Element Analysis (FEA).
Three FEA models for each of the primary molars were divided into Group I- Intact tooth model; Group II- Model with CS outline and Group III- Model with MS outline. Based on the restorative material used, Group II and III were further subdivided into subgroup 1- GIC restoration, subgroup 2 - composite resin with GIC base and subgroup 3- Stainless Steel Crown (SSC). Each model was subjected to 5 different force loads directed at the occlusal surface. Maximal von Mises (VM) stresses calculated from stress distribution patterns.
The maximum displacement, in all the models of primary molars were seen in GIC restored models in molars with both CS and MS access whereas the minimal displacement was seen in the SSC restored molars of MS group.
In primary maxillary second molar and mandibular first and second molar with intact marginal ridges, the fracture resistance of tooth with MS outline restored with GIC base followed by Composite resin was comparable with the tooth restored with SSC and CS outline.
Based on the results of this FEA analysis, composite restorations with MS outline would be appropriate for endodontically treated primary molars that have intact margins.
采用有限元分析(FEA)研究常规直线(CS)入路预备和改良直线(MS)入路预备联合不同修复材料对乳磨牙抗折性的影响。
为每颗乳磨牙建立三个有限元分析模型,分为I组——完整牙模型;II组——CS外形模型和III组——MS外形模型。根据所使用的修复材料,II组和III组进一步细分为亚组1——玻璃离子水门汀(GIC)修复,亚组2——复合树脂加GIC基底,亚组3——不锈钢冠(SSC)。每个模型在咬合面施加5种不同的力载荷。根据应力分布模式计算最大von Mises(VM)应力。
在CS和MS入路的乳磨牙GIC修复模型中,所有乳磨牙模型的最大位移均可见,而在MS组的SSC修复乳磨牙中位移最小。
在上颌第二乳磨牙以及下颌第一、第二乳磨牙边缘嵴完整的情况下,采用GIC基底加复合树脂修复的MS外形牙齿的抗折性与采用SSC修复的CS外形牙齿相当。
基于此有限元分析结果,MS外形的复合修复体适用于边缘完整的经牙髓治疗的乳磨牙。