Compressive Stress in Teeth Restored with Endocrown and Build-up: A Finite Element Analysis.

Katherinne A Bardales-Espinoza, Anderson R Mora-Ipince, Martín A Chávez-Méndez, Claudio Peña-Soto, Javier Flores-Fraile, Myriam A De la Garza-Ramos, Guillermo Cano-Verdugo
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Abstract

Aim: This study evaluates compressive stress in teeth restored with endocrown (ECW) and build-up (BUP) using finite element analysis (FEA). Understanding stress distribution in dental restorations is crucial for improving treatment outcomes and longevity.

Materials and methods: A second lower molar was modeled using Solidworks® (Version 2017). The ECW was simulated with nanoceramic resin, while the BUP included a core and nanoceramic crown. Mechanical properties, including modulus of elasticity, Poisson's ratio, and tensile strength were assigned to materials. Axial and oblique loads of 900N were applied, and stress was analyzed using Solidworks®.

Results: Results indicated that under axial loading, ECW experienced a maximum stress of 91.9 MPa, significantly higher than BUP's 49 MPa. Under oblique loading, ECW exhibited 132 MPa compared with 116 MPa in BUP. The highest stress concentration was in the cervical area, where ECW showed greater stresses in both the substrate and restored area. Build-up demonstrated better stress distribution and lower fracture risk.

Conclusion: Endocrown restoration results in higher compressive stresses, especially in the cervical region, which may increase the risk of fracture. Conversely, the BUP technique, which preserves cervical dentin, offers improved stress distribution and reduced fracture risk, making it a more robust solution for endodontic rehabilitation.

Clinical significance: This study underscores the importance of selecting appropriate restoration methods to minimize stress and enhance the longevity of dental treatments, ultimately leading to better patient outcomes. How to cite this article: Bardales-Espinoza KA, Mora-Ipince AR, Chávez-Méndez MA, et al. Compressive Stress in Teeth Restored with Endocrown and Build-up: A Finite Element Analysis. J Contemp Dent Pract 2024;25(11):1027-1033.

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使用内冠和堆积法修复牙齿时的压缩应力:有限元分析。
目的:应用有限元分析(FEA)评价内冠修复(ECW)和内冠修复(BUP)牙体的压应力。了解应力分布在牙齿修复是提高治疗效果和寿命的关键。材料和方法:使用Solidworks®(2017版)对第二个下臼齿进行建模。ECW用纳米陶瓷树脂模拟,BUP包括一个核和纳米陶瓷冠。力学性能,包括弹性模量,泊松比和抗拉强度分配给材料。施加900N的轴向和斜向载荷,使用Solidworks®进行应力分析。结果:结果表明,在轴向加载下,ECW承受的最大应力为91.9 MPa,显著高于BUP的49 MPa。斜荷载作用下,ECW为132 MPa,而BUP为116 MPa。应力浓度最高的是颈椎区域,ECW在基底和恢复区域均表现出较大的应力。构建表明应力分布更好,骨折风险更低。结论:牙冠内修复会导致较高的压应力,特别是在颈椎区域,这可能增加骨折的风险。相反,BUP技术保留了颈椎牙本质,改善了应力分布,降低了骨折风险,使其成为一种更可靠的牙髓康复解决方案。临床意义:本研究强调了选择合适的修复方法的重要性,以减少压力,延长牙科治疗的寿命,最终导致更好的患者预后。如何引用本文:Bardales-Espinoza KA, Mora-Ipince AR, Chávez-Méndez MA等。内冠修复牙体的压缩应力:有限元分析。[J]现代医学学报;2009;25(11):1027-1033。
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来源期刊
Journal of Contemporary Dental Practice
Journal of Contemporary Dental Practice Dentistry-Dentistry (all)
CiteScore
1.80
自引率
0.00%
发文量
174
期刊介绍: The Journal of Contemporary Dental Practice (JCDP), is a peer-reviewed, open access MEDLINE indexed journal. The journal’s full text is available online at http://www.thejcdp.com. The journal allows free access (open access) to its contents. Articles with clinical relevance will be given preference for publication. The Journal publishes original research papers, review articles, rare and novel case reports, and clinical techniques. Manuscripts are invited from all specialties of dentistry i.e., conservative dentistry and endodontics, dentofacial orthopedics and orthodontics, oral medicine and radiology, oral pathology, oral surgery, orodental diseases, pediatric dentistry, implantology, periodontics, clinical aspects of public health dentistry, and prosthodontics.
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