Influence of material and technique of conversion on interim prosthesis fracture.

IF 3.4 2区 医学 Q1 DENTISTRY, ORAL SURGERY & MEDICINE
John Bender, Jack Piermatti, Daniel Feit, Tanpreet Minhas
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引用次数: 0

Abstract

Purpose: To investigate the ability of the smart denture conversion (SDC) technique to produce a stronger interim full-arch implant restoration.

Materials and methods: Three materials (OnX Tough 3D-printed resin, milled PMMA, and injection molded PMMA) were used to fabricate 180 specimens, 60 specimens per material. Then, an equal number of specimens were assigned a conversion technique: either traditional denture conversion or smart denture conversion. The conversions were performed on a pickup jig containing two multiunit abutment replicas. Acrylic resin was used as the pickup material. After denture conversions were performed, all specimens had uniform dimensions. To evaluate mechanical strength, each specimen underwent a 3-point bend test using an Instron machine with static load testing. Data analysis employed a two-way ANOVA considering material type, method of conversion, and their interaction, with Tukey HSD post hoc tests conducted in STATA 18.0, where significance was set at p < 0.05.

Results: Results from this study are described as method of conversion, material, and the combination of method of conversion and material. The method of conversion was statistically significant for mean fracture strength, resulting in a p-value < 0.037. Choice of material showed statistically significant results for mean fracture strength, with a p-value < 0.000. The combination of method of conversion and material showed a statistically significant result for mean fracture strength with a p-value < 0.000.

Conclusion: Out of 180 specimens, the combination of OnX Tough 3D-printed specimens converted with smart denture conversion yielded the highest mean fracture strength and the highest individual fracture strength value.

转换材料和技术对中间假体骨折的影响。
目的:探讨智能义齿转换(SDC)技术在全牙弓种植体修复中的应用效果。材料和方法:使用三种材料(OnX Tough 3d打印树脂,研磨PMMA和注塑PMMA)制作180个样品,每种材料60个样品。然后,等量的标本被分配一种转换技术:传统义齿转换或智能义齿转换。转换是在一个包含两个多单元基台复制品的皮卡夹具上进行的。采用丙烯酸树脂作为拾取材料。义齿转换后,所有标本尺寸均匀。为了评估机械强度,每个样品都使用Instron机器进行三点弯曲测试并进行静载测试。数据分析采用双向方差分析,考虑材料类型、转换方法及其相互作用,并在STATA 18.0中进行Tukey HSD事后检验,其中显著性设置为p < 0.05。结果:本研究的结果用转换方法、材料、转换方法与材料的结合来描述。转换方法对平均断裂强度有统计学意义,p值< 0.037。材料的选择对平均断裂强度有统计学意义,p值< 0.000。换算方法与材料相结合,平均断裂强度具有统计学意义,p值< 0.000。结论:在180个标本中,OnX Tough 3d打印标本转换与智能义齿转换组合的平均断裂强度和个体断裂强度值最高。
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来源期刊
CiteScore
7.90
自引率
15.00%
发文量
171
审稿时长
6-12 weeks
期刊介绍: The Journal of Prosthodontics promotes the advanced study and practice of prosthodontics, implant, esthetic, and reconstructive dentistry. It is the official journal of the American College of Prosthodontists, the American Dental Association-recognized voice of the Specialty of Prosthodontics. The journal publishes evidence-based original scientific articles presenting information that is relevant and useful to prosthodontists. Additionally, it publishes reports of innovative techniques, new instructional methodologies, and instructive clinical reports with an interdisciplinary flair. The journal is particularly focused on promoting the study and use of cutting-edge technology and positioning prosthodontists as the early-adopters of new technology in the dental community.
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