Residual stresses in glass crowns generated by polymerization and water sorption of resin cements.

IF 1.9 4区 医学 Q2 DENTISTRY, ORAL SURGERY & MEDICINE Dental materials journal Pub Date : 2024-06-01 Epub Date: 2024-05-09 DOI:10.4012/dmj.2023-283
Daichi Aizawa, Masao Hanabusa, Tohru Hayakawa, Takatsugu Yamamoto
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Abstract

This study investigated residual stresses in glass crowns cemented with resin cements. Glass caps were cemented to cylindrical cores using a conventional resin composite cement, a self-adhesive resin cement, or a methyl methacrylate (MMA)-based cement in dual-cure or self-cure mode. The cemented caps were stored in 37°C water for 28 days, and stresses on the cap surface were repeatedly measured. The water sorption, water solubility, and elastic modulus of the cements were also measured. Polymerization of the cements initially generated compressive stresses on the surfaces. Dual-curing or a greater modulus yielded greater initial stress. The stresses gradually decreased over time and lingered on the surfaces at 28 days with all the cements. Greater sorption tended to lead to greater stress reduction; however, the MMA-based cement exhibited less stress reduction despite exhibiting the greatest sorption. The use of a resin composite cement or dual-curing is recommended to reinforce crown restorations.

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树脂水门汀的聚合和吸水作用在玻璃牙冠中产生的残余应力。
本研究调查了用树脂粘结剂粘结的玻璃冠的残余应力。在双固化或自固化模式下,使用传统的树脂复合粘结剂、自粘性树脂粘结剂或甲基丙烯酸甲酯(MMA)基粘结剂将玻璃冠粘结到圆柱形牙核上。将粘接好的帽盖在 37°C 的水中存放 28 天,并反复测量帽盖表面的应力。同时还测量了水泥的吸水性、水溶性和弹性模量。水门汀的聚合最初会在表面产生压应力。双重固化或更大的弹性模量会产生更大的初始应力。随着时间的推移,应力逐渐减小,到 28 天时,所有水泥的表面应力仍然存在。更强的吸附力往往会导致更大的应力减小;然而,基于 MMA 的水门汀尽管吸附力最大,但应力减小却较小。建议使用树脂复合粘结剂或双重固化来加固牙冠修复体。
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来源期刊
Dental materials journal
Dental materials journal 医学-材料科学:生物材料
CiteScore
4.60
自引率
4.00%
发文量
102
审稿时长
3 months
期刊介绍: Dental Materials Journal is a peer review journal published by the Japanese Society for Dental Materials and Devises aiming to introduce the progress of the basic and applied sciences in dental materials and biomaterials. The dental materials-related clinical science and instrumental technologies are also within the scope of this journal. The materials dealt include synthetic polymers, ceramics, metals and tissue-derived biomaterials. Forefront dental materials and biomaterials used in developing filed, such as tissue engineering, bioengineering and artificial intelligence, are positively considered for the review as well. Recent acceptance rate of the submitted manuscript in the journal is around 30%.
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