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用于后牙修复的牙科材料。

Dental materials for posterior restorations.

作者信息

Rykke M

机构信息

Department of Operative Dentistry, University of Oslo, Norway.

出版信息

Endod Dent Traumatol. 1992 Aug;8(4):139-48. doi: 10.1111/j.1600-9657.1992.tb00233.x.

DOI:10.1111/j.1600-9657.1992.tb00233.x
PMID:1291301
Abstract

Assessment of the quality of dental restorations by the Ryge system is described. Generally, the quality of dental restorations is shown to be dependent on the technique sensitivity of the restorative material as well as the skill and experience of the dentist. Concerning biocompatibility, adverse reactions related to amalgam restorations are unlikely or scarce, due to small amounts of released mercury. Resin based restorative materials contain a large number of organic compounds and, as such, the toxic and allergenic potentials are unknown. Gold and ceramics turn out to be the most biotolerable dental materials. Based on studies on longevity, data indicate that the median age of amalgam restorations is 10-12 years, of gold castings 13-14 years and more, and of composite restorations 4 years. Data on longevity of ceramic restorations are sparse. Secondary caries appears to be the most frequent cause for replacement of the different restorations, followed by marginal degradation. Secondary caries account for more failures among the resin based restorations than among amalgam. Reviewing the literature, it appears that amalgam is the best and most economic dental material for routine posterior restorations with reasonable durability. Gold is recommended for complex restorations. Resin based composites may be limited to small restorations where cosmetics is the main aspect, as wear and recurrent caries are main problems. Ceramic restorations comprise aesthetic restorations with excellent biocompatibility, however, data on longevity and marginal adaptation are not encouraging.

摘要

本文描述了采用Ryge系统对牙齿修复体质量进行的评估。一般来说,牙齿修复体的质量取决于修复材料的技术敏感性以及牙医的技术和经验。关于生物相容性,由于汞释放量少,与汞合金修复体相关的不良反应不太可能发生或很少见。树脂基修复材料含有大量有机化合物,因此其毒性和致敏潜力尚不清楚。事实证明,金和陶瓷是生物耐受性最强的牙科材料。基于对使用寿命的研究,数据表明汞合金修复体的中位使用年限为10 - 12年,铸造金修复体为13 - 14年及以上,复合树脂修复体为4年。关于陶瓷修复体使用寿命的数据较少。继发龋似乎是不同修复体更换的最常见原因,其次是边缘降解。继发龋导致树脂基修复体失败的情况比汞合金修复体更多。回顾文献,汞合金似乎是用于常规后牙修复且具有合理耐久性的最佳且最经济的牙科材料。对于复杂修复,推荐使用金。树脂基复合材料可能仅限于以美观为主要考量的小修复体,因为磨损和继发龋是主要问题。陶瓷修复体包括具有优异生物相容性的美学修复体,然而,关于使用寿命和边缘适应性的数据并不乐观。

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Dental materials for posterior restorations.用于后牙修复的牙科材料。
Endod Dent Traumatol. 1992 Aug;8(4):139-48. doi: 10.1111/j.1600-9657.1992.tb00233.x.
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Longevity of restorations in posterior teeth and reasons for failure.后牙修复体的使用寿命及失败原因。
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[Despite all--do we have an appropriate substitute for amalgam?].[尽管如此——我们有合适的汞合金替代品吗?]
Refuat Hapeh Vehashinayim (1993). 2008 Apr;25(2):23-6, 73.
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Clinical longevity of extensive direct composite restorations in amalgam replacement: up to 3.5 years follow-up.银汞合金替代物中大面积直接复合树脂修复体的临床寿命:长达3.5年的随访
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Longevity of posterior tooth dental restorations.后牙牙齿修复体的使用寿命。
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The future of dental amalgam: a review of the literature. Part 7: Possible alternative materials to amalgam for the restoration of posterior teeth.牙科汞合金的未来:文献综述。第7部分:用于后牙修复的汞合金可能的替代材料。
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