Thermo-cured glass ionomer cements in restorative dentistry.

Journal of Istanbul University Faculty of Dentistry Pub Date : 2017-12-02 eCollection Date: 2017-01-01 DOI:10.17096/jiufd.10280
Kristina Gorseta, Domagoj Glavina
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引用次数: 5

Abstract

Numerous positive properties of glass ionomer cements including biocompatibility, bioactivity, releasing of fluoride and good adhesion to hard dental tissue even under wet conditions and easy of handling are reasons for their wide use in paediatric and restorative dentistry. Their biggest drawbacks are the weaker mechanical properties. An important step forward in improving GIC's features is thermo-curing with the dental polymerization unit during setting of the material. Due to their slow setting characteristics the GIC is vulnerable to early exposure to moisture. After thermo curing, cements retain all the benefits of GIC with developed better mechanical properties, improved marginal adaptation, increased microhardness and shear bond strength. Adding external energy through thermocuring or ultrasound during the setting of conventional GIC is crucial to achieve faster and better initial mechanical properties. Further clinical studies are needed to confirm these findings.

Abstract Image

Abstract Image

热固化玻璃离子胶合剂在牙科修复中的应用。
玻璃离聚体水泥的许多积极特性,包括生物相容性,生物活性,释放氟化物,即使在潮湿条件下也能很好地粘附于坚硬的牙齿组织,易于处理,这是它们在儿科和修复牙科中广泛使用的原因。它们最大的缺点是机械性能较弱。提高GIC性能的重要一步是在材料凝固过程中使用牙科聚合装置进行热固化。由于其缓慢的设置特性,GIC很容易过早暴露在潮湿中。热固化后,水泥保留了GIC的所有优点,具有更好的力学性能,改善了边际适应性,提高了显微硬度和剪切强度。在常规GIC的设定过程中,通过热固化或超声加入外部能量对于实现更快更好的初始力学性能至关重要。需要进一步的临床研究来证实这些发现。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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