Blatz Markus B, Alvarez Marcela, Sawyer Kimiyo, Brindis Marco
Professor of Restorative Dentistry, Chair, Department of Preventive and Restorative Sciences, School of Dental Medicine, University of Pennsylvania, Philadelphia, Pennsylvania.
Private Practice, San Antonio, Texas.
Compend Contin Educ Dent. 2016 Oct;37(9):611-617; quiz 618.
Zirconia has become one of the most popular materials in dentistry. New high-translucent zirconia ceramics have favorable optical properties and can be applied as monolithic full-contour restorations in various clinical indications for posterior and anterior teeth. However, having reliable cementation protocols is fundamental for clinical success of indirect ceramic dental restorations, including those made from zirconia materials. Resin bonding supports ceramic restorations and is necessary for onlays, laminate veneers, and resinbonded fixed dental prostheses. The APC zirconia-bonding concept is based on decades of research on how to achieve high and long-term durable bond strengths to high-strength ceramics. It includes three practical steps: (A) airparticle abrasion, (P) zirconia primer, and (C) adhesive composite resin. This article discusses the history and development of high-translucent zirconia and explains the necessity for proper cementation. The rationale and science behind a simplified zirconia-bonding concept is explained and illustrated with a clinical case presentation.
氧化锆已成为牙科领域最受欢迎的材料之一。新型高透明度氧化锆陶瓷具有良好的光学性能,可作为整体全冠修复体应用于各种前牙和后牙的临床适应症。然而,拥有可靠的粘结方案是间接陶瓷牙修复体临床成功的基础,包括那些由氧化锆材料制成的修复体。树脂粘结有助于陶瓷修复体,对于嵌体、贴面和树脂粘结固定义齿来说是必要的。APC氧化锆粘结概念基于数十年来关于如何实现与高强度陶瓷的高且长期持久粘结强度的研究。它包括三个实际步骤:(A)空气颗粒打磨、(P)氧化锆底漆和(C)粘结复合树脂。本文讨论了高透明度氧化锆的历史和发展,并解释了正确粘结的必要性。通过一个临床病例展示来解释和说明简化的氧化锆粘结概念背后的原理和科学依据。