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氧化锆陶瓷综述:基本特性与临床应用

An overview of zirconia ceramics: basic properties and clinical applications.

作者信息

Manicone Paolo Francesco, Rossi Iommetti Pierfrancesco, Raffaelli Luca

机构信息

Catholic University of Sacred Heart, Institute of Clinical Dentistry, Largo F.Vito 1, 00168 Rome, Italy.

出版信息

J Dent. 2007 Nov;35(11):819-26. doi: 10.1016/j.jdent.2007.07.008. Epub 2007 Sep 6.

Abstract

Zirconia (ZrO2) is a ceramic material with adequate mechanical properties for manufacturing of medical devices. Zirconia stabilized with Y2O3 has the best properties for these applications. When a stress occurs on a ZrO2 surface, a crystalline modification opposes the propagation of cracks. Compression resistance of ZrO2 is about 2000 MPa. Orthopedic research led to this material being proposed for the manufacture of hip head prostheses. Prior to this, zirconia biocompatibility had been studied in vivo; no adverse responses were reported following the insertion of ZrO2 samples into bone or muscle. In vitro experimentation showed absence of mutations and good viability of cells cultured on this material. Zirconia cores for fixed partial dentures (FPD) on anterior and posterior teeth and on implants are now available. Clinical evaluation of abutments and periodontal tissue must be performed prior to their use. Zirconia opacity is very useful in adverse clinical situations, for example, for masking of dischromic abutment teeth. Radiopacity can aid evaluation during radiographic controls. Zirconia frameworks are realized by using computer-aided design/manufacturing (CAD/CAM) technology. Cementation of Zr-ceramic restorations can be performed with adhesive luting. Mechanical properties of zirconium oxide FPDs have proved superior to those of other metal-free restorations. Clinical evaluations, which have been ongoing for 3 years, indicate a good success rate for zirconia FPDs. Zirconia implant abutments can also be used to improve the aesthetic outcome of implant-supported rehabilitations. Newly proposed zirconia implants seem to have good biological and mechanical properties; further studies are needed to validate their application.

摘要

氧化锆(ZrO₂)是一种具有适用于制造医疗设备的机械性能的陶瓷材料。用Y₂O₃稳定的氧化锆在这些应用中具有最佳性能。当氧化锆表面出现应力时,晶体结构的改变会阻止裂纹的扩展。氧化锆的抗压强度约为2000兆帕。骨科研究促使这种材料被提议用于制造股骨头假体。在此之前,已经在体内研究了氧化锆的生物相容性;将氧化锆样品植入骨骼或肌肉后未报告不良反应。体外实验表明,在这种材料上培养的细胞没有突变且具有良好的活力。现在有用于前后牙及种植体上的固定局部义齿(FPD)的氧化锆核。在使用前必须对基台和牙周组织进行临床评估。氧化锆的不透明度在不良临床情况下非常有用,例如,用于遮盖变色的基牙。不透射线性能有助于在X线检查时进行评估。氧化锆框架是通过使用计算机辅助设计/制造(CAD/CAM)技术实现的。Zr陶瓷修复体的粘结可以使用粘结剂进行。氧化锆固定局部义齿的机械性能已证明优于其他无金属修复体。已经进行了3年的临床评估表明氧化锆固定局部义齿的成功率很高。氧化锆种植体基台也可用于改善种植体支持修复的美学效果。新提出的氧化锆种植体似乎具有良好的生物学和机械性能;需要进一步研究来验证其应用。

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