Properties and clinical application of zirconia bioceramics in medicine.

Č. Oblak, P. Jevnikar, T. Kosmač
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引用次数: 1

Abstract

Background : A group of inorganic non-metal biomaterials, that are commonly used in clinical medicine to replace or repair tissues, can be classified as a bioceramics. This group includes bioactive glasses, glass-ceramics, hydroxy-apatite and some other calcium phosphates. In addition, some bio-inert engineering ceramics materials have become increasingly utilised, aluminum oxide, zirconium oxide and their composites being the most popular. With the developement of yttria stabilized tetragonal zirconium oxide ceramics (Y-TZP) medical community received a high strength biomaterial that is currently a material of choice for the manufacturing of medical devices. Y-TZP ceramics is becoming also increasingly used in dental medicine, where frameworks are manufactured by the use of computer-assisted technology. Conclusions : The article describes the basic properties of zirconia oxide ceramics important for the use in clinical medicine; high strength and fracture toughness, biocompatibility and negligible radiation. The ageing issue of this particular material, which is attributable to the thermo-dynamical instability of tetragonal zirconium oxide in hydrothermal conditions, is also discussed. When exposed to an aqueous environment over long periods of time, the surface of the Y-TZP ceramic will start transforming spontaneously into the monoclinic structure. The mechanism leading to the t-m transformation is temperature-dependent and is accompanied by extensive micro-cracking, which ultimately leads to strength degradation. The degradation might influence the clinical success rate of medical devices and therefore Y-TZP femoral heads are no longer made of pure zirconium oxide. Composites of zirconium and aluminium oxides are used instead, that are currently the strongest ceramic materials used in clinical medicine. In this work the clinical application of zirconia oxide ceramics in dental medicine is also presented. Conventional porcelain fused to metal technique is successfully replaced with Y-TZP ceramics in some clinical situations that are described in detail. It is important that computer design of the zirconia frameworks shortens and simplifies laboratory procedures and contributes to a precise final product.
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氧化锆生物陶瓷的性能及其在医学上的临床应用。
背景:生物陶瓷是一类无机非金属生物材料,在临床医学中常用来替代或修复组织。这一类包括生物活性玻璃、玻璃陶瓷、羟基磷灰石和其他一些磷酸钙。此外,一些生物惰性工程陶瓷材料也得到了越来越多的应用,氧化铝、氧化锆及其复合材料是最受欢迎的。随着钇稳定的四方氧化锆陶瓷(Y-TZP)的发展,医学界获得了一种高强度的生物材料,目前是制造医疗器械的首选材料。Y-TZP陶瓷也越来越多地用于牙科医学,其中框架是通过使用计算机辅助技术制造的。结论:本文阐述了氧化锆陶瓷的基本性质,对临床医学应用具有重要意义;高强度和断裂韧性,生物相容性好,辐射可忽略不计。本文还讨论了这种特殊材料的老化问题,这是由于四方氧化锆在水热条件下的热力学不稳定性造成的。当长时间暴露在水环境中时,Y-TZP陶瓷的表面将开始自发地转变为单斜结构。导致t-m转变的机制与温度有关,并伴随着广泛的微裂纹,最终导致强度下降。这种降解可能会影响医疗器械的临床成功率,因此Y-TZP股骨头不再由纯氧化锆制成。取而代之的是氧化锆和氧化铝的复合材料,这是目前临床医学中使用的最坚固的陶瓷材料。本文还介绍了氧化锆陶瓷在口腔医学中的临床应用。在一些临床情况下,Y-TZP陶瓷成功地取代了传统的金属烤瓷技术。重要的是,计算机设计的氧化锆框架缩短和简化了实验室程序,并有助于一个精确的最终产品。
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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CiteScore
0.30
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0.00%
发文量
65
审稿时长
4-8 weeks
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