Di Puccio Francesca, Mattei Lorenza
Francesca Di Puccio, Lorenza Mattei, Department of Civil and Industrial Engineering, University of Pisa, 56126 Pisa, Italy.
World J Orthop. 2015 Jan 18;6(1):77-94. doi: 10.5312/wjo.v6.i1.77.
Hip arthroplasty can be considered one of the major successes of orthopedic surgery, with more than 350000 replacements performed every year in the United States with a constantly increasing rate. The main limitations to the lifespan of these devices are due to tribological aspects, in particular the wear of mating surfaces, which implies a loss of matter and modification of surface geometry. However, wear is a complex phenomenon, also involving lubrication and friction. The present paper deals with the tribological performance of hip implants and is organized in to three main sections. Firstly, the basic elements of tribology are presented, from contact mechanics of ball-in-socket joints to ultra high molecular weight polyethylene wear laws. Some fundamental equations are also reported, with the aim of providing the reader with some simple tools for tribological investigations. In the second section, the focus moves to artificial hip joints, defining materials and geometrical properties and discussing their friction, lubrication and wear characteristics. In particular, the features of different couplings, from metal-on-plastic to metal-on-metal and ceramic-on-ceramic, are discussed as well as the role of the head radius and clearance. How friction, lubrication and wear are interconnected and most of all how they are specific for each loading and kinematic condition is highlighted. Thus, the significant differences in patients and their lifestyles account for the high dispersion of clinical data. Furthermore, such consideration has raised a new discussion on the most suitable in vitro tests for hip implants as simplified gait cycles can be too far from effective implant working conditions. In the third section, the trends of hip implants in the years from 2003 to 2012 provided by the National Joint Registry of England, Wales and Northern Ireland are summarized and commented on in a discussion.
髋关节置换术可被视为整形外科的重大成功案例之一,在美国,每年进行的置换手术超过35万例,且手术率持续上升。这些植入物使用寿命的主要限制因素在于摩擦学方面,尤其是配对表面的磨损,这意味着物质的损失和表面几何形状的改变。然而,磨损是一个复杂的现象,还涉及润滑和摩擦。本文探讨了髋关节植入物的摩擦学性能,并分为三个主要部分。首先,介绍了摩擦学的基本要素,从球窝关节的接触力学到超高分子量聚乙烯的磨损规律。还报告了一些基本方程,旨在为读者提供一些用于摩擦学研究的简单工具。在第二部分中,重点转向人工髋关节,定义材料和几何特性,并讨论其摩擦、润滑和磨损特性。特别讨论了不同配对组合的特点,从金属对塑料到金属对金属以及陶瓷对陶瓷,还讨论了股骨头半径和间隙的作用。强调了摩擦、润滑和磨损是如何相互关联的,最重要的是它们如何因每种载荷和运动条件而异。因此,患者及其生活方式的显著差异导致了临床数据的高度分散。此外,这种考虑引发了关于髋关节植入物最合适的体外测试的新讨论,因为简化的步态周期可能与植入物的实际工作条件相差甚远。在第三部分中,总结并讨论了英格兰、威尔士和北爱尔兰国家关节注册中心提供的2003年至2012年期间髋关节植入物的发展趋势。