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摩擦学与全髋关节置换:机械模拟的当前概念

Tribology and total hip joint replacement: current concepts in mechanical simulation.

作者信息

Affatato S, Spinelli M, Zavalloni M, Mazzega-Fabbro C, Viceconti M

机构信息

Laboratorio di Tecnologia Medica, Istituti Ortopedici Rizzoli, Bologna, Italy.

出版信息

Med Eng Phys. 2008 Dec;30(10):1305-17. doi: 10.1016/j.medengphy.2008.07.006. Epub 2008 Sep 6.

Abstract

Interest in the rheology and effects of interacting surfaces is as ancient as man. This subject can be represented by a recently coined word: tribology. This term is derived from the Greek word "tribos" and means the "science of rubbing". Friction, lubrication, and wear mechanism in the common English language means the precise field of interest of tribology. Wear of total hip prosthesis is a significant clinical problem that involves, nowadays, a too high a number of patients. In order to acquire further knowledge on the tribological phenomena that involve hip prosthesis wear tests are conducted on employed materials to extend lifetime of orthopaedic implants. The most basic type of test device is the material wear machine, however, a more advanced one may more accurately reproduce some of the in vivo conditions. Typically, these apparatus are called simulators, and, while there is no absolute definition of a joint simulator, its description as a mechanical rig used to test a joint replacement, under conditions approximating those occurring in the human body, is acceptable. Simulator tests, moreover, can be used to conduct accelerated protocols that replicate/simulate particularly extreme conditions, thus establishing the limits of performance for the material. Simulators vary in their level of sophistication and the international literature reveals many interpretations of the design of machines used for joint replacement testing. This paper aims to review the current state of the art of the hip joint simulators worldwide. This is specified through a schematic overview by describing, in particular, constructive solutions adopted to reproduce in vivo conditions. An exhaustive commentary on the evolution and actually existing simulation standards is proposed by the authors. The need of a shared protocol among research laboratories all over the world could lead to a consensus conference.

摘要

人类对相互作用表面的流变学及其影响的兴趣与人类历史一样古老。这个主题可以用一个最近创造的词来表示:摩擦学。这个术语源自希腊词“tribos”,意思是“摩擦科学”。普通英语中的摩擦、润滑和磨损机制正是摩擦学所关注的精确领域。全髋关节假体的磨损是一个重大的临床问题,如今涉及的患者数量过多。为了进一步了解涉及髋关节假体磨损的摩擦学现象,人们对所用材料进行磨损测试,以延长骨科植入物的使用寿命。最基本的测试设备是材料磨损试验机,然而,更先进的设备可能会更准确地再现一些体内条件。通常,这些设备被称为模拟器,虽然对于关节模拟器没有绝对的定义,但将其描述为用于在接近人体实际情况的条件下测试关节置换的机械装置是可以接受的。此外,模拟器测试可用于进行加速试验方案,以复制/模拟特别极端的条件,从而确定材料的性能极限。模拟器的复杂程度各不相同,国际文献中对用于关节置换测试的机器设计有许多不同的解释。本文旨在综述全球髋关节模拟器的当前技术水平。这通过示意图概述来具体说明,特别是通过描述为再现体内条件而采用的结构解决方案。作者对其发展历程和实际存在的模拟标准进行了详尽的评论。世界各地的研究实验室需要一个共享的试验方案,这可能会促成一次共识会议。

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