Status of surface modification techniques for artificial hip implants

Surface modification techniques have been developed significantly in the last couple of decades for enhanced tribological performance of artificial hip implants. Surface modification techniques improve biological, chemical and mechanical properties of implant surfaces. Some of the most effective tec...

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Main Authors: Subir Ghosh, Sylvester Abanteriba
Format: Article
Language:English
Published: Taylor & Francis Group 2016-01-01
Series:Science and Technology of Advanced Materials
Subjects:
Online Access:http://dx.doi.org/10.1080/14686996.2016.1240575
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spelling doaj-3651fc0824a44026a65048e02a9e08f02021-07-06T11:30:14ZengTaylor & Francis GroupScience and Technology of Advanced Materials1468-69961878-55142016-01-0117171573510.1080/14686996.2016.12405751240575Status of surface modification techniques for artificial hip implantsSubir Ghosh0Sylvester Abanteriba1School of Engineering, RMIT UniversitySchool of Engineering, RMIT UniversitySurface modification techniques have been developed significantly in the last couple of decades for enhanced tribological performance of artificial hip implants. Surface modification techniques improve biological, chemical and mechanical properties of implant surfaces. Some of the most effective techniques, namely surface texturing, surface coating, and surface grafting, are applied to reduce the friction and wear of artificial implants. This article reviews the status of the developments of surface modification techniques and their effects on commonly used artificial joint implants. This study focused only on artificial hip joint prostheses research of the last 10 years. A total of 27 articles were critically reviewed and categorized according to surface modification technique. The literature reveals that modified surfaces exhibit reduced friction and enhanced wear resistance of the contact surfaces. However, the wear rates are still noticeable in case of surface texturing and surface coating. The associated vortex flow aids to release entrapped wear debris and thus increase the wear particles generation in case of textured surfaces. The earlier delamination of coating materials due to poor adhesion and graphitization transformation has limited the use of coating techniques. Moreover, the produced wear debris has adverse effects on biological fluid. Conversely, the surface grafting technique provides phospholipid like layer that exhibited lower friction and almost zero wear rates even after a longer period of friction and wear test. The findings suggest that further investigations are required to identify the role of surface grafting on film formation and heat resistance ability under physiological hip joint conditions for improved performance and longevity of hip implants.http://dx.doi.org/10.1080/14686996.2016.1240575surface modificationtexturingcoatinggraftinghip joint
collection DOAJ
language English
format Article
sources DOAJ
author Subir Ghosh
Sylvester Abanteriba
spellingShingle Subir Ghosh
Sylvester Abanteriba
Status of surface modification techniques for artificial hip implants
Science and Technology of Advanced Materials
surface modification
texturing
coating
grafting
hip joint
author_facet Subir Ghosh
Sylvester Abanteriba
author_sort Subir Ghosh
title Status of surface modification techniques for artificial hip implants
title_short Status of surface modification techniques for artificial hip implants
title_full Status of surface modification techniques for artificial hip implants
title_fullStr Status of surface modification techniques for artificial hip implants
title_full_unstemmed Status of surface modification techniques for artificial hip implants
title_sort status of surface modification techniques for artificial hip implants
publisher Taylor & Francis Group
series Science and Technology of Advanced Materials
issn 1468-6996
1878-5514
publishDate 2016-01-01
description Surface modification techniques have been developed significantly in the last couple of decades for enhanced tribological performance of artificial hip implants. Surface modification techniques improve biological, chemical and mechanical properties of implant surfaces. Some of the most effective techniques, namely surface texturing, surface coating, and surface grafting, are applied to reduce the friction and wear of artificial implants. This article reviews the status of the developments of surface modification techniques and their effects on commonly used artificial joint implants. This study focused only on artificial hip joint prostheses research of the last 10 years. A total of 27 articles were critically reviewed and categorized according to surface modification technique. The literature reveals that modified surfaces exhibit reduced friction and enhanced wear resistance of the contact surfaces. However, the wear rates are still noticeable in case of surface texturing and surface coating. The associated vortex flow aids to release entrapped wear debris and thus increase the wear particles generation in case of textured surfaces. The earlier delamination of coating materials due to poor adhesion and graphitization transformation has limited the use of coating techniques. Moreover, the produced wear debris has adverse effects on biological fluid. Conversely, the surface grafting technique provides phospholipid like layer that exhibited lower friction and almost zero wear rates even after a longer period of friction and wear test. The findings suggest that further investigations are required to identify the role of surface grafting on film formation and heat resistance ability under physiological hip joint conditions for improved performance and longevity of hip implants.
topic surface modification
texturing
coating
grafting
hip joint
url http://dx.doi.org/10.1080/14686996.2016.1240575
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