Effect of cup inclination angle during microseparation and rim loading on the wear of BIOLOX registered delta ceramic-on-ceramic total hip replacement

Ceramic-on-ceramic (CoC) bearings in total hip replacements (THRs) have shown low wear volumes under standard gait in hip simulator studies. However, clinical reports have indicated variations in wear rates and formation of stripe-like wear area on the ceramic femoral heads. The aim of this study wa...

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Veröffentlicht in:Journal of biomedical materials research. Part B, Applied biomaterials Applied biomaterials, 2010-11, Vol.95B (2), p.263-268
Hauptverfasser: Al-Hajjar, Mazen, Leslie, Ian J, Tipper, Joanne, Williams, Sophie, Fisher, John, Jennings, Louise M
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container_title Journal of biomedical materials research. Part B, Applied biomaterials
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creator Al-Hajjar, Mazen
Leslie, Ian J
Tipper, Joanne
Williams, Sophie
Fisher, John
Jennings, Louise M
description Ceramic-on-ceramic (CoC) bearings in total hip replacements (THRs) have shown low wear volumes under standard gait in hip simulator studies. However, clinical reports have indicated variations in wear rates and formation of stripe-like wear area on the ceramic femoral heads. The aim of this study was to investigate the influence of cup inclination angle and microseparation on the wear of CoC bearings in THRs. The six station Leeds II Physiological Anatomical Joint Simulator was used to investigate the wear of 28 mm diameter alumina matrix composite ceramic bearings (BIOLOX registered delta). It was shown that increasing the cup inclination angle from 55o to 65o had no significant effect on the wear rate of BIOLOX registered delta CoC under both standard gait and microseparation conditions in this in vitro study. Under standard gait conditions, the mean wear rate for both cup inclination angle conditions was very low at 0.05 mm3/million cycles. The introduction of microseparation to the standard gait cycle increased the mean wear rates to 0.13 mm3/million cycles for the cup inclination angle of 55o and 0.11 mm3/million cycles for that of 65 degree . The level of increased wear with microseparation was not dependent on cup angle. A stripe of wear on the head also formed, with corresponding superior rim wear on the cup. The wear rates obtained were low compared to the HIPed third generation alumina ceramic (BIOLOX registered forte) tested under the same adverse conditions (1.84 mm3/million cycles). BIOLOX registered delta has shown lower wear than previous ceramic materials used in THR under adverse conditions. [copy 2010 Wiley Periodicals, Inc. J Biomed Mater Res Part B: Appl Biomater, 2010.
doi_str_mv 10.1002/jbm.b.31708
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However, clinical reports have indicated variations in wear rates and formation of stripe-like wear area on the ceramic femoral heads. The aim of this study was to investigate the influence of cup inclination angle and microseparation on the wear of CoC bearings in THRs. The six station Leeds II Physiological Anatomical Joint Simulator was used to investigate the wear of 28 mm diameter alumina matrix composite ceramic bearings (BIOLOX registered delta). It was shown that increasing the cup inclination angle from 55o to 65o had no significant effect on the wear rate of BIOLOX registered delta CoC under both standard gait and microseparation conditions in this in vitro study. Under standard gait conditions, the mean wear rate for both cup inclination angle conditions was very low at 0.05 mm3/million cycles. The introduction of microseparation to the standard gait cycle increased the mean wear rates to 0.13 mm3/million cycles for the cup inclination angle of 55o and 0.11 mm3/million cycles for that of 65 degree . The level of increased wear with microseparation was not dependent on cup angle. A stripe of wear on the head also formed, with corresponding superior rim wear on the cup. The wear rates obtained were low compared to the HIPed third generation alumina ceramic (BIOLOX registered forte) tested under the same adverse conditions (1.84 mm3/million cycles). BIOLOX registered delta has shown lower wear than previous ceramic materials used in THR under adverse conditions. [copy 2010 Wiley Periodicals, Inc. J Biomed Mater Res Part B: Appl Biomater, 2010.</description><identifier>ISSN: 1552-4981</identifier><identifier>DOI: 10.1002/jbm.b.31708</identifier><language>eng</language><ispartof>Journal of biomedical materials research. 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title Effect of cup inclination angle during microseparation and rim loading on the wear of BIOLOX registered delta ceramic-on-ceramic total hip replacement
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