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Proceedings of the Institution of Mechanical Engineers. Part H, Journal of Engineering in Medicine|January 15, 2000
A hip joint simulator study using simplified loading and motion cycles generating physiological wear paths and ratesP S Barbour, M H Stone, J FisherProceedings of the Institution of Mechanical Engineers. Part H, Journal of Engineering in Medicine|February 24, 2001
A hip joint simulator study using new and physiologically scratched femoral heads with ultra-high molecular weight polyethylene acetabular cupsP S Barbour, M H Stone, J FisherBiomaterials|November 11, 1999
A study of the wear resistance of three types of clinically applied UHMWPE for total replacement hip prosthesesP S Barbour, M H Stone, J FisherBio-Medical Materials and Engineering|April 3, 2001
Comparative wear and wear debris under three different counterface conditions of crosslinked and non-crosslinked ultra high molecular weight polyethyleneM M Endo, P S Barbour, D C Barton, et al.Journal of Materials Science. Materials in Medicine|September 7, 2004
The influence of stress conditions on the wear of UHMWPE for total joint replacementsP S Barbour, D C Barton, J FisherProceedings of the Institution of Mechanical Engineers. Part H, Journal of Engineering in Medicine|May 31, 2001
A novel method for the prediction of functional biological activity of polyethylene wear debrisJ Fisher, J Bell, P S Barbour, et al.Bio-Medical Materials and Engineering|October 19, 1999
A comparison of the wear and debris generation of GUR 1120 (compression moulded) and GUR 4150HP (ram extruded) ultra high molecular weight polyethyleneM M Endo, P S Barbour, D C Barton, et al.Hip International : the Journal of Clinical and Experimental Research on Hip Pathology and Therapy|September 14, 2013
Alternative bearing couples in total hip replacements: Solutions for young patientsJ Fisher, E Ingham, M H StoneHip International : the Journal of Clinical and Experimental Research on Hip Pathology and Therapy|September 14, 2013
Wear of historical polyethylenes in hip prostheses. Biomechanical success and a biological failureE Ingham, J Fisher, M H StoneProceedings of the Institution of Mechanical Engineers. Part H, Journal of Engineering in Medicine|April 8, 1998
Prediction of plastic strains in ultra-high molecular weight polyethylene due to microscopic asperity interactions during sliding wearC McNie, D C Barton, M H Stone, et al.Pageof 321