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L D Topoleski

Showing results (1-10 of 19) with videos related to

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Journal of Biomedical Materials Research|September 22, 1999
Surface roughness quantification of CoCrMo implant alloysL Que, L D Topoleski
Journal of Biomedical Materials Research|September 14, 2000
A controlled-notch specimen to study fatigue crack initiation in bone cementX Lu, L D Topoleski
Journal of Biomedical Materials Research|March 29, 2000
Third-body wear of cobalt-chromium-molybdenum implant alloys initiated by bone and poly(methyl methacrylate) particlesL Que, L D Topoleski
Critical Reviews in Biomedical Engineering|January 1, 1997
Biomechanics of atherosclerotic plaqueN V Salunke, L D Topoleski
Journal of Biomedical Materials Research|May 1, 1996
Effect of BaSO4 on the fatigue crack propagation rate of PMMA bone cementL N Molino, L D Topoleski
Zeitschrift Fur Kardiologie|April 19, 2000
Mechanical behavior of calcified plaques: a summary of compression and stress-relaxation experimentsL D Topoleski, N V Salunke
Journal of Biomedical Materials Research|January 15, 2000
Surface roughness of retrieved CoCrMo alloy femoral components from PCA artificial total knee jointsL Que, L D Topoleski, N L Parks
Journal of Biomedical Materials Research|March 1, 1995
The effects of centrifugation and titanium fiber reinforcement on fatigue failure mechanisms in poly(methyl methacrylate) bone cementL D Topoleski, P Ducheyne, J M Cuckler
Journal of Biomedical Materials Research|December 1, 1992
The fracture toughness of titanium-fiber-reinforced bone cementL D Topoleski, P Ducheyne, J M Cuckler
Biomaterials|November 27, 1998
Flow intrusion characteristics and fracture properties of titanium-fibre-reinforced bone cementL D Topoleski, P Ducheyne, J M Cuckler
Pageof 2

Showing results (1-10 of 19) with videos related to

Sort By:
Pageof 2
Journal of Biomedical Materials Research|September 22, 1999
Surface roughness quantification of CoCrMo implant alloysL Que, L D Topoleski
Journal of Biomedical Materials Research|September 14, 2000
A controlled-notch specimen to study fatigue crack initiation in bone cementX Lu, L D Topoleski
Journal of Biomedical Materials Research|March 29, 2000
Third-body wear of cobalt-chromium-molybdenum implant alloys initiated by bone and poly(methyl methacrylate) particlesL Que, L D Topoleski
Critical Reviews in Biomedical Engineering|January 1, 1997
Biomechanics of atherosclerotic plaqueN V Salunke, L D Topoleski
Journal of Biomedical Materials Research|May 1, 1996
Effect of BaSO4 on the fatigue crack propagation rate of PMMA bone cementL N Molino, L D Topoleski
Zeitschrift Fur Kardiologie|April 19, 2000
Mechanical behavior of calcified plaques: a summary of compression and stress-relaxation experimentsL D Topoleski, N V Salunke
Journal of Biomedical Materials Research|January 15, 2000
Surface roughness of retrieved CoCrMo alloy femoral components from PCA artificial total knee jointsL Que, L D Topoleski, N L Parks
Journal of Biomedical Materials Research|March 1, 1995
The effects of centrifugation and titanium fiber reinforcement on fatigue failure mechanisms in poly(methyl methacrylate) bone cementL D Topoleski, P Ducheyne, J M Cuckler
Journal of Biomedical Materials Research|December 1, 1992
The fracture toughness of titanium-fiber-reinforced bone cementL D Topoleski, P Ducheyne, J M Cuckler
Biomaterials|November 27, 1998
Flow intrusion characteristics and fracture properties of titanium-fibre-reinforced bone cementL D Topoleski, P Ducheyne, J M Cuckler
Pageof 2