Effect of stem preheating on the fatigue behaviour of bone cement around hip prostheses.

E Bialoblocka-Juszczyk, M Baleani, L Cristofolini, M Viceconti

Laboratorio di Tecnologia Medica, Istituto Ortopedico Rizzoli, via di Barbiano, 1/10, Bologna, BO, 40136, Italy.

Journal Article: Proceedings of the Institution of Mechanical Engineers Part H Journal of Engineering in Medicine (impact factor: 0.95). 08/2009; 223(5):637-41.

Abstract

Tensile fatigue behaviour of bone cement specimens obtained from cement mantles moulded in vitro, simulating the surgical scenario, was investigated. The effect of stem preheating, before its insertion into the cement dough, on specimen fatigue life was studied. A commercial bone cement was selected for this study. Bone cement mixing was conducted in air, following the manufacturer's instructions, and injected simulating the clinical practice. Two conditions were considered: stem maintained at the surgical room temperature (23 degrees C), and stem preheated to 45 degrees C. Four repetitions of the whole procedure were performed for each condition obtaining a total of 32 specimens. All specimens underwent fatigue testing (stress ratio, 0; maximum tensile stress, 15 MPa) until failure. Both two-parameter and three-parameter Weibull distributions were initially used to analyse the fatigue life data set. However, the two-parameter distribution was chosen for both groups on the basis of the coefficient of determination used to test the goodness of fit. Stem preheating seems to have a negligible effect on fatigue behaviour of the studied bone cement in the low range of fatigue lives (up to 10(4)). However, above this number of cycles, stem preheating seems to reduce the probability of failure. These findings are discussed in the text.

Source: PubMed

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Keywords

23 degrees C
 
32 specimens
 
45 degrees C
 
Bone cement
 
bone cement specimens
 
clinical practice
 
commercial bone cement
 
fatigue life data
 
fatigue lives
 
low range
 
manufacturer's instructions
 
maximum tensile stress
 
specimen fatigue life
 
Stem preheating
 
stress ratio
 
studied bone cement
 
surgical room temperature
 
surgical scenario
 
Tensile fatigue behaviour
 
three-parameter Weibull distributions