Development and validation of a canine radius replica for mechanical testing of orthopedic implants

作者:Little Jeffrey P; Horn Timothy J; Marcellin Little Denis J*; Harrysson Ola L A; West Harvey A II
来源:American Journal of Veterinary Research, 2012, 73(1): 27-33.
DOI:10.2460/ajvr.73.1.27

摘要

Objective To design and fabricate fiberglass-reinforced composite (FRC) replicas of a canine radius and compare their mechanical properties with those of radii from dog cadavers. %26lt;br%26gt;Sample Replicas based on 3 FRC formulations with 33%, 50%, or 60% short-length discontinuous fiberglass by weight 17 replicas/group) and 5 radii from large (%26gt; 30-kg) dog cadavers. %26lt;br%26gt;Procedures Bones and FRC replicas underwent nondestructive mechanical testing including 4-point bending, axial loading, and torsion and destructive testing to failure during 4-point bending. Axial, internal and external torsional, and bending stiffnesses were calculated. Axial pullout loads for bone screws placed in the replicas and cadaveric radii were also assessed. %26lt;br%26gt;Results Axial, internal and external torsional, and 4-point bending stiffnesses of FRC replicas increased significantly with increasing fiberglass content. The 4-point bending stiffness of 33% and 50% FRC replicas and axial and internal torsional stiffnesses of 33% FRC replicas were equivalent to the cadaveric bone stiffnesses. Ultimate 4-point bending loads did not differ significantly between FRC replicas and bones. Ultimate screw pullout loads did not differ significantly between 33% or 50% FRC replicas and bones. Mechanical property variability (coefficient of variation) of cadaveric radii was approximately 2 to 19 times that of FRC replicas, depending on loading protocols. %26lt;br%26gt;Conclusions and Clinical Relevance Within the range of properties tested, FRC replicas had mechanical properties equivalent to and mechanical property variability less than those of radii from dog cadavers. Results indicated that FRC replicas may be a useful alternative to cadaveric bones for biomechanical testing of canine bone constructs. (Am J Vet Res 2012;73:27-33)

  • 出版日期2012-1