Journal of Biomedical Materials Research · 1973 · 389 citations · 2 references
Tissue EngineeringEngineeringBone RepairSurgeryBiomedical EngineeringOsteoporosisOrthopaedic SurgeryCorrosionInitial Mechanical FixationBiomechanicsBone RemodelingMaxillofacial SurgeryMaterials ScienceMechanobiologyPorous Vitallium StaplesMetallurgical InteractionBone DensityMicrostructureDental BiomechanicsFracture HealingPorous MetalPorous VitalliumMedicine
Abstract An attempt has been made to define the conditions with respect to movement under which porous metal will bond to bone. It has already been shown that bone will grow into the pore of porous Vitallium under static conditions and under conditions of micromovement, as when stressed by the pull of a tendon. An experiment is described in which porous Vitallium staples were inserted across an unstable osteotomy site. No bonding occurred indicating that bone ingrowth will not occur in the presence of movement of this order of magnitude. The implication of this observation in the design of porous coated endoprostheses is that some form of initial mechanical fixation is required, and this fixation must remain rigid for four months to allow bone ingrowth.
2
Ceramic-Plastic Material as a Bone Substitute
LYMAN SMITH · Archives of Surgery · 1963 · 165 citations
Engineering, Mechanical Engineering, Raw Materials Science +21
R. P. Welsh, R. M. Pilliar, Ian Macnab · Journal of Bone and Joint Surgery · 1971 · 150 citations
Tissue Engineering, Materials Science, Bonding Capability +11