[Biomechanics of cement-free endoprostheses]. 1993

W Plitz
Labor für Biomechanik und Experimentelle Orthopädie, LMU, München.

At present only about 20 per cent of endoprosthetic stems and 30 per cent cups are implanted without cement. Nevertheless, the number of modifications and new developments in cementless endoprosthetics is continuously growing. Years ago bone cement was made responsible for all failures, but meanwhile the approach to it got more differentiated. The advantages of cement fixation in case of elderly patients as well as those of cementless implantation for patients where revision operation could be expected were recognized. Whereas sufficient primary stability can be generally achieved without any problem in case of cement implantation, the cementless one needs more intensified planning as well as a different surgical technique. Today not only torsional stability and stiffness of stem and bone implant are discussed more intensively than before but also new anchorage concepts as for example tubular stems or custom made systems. Obviously, the existing screw cups and clamp/clip systems are more in demand than cementless stem systems. The results of different coatings and surface modifications are rather inhomogeneous and there is a need of more basic research in this respect.

UI MeSH Term Description Entries
D007593 Joint Instability Lack of stability of a joint or joint prosthesis. Hypermobility, Joint,Instability, Joint,Laxity, Joint,Hypermobilities, Joint,Instabilities, Joint,Joint Hypermobilities,Joint Hypermobility,Joint Instabilities,Joint Laxities,Joint Laxity,Laxities, Joint
D002484 Cementation The joining of objects by means of a cement (e.g., in fracture fixation, such as in hip arthroplasty for joining of the acetabular component to the femoral component). In dentistry, it is used for the process of attaching parts of a tooth or restorative material to a natural tooth or for the attaching of orthodontic bands to teeth by means of an adhesive. Cementations
D004548 Elasticity Resistance and recovery from distortion of shape.
D006621 Hip Joint The joint that is formed by the articulation of the head of FEMUR and the ACETABULUM of the PELVIS. Acetabulofemoral Joint,Acetabulofemoral Joints,Hip Joints,Joint, Acetabulofemoral,Joint, Hip,Joints, Acetabulofemoral,Joints, Hip
D006622 Hip Prosthesis Replacement for a hip joint. Femoral Head Prosthesis,Femoral Head Prostheses,Hip Prostheses,Prostheses, Femoral Head,Prostheses, Hip,Prosthesis, Femoral Head,Prosthesis, Hip
D006801 Humans Members of the species Homo sapiens. Homo sapiens,Man (Taxonomy),Human,Man, Modern,Modern Man
D000077 Acetabulum The part of the pelvis that comprises the pelvic socket where the head of FEMUR joins to form HIP JOINT (acetabulofemoral joint). Acetabula,Cotyloid Cavity,Acetabulas,Acetabulums,Cavities, Cotyloid,Cavity, Cotyloid,Cotyloid Cavities
D001696 Biomechanical Phenomena The properties, processes, and behavior of biological systems under the action of mechanical forces. Biomechanics,Kinematics,Biomechanic Phenomena,Mechanobiological Phenomena,Biomechanic,Biomechanic Phenomenas,Phenomena, Biomechanic,Phenomena, Biomechanical,Phenomena, Mechanobiological,Phenomenas, Biomechanic
D016062 Porosity Condition of having pores or open spaces. This often refers to bones, bone implants, or bone cements, but can refer to the porous state of any solid substance. Porosities

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