Experimental tests concerning the biomechanical behaviour of pertrochanteric osteosyntheses. 1979

H Martinek, and E Egkher, and B Wielke, and H Spängler

The biomechanical behaviour of pertrochanteric fractures stabilized by means of an angled plate or flexible condylar nails was characterized by mechanical testing. The stability and the types of motion occurring under dynamic load in the vicinity of the fracture and the effect on the implant were examined. The mechanical test results corroborated clinical experiences. In the case of extramedullary anchorage of implants, stability under load is possible only if an intact cortex on the medial side of the fracture guarantees the bearing of compressive load. With flexible condylar nails, however, it is possible to achieve a permanent load capacity up to approximately 100 kp, even if medial support is lacking, by putting the fracture in a valgus position so that the load-bearing arm is shortened. It was also possible to estimate the actual loading on the operated leg within the immediate postoperative phase by means of the "stabilization effect".

UI MeSH Term Description Entries
D001858 Bone Nails Rods of bone, metal, or other material used for fixation of the fragments or ends of fractured bones. Bone Pins,Bone Nail,Bone Pin,Nail, Bone,Nails, Bone,Pin, Bone,Pins, Bone
D001860 Bone Plates Implantable fracture fixation devices attached to bone fragments with screws to bridge the fracture gap and shield the fracture site from stress as bone heals. (UMDNS, 1999) Bone Plate,Plate, Bone,Plates, Bone
D005593 Fracture Fixation, Internal The use of internal devices (metal plates, nails, rods, etc.) to hold the position of a fracture in proper alignment. Osteosynthesis, Fracture,Fixation, Internal Fracture,Fixations, Internal Fracture,Fracture Fixations, Internal,Fracture Osteosyntheses,Fracture Osteosynthesis,Internal Fracture Fixation,Internal Fracture Fixations,Osteosyntheses, Fracture
D005594 Fracture Fixation, Intramedullary The use of nails that are inserted into bone cavities in order to keep fractured bones together. Intramedullary Nailing,Nailing, Intramedullary,Osteosynthesis, Fracture, Intramedullary,Fixation, Intramedullary Fracture,Fixations, Intramedullary Fracture,Fracture Fixations, Intramedullary,Intramedullary Fracture Fixation,Intramedullary Fracture Fixations,Intramedullary Nailings,Nailings, Intramedullary
D006620 Hip Fractures Fractures of the FEMUR HEAD; the FEMUR NECK; (FEMORAL NECK FRACTURES); the trochanters; or the inter- or subtrochanteric region. Excludes fractures of the acetabulum and fractures of the femoral shaft below the subtrochanteric region (FEMORAL FRACTURES). Femoral Trochlear Fractures,Intertrochanteric Fractures,Subtrochanteric Fractures,Trochanteric Fractures,Trochlear Fractures, Femur,Femoral Trochlear Fracture,Femur Trochlear Fracture,Femur Trochlear Fractures,Fracture, Femoral Trochlear,Fracture, Femur Trochlear,Fractures, Femoral Trochlear,Fractures, Femur Trochlear,Fractures, Hip,Fractures, Intertrochanteric,Fractures, Subtrochanteric,Fractures, Trochanteric,Trochlear Fracture, Femoral,Trochlear Fracture, Femur,Trochlear Fractures, Femoral
D006801 Humans Members of the species Homo sapiens. Homo sapiens,Man (Taxonomy),Human,Man, Modern,Modern Man
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

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