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External fixation is a surgical treatment wherein Kirschner pins and wires are inserted and affixed into bone and then exit the body to be attached to an external apparatus composed of rings and threaded rods — the Ilizarov apparatus, the Taylor Spatial Frame, and the Octopod External Fixator — which immobilises the damaged limb to facilitate healing. [1]
The Taylor Spatial Frame (TSF) is an external fixator used by podiatric and orthopaedic surgeons to treat complex fractures [1] and bone deformities. The medical device shares a number of components and features of the Ilizarov apparatus .
In medicine, the Ilizarov apparatus is a type of external fixation apparatus used in orthopedic surgery to lengthen or to reshape the damaged bones of an arm or a leg; used as a limb-sparing technique for treating complex fractures and open bone fractures; and used to treat an infected non-union of bones, which cannot be surgically resolved.
They come in different sizes and are used to hold bone fragments together (pin fixation) or to provide an anchor for skeletal traction. The pins are often driven into the bone through the skin (percutaneous pin fixation) using a power or hand drill. They also form part of the Ilizarov apparatus. Kirschner wires used for fixation of a Colles ...
Kirschner wire for fixation of small bones [24] Kuntscher nail for fracture of the shaft of the femur [25] Luque rod: for fixation of the spine [26] Moore's pin for fracture of the neck of the femur; Neer's prosthesis for shoulder replacement [27] Rush nail for diaphyseal fractures of a long bone [28] Smith-Petersen nail for fracture of the ...
A suzuki frame being used in the treatment of an injured ring (fourth) finger. The Suzuki frame is a medical device, used for helping heal broken fingers, especially those with deep, complex intra-articular fractures.
Treatment options for distal radius fractures include nonoperative management, external fixation, and internal fixation. [ 4 ] [ 9 ] Indications for each depend on a variety of factors such as the patient's age, initial fracture displacement, and metaphyseal and articular alignment, with the ultimate goal to maximize strength and function in ...
Ilizarov's residency was carried out in orthopedic surgery, during which he developed an external fixator system in 1951. He discovered that by carefully severing a bone without severing the periosteum around it, one could separate two halves of a bone slightly and fix them in place, and the bone would grow to fill the gap. [5]