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Unreamed interlocking nail versus external fixator for open type III tibia fractures.

We undertook a prospective study comparing the unreamed interlocking nail to Hoffmann external skeletal fixation (ESF) in the treatment of 36 consecutive patients with open type IIIA and IIIB tibia fractures. The choice of interlocking nail or Hoffmann ESF was randomized, ultimately producing four different patient groups: group 1, type IIIA fractures treated by interlocking nail; group 2, type IIIA fractures treated by ESF; group 3, type IIIB fractures with interlocking nail; and group 4, type IIIB fractures with ESF. The average length of follow-up was 20.5 months. The infection rate was highest in group 3 (3 of 8). The malrotation, malunion, and nonunion rates were highest in group 4 and lowest in group 1. These results suggest the unreamed interlocking nail is a good choice for the treatment of open type IIIA tibia fractures, but not recommended for the treatment of open type IIIB tibia fractures because of the high infection rate.

Adolescent↗

Severe fractures of the distal radius: effect of amount and duration of external fixator distraction on outcome.

Although severe intra-articular fractures of the distal radius are often treated with external fixation/distraction, little attention has been devoted to the amount and duration of fixator distraction required to maximize outcome. To determine these effects, we conducted a retrospective study of 26 patients whose primary treatment was external fixation/distraction. Patients were evaluated by chart review, questionnaire, x-ray films, and physical examination an average of 104 weeks after injury. The carpal height index was used to quantify distraction. Scores for pain, function, wrist motion, and grip strength and the total score were adversely affected in proportion to the increase in carpal height index by distraction. Outcome was adversely affected as the duration of distraction increased. Motion scores were affected most. Overall, patients recovered at least 75% of motion and grip strength, and 85% attained New York Orthopedic Hospital grades of good or excellent. These are the first data to show that there are potential adverse effects from increasing amounts of distraction and prolonged use of the external fixator.

Adult↗

Nonlinear stiffness profiles of external fixators constructed with composite rods.

OBJECTIVE: To determine if composite connecting rods confer nonlinear stiffness characteristics on unilateral and bilateral external skeletal fixators (ESF) in cranial-caudal bending and axial loading. STUDY DESIGN: Mechanical testing performed on models. SAMPLE POPULATION: Six models of 6-pin ESF constructs composed of birch dowels, a commercial ESF system, and composite connecting rods. METHODS: Unilateral and bilateral ESF configurations were assembled using either specially designed composite titanium and silicone (composite group) or solid titanium (solid group) connecting rods. Mechanical testing was performed in axial loading and 4-point cranial-caudal bending. Stiffness was determined at a low and high-load range, and was considered increasing and nonlinear if the stiffness at high loads was greater than at low loads. RESULTS: The stiffness of the solid group was linear in all testing modes and configurations. Bilateral composite fixators had a nonlinear increasing stiffness in axial loading and cranial-caudal bending. Unilateral composite fixators had a nonlinear increasing stiffness in axial loading, but not cranial-caudal bending. Solid connecting rods conferred a higher stiffness in all testing modes and configurations. CONCLUSIONS: Composite connecting rods resulted in nonlinear increasing axial and bending stiffness in bilateral fixators, and in axial load in unilateral fixators. CLINICAL RELEVANCE: Conventional ESF can be constructed so that the stiffness increases as load increases. This provides the surgeon with additional options to control the local mechanical environment of a healing fracture, which may be used to enhance fracture healing.

Animals↗

High-velocity gunshot wounds of the tibial plafond managed with Ilizarov external fixation: a report of 13 cases.

OBJECTIVE: To report the results of using Ilizarov fixation for the treatment of open tibial plafond fractures caused by high-velocity gunshot injuries. DESIGN Retrospective review of consecutive patients. SETTING: Military academic hospital. PATIENTS: Using the AO classification, three type C1, five type C2, and five type C3 open tibial plafond fractures due to high-velocity gunshot injuries were treated with irrigation, débridement, primary closure, and Ilizarov fixation. Eleven of the fractures were type IIIA, and the remaining two were type IIIB according to the Gustilo-Anderson classification. There were also multiple traumas in one case. METHODS: Plafond fractures were treated by Ilizarov technique in all 13 cases. In three of the cases, additional osseous transport to eliminate a skeletal defect was performed. MAIN OUTCOME MEASURES: Results were evaluated according to Bone's clinical grading system. RESULTS: Average follow-up was 38.4 months (range 26 to 50 months). Callus began to form in 21 to 35 days (average 27.9 days). The fractures united in 126 to 154 days (average 137.6 days), and the apparatus was removed from the limb at that time. There were six good, three fair, and four poor results. Minimal skin necrosis around the wound was seen in four cases, wound infection and purulent discharge were seen in two cases, and angular deformity was seen in two cases. Delayed union and reflex sympathetic dystrophy were not seen in any cases. Although tibiotalar narrowing was seen in four cases, no cases required tibiotalar arthrodesis or subsequent bony reconstruction at the time of their most recent follow-up. The average residual ankle range of motion was plantar flexion 18.5 degrees and dorsiflexion 11.5 degrees. CONCLUSIONS: Early aggressive débridement of nonviable tissues, stabilization with an Ilizarov external fixator, and either primary or delayed primary closure followed by early ankle range of motion and weight bearing is an alternative treatment method of these injuries.

Adult↗

External fixation use in the management of massive upper extremity trauma.

Immobilization of fractures associated with instability and comminution by an external skeletal device facilitates wound care, skin coverage, and ultimate reconstructive surgery. External skeletal fixation was applied in 20 patients who sustained complex open injuries of the upper extremity. All injuries were associated with extensive soft tissue and skin defects. Associated neurovascular injuries included 14 nerve injuries and five major vascular injuries. The Hoffman fixation device was used in the majority of cases. Skin coverage was obtained in all patients by an appropriate method of skin grafts, pedicle flaps, and a free myocutaneous flap. Primary bone union was achieved in five of 16 patients. Ten of 16 patients required secondary procedure to obtain union in cases of delayed union or nonunion, and one case remained with a nonunion. Pin tract infection in three patients and osteomyelitis in two patients were effectively treated with antibiotics and appropriate surgery. The initial treatment goals of limb salvage, skin coverage, and bone stabilization without drainage or persistent osteomyelitis can be accomplished by the use of external skeletal fixation devices.

Adolescent↗

The effects of external mechanical stimulation on the healing of diaphyseal osteotomies fixed by flexible external fixation.

OBJECTIVE: The purpose of this study was to investigate the effect of an externally applied mechanical stimulus on fracture healing under flexible fixation. DESIGN: Stimulation of fracture healing under various conditions of interfragmentary movement in an in vivo fracture model on 41 sheep. BACKGROUND: It is generally accepted that small interfragmentary movements (IFMs) yield better bone healing results than larger IFMs (> 1 mm). However, the optimal size of IFM within the 1-mm range remains undetermined. METHODS: Standardized transverse osteotomy of 3 mm gap size in the left ovine tibia was fixed with an unilateral external fixator. The sheep were divided into four IFM groups of 0.0, 0.2, 0.4 and 0.8 mm and stimulated with this amplitude for 1200 cycles per day at 1 Hz. After a healing period of 6 weeks, bone mineral density and biomechanical stability were evaluated to determine the quality of healing. RESULTS: The amount of callus formation increased significantly with increasing IFM (P <0.05). However, highest biomechanical stability of the healed bone and mineral density of the gap tissue was achieved with an IFM of 0.4 mm, although the differences were not significant. CONCLUSIONS: These results suggest that the optimal interfragmentary movement for acceleration of delayed fracture healing is in the range of 0.5 mm. However, the enhancement of the healing of flexibly-fixed fractures by external application of interfragmentary movement is limited. RELEVANCE: In this model the external application of a mechanical stimulus in addition to the stimulation caused by normal loading and the flexibility of the fixation did not enhance the healing process significantly. It appears that the external application of interfragmentary motion is promising perhaps only for patients unable to stimulate their fracture healing by weight-bearing.

Journal Article↗

[A simple supraacetabular external fixation for pelvic ring fractures].

OBJECTIVE: Closed reduction and maintenance of pelvic ring injuries by external stabilization. INDICATIONS: Emergency management of unstable type B and type C pelvic ring fractures. Definitive treatment of type B injuries. Definitive treatment of the anterior pelvic ring in type C injuries with transpubic instability after posterior internal stabilization. Adjunct stabilization of internal fixation. Stabilization of pelvic ring fractures in children. CONTRAINDICATIONS: Poor general condition. Local soft-tissue damage. Local infection. SURGICAL TECHNIQUE: Bilateral percutaneous insertion of Schanz screws into the supraacetabular area of iliac bone. Closed reduction and stabilization of the pelvic ring by compression and application of a connecting rod under image intensification. POSTOPERATIVE MANAGEMENT: Depending on the patient's condition and the degree of pelvic instability, a change to an open procedure may become necessary. Mobilization of the patient with partial weight bearing (one fifth of body weight) on the side of the injured posterior pelvic ring using forearm crutches, irrespective of the degree of stability of the pelvis. RESULTS: Retrospective analysis of 64 supraacetabular external fixator applications to stabilize the anterior pelvic ring in 20 type B and 44 type C injuries. Iatrogenic lesions of the lateral femoral cutaneous nerve: 4.5%; all sensory disturbances completely reversed within 1 year. No pin site infection. In two patients (3%) primary perforation of the Schanz screw into the small pelvis not necessitating any treatment. No secondary displacements of the anterior or posterior pelvic ring in type B injuries nor for type C injuries, sacral fractures associated with fractures of the pubic ramus. One pseudarthrosis of the pubic and ischial rami requiring surgical treatment.

Acetabulum↗

Semirigid external fixation for repair of fractures in young animals.

An alternative method for external coaptation of fractures in young animals utilizes tongue depressors incorporated in a bandage consisting of a thick layer of cotton padding, gauze bandaging, and adhesive tape. This method was used in 13 cases with fractures of the tibia or the radius and ulna, some of which were open. Five cases (four dogs and a cat) had displaced fractures, and eight cases had either nondisplaced or only mildly displaced fractures. Size of the animal was not considered a limiting factor. Bandages were examined periodically. All fractures healed uneventfully, and the splints were removed 21-to-44 days after application. This method of external coaptation proved to be easy to apply and modify during the healing process and was applicable to a wide variety of fractures with good results.

Animals↗

Stability of the upper lumbar spine following progressive disruptions and the application of individual internal and external fixation devices.

UNLABELLED: Five fresh human cadavera were tested to determine range-of-motion measurements at the interspace of the first and second lumbar vertebrae after progressive disruption of the joint followed by internal and external stabilization. The disruption progressed from posterior to anterior, leaving the anterior longitudinal ligament and anterior part of the annulus fibrosus intact. Flexion-extension range of motion was most sensitive to progressive disruptions and was significant following disruption of the facets. The Taylor-Knight brace was effective for limiting lateral motion, fair for limiting flexion-extension, and not effective for rotation. The three-point hyperextension brace was fairly effective for flexion-extension only. The body cast was effective in limiting all motions. Wire loops partially cut through the spinous processes in all cases with extreme flexion. Harrington distraction rods were effective in limiting motion if under proper tension, but they dislodged in three of the five specimens. CLINICAL RELEVANCE: Data from this study show that flexion of the second lumbar vertebra on the first of 20 degrees or a lateral bend of 10 degrees seen on a routine roentgenogram without vertebral fracture indicates that all posterior ligaments and at least part of the annulus fibrosus must be disrupted. Because internal fixation failed on occasion, we strongly urge the use of external fixation and careful mobilization of the patient to prevent flexion and rotation if internal stabilization is used for disruptions of the upper lumbar spine. The body cast was the most effective in limiting motion of the external fixation devices tested.

Aged↗