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Fractures of the tibia treated by flexible external fixation.

Thirty-four patients with fractures of the tibial diaphyseal shaft were treated by flexible anterior half-frame external fixation. The average time to union in the frame was 12 weeks for a simple closed tibial fracture and 26 weeks for a complex open tibial fracture. Complications included malalignment and loss of initial reduction. Most of the complications could have been avoided if special attention had been paid to technical details of reduction of the fracture and insertion of the pins.

Adult↗

Treatment of bilateral elbow dislocation using external fixation with motion capacity: a report of 2 cases.

Bilateral elbow dislocation is a rare injury and only 11 cases are described in the literature, including 8 patients with isolated ligamentous and 3 patients with an additional osseous injury. We present 2 cases of bilateral posterior elbow dislocations treated with a bilateral hinged elbow fixator with motion capacity to allow for early physiotherapy. Both patients had a high-energy trauma with one who fell off a ladder from a 5 m height and the second from a mountain bike injury during off-road biking. All extremities were neurovascularly intact. In the operating room, severe instability was detected in all 4 elbows: after closed reduction in 3 elbows and open reduction in 1 elbow for a Mason type 4 fracture of the radial head that was internally fixed using fine threaded implants, an elbow fixator with motion capacity was applied in all 4 elbows for a period of 6 weeks. One year after surgery, the active range of motion was 0/10/140 degrees of extension and flexion on the right and 0/0/130 degrees on the left side. The second patient achieved 0/0/125 degrees and 0/10/130, respectively. Pro- and supination was full in both patients. All 4 elbows were stable and there were no radiologic signs of degenerative changes at the 1 year follow-up. Treatment of bilateral elbow dislocation using external fixation with early motion capacity allows for active physiotherapy although maintaining joint stability, thus minimizing complications normally associated with the injury. Using this method resulted in an excellent clinical outcome for both patients.

Adult↗

[Unstable fracture of the distal radius and its treatment: comparison of three techniques: external fixation, intramedullary pinning and AO plates].

This retrospective study compares 94 distal radius fractures. Sixty one women (median age 66) and 33 men (median age 42) were reviewed clinically and radiologically by a surgeon not involved in treatment. Fractures were classified into three AO groups. Standard X-rays were used for radiological evaluation. Fractures of the distal ulna were evaluated separately. Chi-square tests, Wilcoxon, Mann-Whitney and Fisher's tests were used for statistical evaluation. Women presented mainly "A" type fractures. They were treated by intramedullary pinning. Forty two fractures were grafted, using autogenous bone for young patients and bone substitute for the elderly. Twelve scapholunate dissociations were recorded, all but one were detected in women, 50 years of age or more. Four were painfree, two presented climatic pain and six claimed pain during effort; none had snapping. Radio-ulnar laxity was similar with or without styloid fractures. External fixator and autogenous grafts appeared the most efficient technique for maintaining radial length. Ulnar head fractures were related to a significant higher incidence of sympathetic dystrophy with reduced prono-supination, a correlation not previously noted to your knowledge. This suggests that radius and ulnar head fracture should be classified independently. The amount of pain was not related to classification, internal fixation or gender.

Adolescent↗

[External fixation of wood as an example of an adapted technic].

Logistic reasons gave rise to construction, production and application of an external fixation made of the wood of the rubber-tree (ficus elastica) during the treatment of Cambodian war-injured patients at the field hospital of Khao I Dang. Round pieces of wood 1.5 cm respectively 2 cm in diameter, with drill-holes (diameter 3.2 mm) for the "Steinmann"-nails were planed from well-seasoned planks of the Jang-tree. For the treatment of 25 open fractures - the wooden fixation proved to be the best solution.

Developing Countries↗

Femoral fracture treatment in head-injured children: use of external fixation.

Seven cases of femoral fractures in head-injured children with spasticity and/or decerebrate posturing and seizures were treated with external fixation. The fractures healed with good alignment, maintenance of length, and without infection. The technique is recommended both for its simplicity and lack of complications relative to other management approaches.

Child↗

Skin protection during external fixation frame pin insertion: an alternative method.

Local skin necrosis and pin tract infections are common sequelae following the application of external fixation skeletal frames. Drill guides are effective instruments that help to minimize these problems. Standard nasal speculums are readily available in most operating rooms and can also be used to protect skin and soft tissues during pin insertion.

Bone Nails↗

[Measurement of compressive forces at the external fixator by means of a dynamometer to prevent subsequent osteosynthesis after bone fracture (author's transl)].

Bone fractures treated with an external fixator tend to heal more slowly than with an internal fixator, since the tension of the fixator gradually relaxes and this decrease in pressure is not counteracted on any way. A dynamometer makes possible an exact measurement of effective compressive forces and an adjustment of the tension of the fixator. A special feature of the apparatus is an elastic metal ring. The apparatus is mounted on the free ends of both tubes of the fixator for measuring and adjusting the tension. This should be done once a week. Supported fractures are put under an axial compression of 50 kp. In the case of comminuted and defect fractures, an axial compression of 5 kp should be begun after 5 weeks, and this dosage should be increased every week.

Fracture Fixation↗

Somatosensory evoked potential evaluation of acute nerve injury associated with external fixation procedures.

The effects of different mechanisms of acute nerve injury on peripheral nerve function during K wire application and 1 stage limb lengthening were evaluated prospectively in 24 goats using somatosensory evoked potentials. Stable somatosensory evoked potential recordings throughout 3-day experiments were obtained in animals with wires placed at a distance from or directly adjacent to a nerve but without producing any tension or pressure. Complete loss of the peroneal nerve somatosensory evoked potentials occurred if this nerve was perforated by wire, underwent excessive pressure by wire, or had been over-stretched due to acute 10% limb lengthening. Acute distraction resulted only in peroneal nerve dysfunction, while the tibial nerve was relatively unaffected. Although somatosensory evoked potential changes were not specific for the type of injury produced and the time of waveform disappearance varied, significant somatosensory evoked potential changes (> 50% amplitude reduction, > 10% latency delay or both) were seen within the first 15 minutes after injury in 90% of the cases. The somatosensory evoked potential changes did not reverse if the offending wire or distraction was left in place for the full duration of the experiment. Variable nerve conduction recovery was observed in all animals who had the insult removed immediately after the somatosensory evoked potentials disappearance. The greatest improvement occurred after discontinuation of nerve distraction. The worst somatosensory evoked potential waveform recovery was noted in animals with nerve perforation. Intraoperative somatosensory evoked potential monitoring proved to be a reliable and useful technique for earlier detection of acute nerve injury during external fixation procedures.

Animals↗

Circular external fixation in tibial nonunions.

The Ilizarov method based on compression-distraction and subperiostic corticotomy was used in 82 lower extremities. There were 45 tibial nonunions without a significant bone defect and 37 tibial nonunions with a bone defect that required radical removal of the necrotic bone and bone lengthening or bone transport. Bone healing was obtained in 39 of the 45 tibial nonunions without bone defect (mean bone healing, 5.4 months) and in all patients with bone defect (mean bone healing, 15 months for patients treated with bone transport) although secondary surgeries (autografting and tibial nails) were frequent (23 patients). Infection was eradicated in all patients after necrotic bone removal and bone transport. The final mean limb length discrepancy was 0.7 cm for the patients without a bone defect and 2.03 cm for the patients with a bone defect. In the patients in the bone transport group, residual axial deviation and residual limb shortening were common. Circular external fixation is a useful method to solve complex tibial nonunions in patients in whom internal devices and autografting have failed. Patients must be cooperative, and must understand the length of time the frame needs to be worn, and that complications are a probability.

Adult↗

Mechanical evaluation of transosseous wire rope configurations in a large animal external fixator.

By use of wire ropes as the transosseous component, an external skeletal fixator for the repair of long bone fractures in horses and cattle has been designed and tested in axial compression. Theoretical methods were used in the design process to size fixator components; however, our results suggest that conventional methods of analyzing the displacement of the transosseous component may not apply to wire ropes. Large pretensions in the wire ropes are necessary to obtain functional stiffnesses for fracture fixation. Therefore, a method was sought for terminating the ropes so that an appropriate pretension could be introduced into the rope through its interface with the fixator rings. Ropes were terminated by use of 5 methods and were tested in axial tension to failure. These methods included 3 copper sleeve arrangements, welded ends, and drum sockets. The drum sockets (57.6% of rope breaking strength) far exceeded the strengths provided by the copper sleeves (8.5 to 26.6%) and the welded ends (44.3%). Using the drum sockets, 5 rope configurations were assembled to the fixator, using wood blocks to simulate bones with a gap defect. The fixator was loaded in axial compression for each of the rope configurations, and stiffnesses were determined from measured axial displacement and applied load. The 4-ring fixator configuration, with 2 ropes at 60 degrees angular separation/ring, was the stiffest. In a worst case (gap) model, a mean axial compression load of 1,730 N was observed at 2 mm of displacement for a 4-ring fixator configuration.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

No difference in tibial lengthening index by use of Taylor spatial frame or Ilizarov external fixator.

BACKGROUND: Different methods and devices are used to perform lengthening and deformity reconstruction in the tibia. Recently, the Taylor spatial frame (TSF) has been introduced as a computer-assisted and versatile external ring fixator. Lengthening index (LI) and complications are important result parameters, and the aim of this study was to review our first 20 tibial segments operated with the TSF and to compare the results with our experience of using the traditional Ilizarov external fixator (IEF). PATIENTS AND METHODS: We lengthened 20 tibial segments in 20 patients with the TSF. The results were compared with those of 27 tibial segments from 27 patients that were lengthened with the IEF. All segments were operated on with monofocal osteotomies. RESULTS: In the overlapping zone of comparable lengthening distances between 2.4 and 6.0 cm, the LI of 2.4 and 1.8 months/cm was not significantly different between the TSF and IEF groups, respectively (p = 0.17). This non-significant difference was confirmed after adjustment for age. INTERPRETATION: We found no difference between the TSF and IEF frames regarding LI and complication rate. However, rotational, translational, and residual deformity correction is easier to perform with the TSF.

Adolescent↗

High tibial osteotomy with use of the Taylor Spatial Frame external fixator for osteoarthritis of the knee.

BACKGROUND: High tibial osteotomy (HTO) is used to treat medial compartment osteoarthritis of the knee in active patients with varus alignment. In this study we review the clinical and radiographic outcomes associated with the Taylor Spatial Frame (Smith & Nephew), and its use in HTOs, and we include an illustrative case report. METHODS: In 7 patients with medial compartment osteoarthritis of the knee and varus alignment, the Taylor Spatial Frame was applied to the tibia in the operating room and a proximal tibial osteotomy was performed. Patients followed a computer-generated turning schedule until the desired correction was achieved. The frame was removed when the osteotomy site had healed. The lower extremity measure (LEM) was used to assess physical function. Clinical outcome measures relating to the Taylor Spatial Frame included latency, time to correction, time in the frame, number of residual corrections and complications. Radiographic outcomes included preoperative Resnick grades of osteoarthritis, pre- and post-correction limb alignment and tibial slope measurements. RESULTS: Average (and standard deviation) LEM grade at a mean 41 (14) months follow-up after correction was 94% (5%). Average latency was 8 days, time to correction was 15 days, time in the frame was 23 weeks and number of residual corrections was 1.3. Complications were similar to those for external fixators. Radiographic correction goals were met in all patients. CONCLUSION: The Taylor Spatial Frame is a valuable asset when using HTO to treat medial compartment osteoarthritis of the knee.

Bone Malalignment↗

Anatomy of the distal knee joint and pyarthrosis following external fixation.

OBJECTIVE: To determine the limits of the distal synovial reflection of the human knee joint. SPECIMENS: Six paired knees studied by magnetic resonance imaging (MRI), fluoroscopic arthrography, and gross dissection. The right knees of five patients with chronic idiopathic knee effusions were studied by MRI. Cadaveric knees were injected with saline prior to MRI. The joint capsules were dissected to visualize local anatomy and check for capsular tears. In each modality (MRI, fluoroscopy, and dissection), the most distal extent of knee synovial fluid was measured. RESULTS: The right versus left agreement for paired specimens was generally two to three millimeters. Some specimens showed asymmetric capsular reflection. Medial fluid was identified at distances greater than forty-nine millimeters from the subchondral bone in seven knees and less than fifteen millimeters in four knees (range 0 to 70 millimeters, mean thirty-three millimeters). Laterally, the range was ten to thirty-five millimeters (mean twenty-three millimeters). In six of the twelve cadaveric specimens, there was evidence of a communication between the knee joint and the proximal tibiofibularjoint. In the knees of volunteers, joint fluid tracked medially to a range of ten to fifty millimeters and laterally to a range of six to fifteen millimeters, with means of twenty-six and eleven millimeters, respectively. The knees of the volunteers had no evidence of tibiofibular joint communication with the knee. CONCLUSION: Insertion of external fixation pins within sixty to seventy millimeters of the proximal articular surface of the tibia is associated with a high probability of synovial penetration and possibly provides a conduit for the introduction of bacteria, which may be etiologic in iatrogenic pyarthrosis.

Adult↗

Stability of an ankle arthrodesis fixed by cancellous-bone screws compared with that fixed by an external fixator. A biomechanical study.

Twenty-three fresh-frozen human specimens were subjected to ankle arthrodesis and fixation with two cancellous-bone screws. The specimens were then subjected to four newton-meters of manually applied tibial torque, plantar flexion-dorsiflexion moment, and medial-lateral bending moment; relative rotation between the tibia and the talus was recorded for each mode of testing. A Calandruccio triangular compression device was then applied to threaded pins penetrating the tibia and talus, the screws were removed, and the test sequence was repeated. Tibiotalar motions recorded with both systems of fixation were markedly affected by the quality of the bone. When less than 2 degrees of total tibiotalar rotation was recorded in response to four newton-meters of manually applied internal-external tibial torque, all specimens demonstrated less torsional rotation with the screw fixation than with the external fixator. The mean rotations produced by medial-lateral bending moment were equivalent for both systems of fixation. When torsional rotations with the use of screw fixation were greater than 2 degrees, all specimens demonstrated more torsional rotation with the screws than with the external fixator, and all but one specimen had more medial-lateral rotation with the screws than with the fixator. For applied plantar flexion-dorsiflexion moment, twenty-two of the twenty-three specimens demonstrated more rotation with the Calandruccio fixator than with the screws; this was due in part to motion permitted at the hinge points of the frame itself.

Aged↗

External fixation as a bridge to intramedullary nailing for patients with multiple injuries and with femur fractures: damage control orthopedics.

BACKGROUND: The advantages of early fracture fixation in patients with multiple injuries have been challenged recently, particularly in patients with head injury. External fixation (EF) has been used to stabilize pelvic fractures after multiple injury. It potentially offers similar benefits to intramedullary nail (IMN) in long-bone fractures and may obviate some of the risks. We report on the use of EF as a temporary fracture fixation in a group of patients with multiple injuries and with femoral shaft fractures. METHODS: Retrospective review of charts and registry data of patients admitted to our Level 1 trauma center July of 1995 to June of 1998. Forty-three patients initially treated with EF of the femur were compared to 284 patients treated with primary IMN of the femur. RESULTS: Patients treated with EF had more severe injuries with significantly higher Injury Severity Scores (26.8 vs. 16.8) and required significantly more fluid (11.9 vs. 6.2 liters) and blood (1.5 vs. 1.0 liters) in the initial 24 hours. Glasgow Coma Scale score was lower (p < 0.01) in those treated with EF (11 vs. 14.2). Twelve patients (28%) had head injuries severe enough to require intracranial pressure monitoring. All 12 required therapy for intracranial pressure control with mannitol (100%), barbiturates (75%), and/or hyperventilation (75%). Most patients had more than one contraindication to IMN, including head injury in 46% of cases, hemodynamic instability in 65%, thoracoabdominal injuries in 51%, and/or other serious injuries in 46%, most often multiple orthopedic injuries. Median operating room time for EF was 35 minutes with estimated blood loss of 90 mL. IMN was performed in 35 of 43 patients at a mean of 4.8 days after EF. Median operating room time for IMN was 135 minutes with an estimated blood loss of 400 mL. One patient died before IMN. One other patient with a mangled extremity was treated with amputation after EF. There was one complication of EF, i.e., bleeding around a pin site, which was self-limited. Four patients in the EF group died, three from head injuries and one from acute organ failure. No death was secondary to the fracture treatment selected. One patient who had EF followed by IMN had bone infection and another had acute hardware failure. CONCLUSION: EF is a viable alternative to attain temporary rigid stabilization in patients with multiple injuries. It is rapid, causes negligible blood loss, and can be followed by IMN when the patient is stabilized. There were minimal orthopedic complications.

Adolescent↗