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External fixation of the tibia. Basic concepts and prospective evaluation.

External fixation of fractures of the leg may give uneven results and a high rate of complications. We postulate that three basic principles can govern the optimal use of these devices. The external fixation frame should avoid damage to vital anatomical structures, it should allow access to the injured area and it should meet the mechanical demands of the patient and the injury. From 1978 to 1981 these principles were evaluated prospectively in 75 consecutive cases of complex tibial injury treated with an external frame. Most were open fractures. The study confirmed that the principles were safe and effective; they have general application and do not depend on the use of a particular frame or device. By following them we have eliminated the majority of complications seen after traditional methods of external fixation.

Adolescent↗

Ankle fusion with the Hoffmann external fixation device.

For over 100 years, many different types of external fixation have been used to immobilize fracture fragments. The greatest acceptance of external fixation has been with open fractures of the tibia. Three ankle fusions, all complex cases, were performed using the double-framed Hoffmann external fixation device. The deformities treated were a severe post-traumatic equinus deformity of the ankle and forefoot, a painful nonunion of a previous ankle fusion, and an equinus deformity secondary to a transmetatarsal amputation.

Adult↗

Risk of deep infection with intramedullary nailing following the use of external fixators.

A retrospective review was carried out to assess the incidence of deep infection occurring when intramedullary nailing was performed following the use of an external fixator. Three groups of patients were identified: group 1 in which the external fixator was used in initial fracture management (ten cases, nine patients), group 2 in which the external fixator was used in the management of established non-union (seven cases, seven patients), and group 3 in which the external fixator was used in limb lengthening procedures (eight cases, eight patients). All the 25 cases reviewed had clinical evidence of pin track infection before removal of the external fixator. After removal of the fixator it is our normal policy to wait for the pin sites to become dry before performing intramedullary nailing. In only one case, where there was a history of preceding recrudescent osteomyelitis, was there evidence of deep infection being reactivated following intramedullary nailing. We therefore conclude that pin track infection does not seem to be a contraindication to the subsequent use of an intramedullary nail, providing that underlying active osteomyelitis is not present. A delay of 7 to 14 days after removal of the fixator is recommended. Some problems experienced during nailing are highlighted, and solutions proposed.

Adolescent↗

An in vitro biomechanical study of a hinged external fixator applied to an unstable elbow.

Details of the mechanical properties of hinged external fixators are essential to use the fixator properly in the clinical setting. A hinged external fixator (Dynamic Joint Distractor 2) was attached to the lateral side of 7 cadaveric elbows. Cantilever lateral bending tests were performed at 3 flexion angles in varus and valgus directions. Varied states of joint contact and axial loading were studied. Stiffness of the construct was calculated with uniaxial loading. Stiffness decreased with increased elbow flexion. Gap creation made the system less stiff. Axial loading made the system stiffer, especially in valgus testing. Stiffness in varus was approximately 4 times that in valgus. Lateral fixator application with half pins is most effective for protecting against varus-producing forces. When using the external fixator for unstable elbows, attention should be paid to the status of the articular surfaces and the integrity of the ligaments, and this should also be noted for elbow position during rehabilitation.

Aged↗

[Personal experience in the care of open fractures using external fixation during the hostilities in Osijek and surrounding region].

In the period of aggression of the Federal Army and Serbian paramilitary forces on the City of Osijek and its surrounding, beginning in the summer of 1991, 4036 wounded were treated at the Department of Surgery, Osijek General Hospital. Extremity injuries were documented in 3889 patients, including 959 bone fractures. The majority of patients had wounds caused by highly destructive explosives filled with metal fragments of different shapes and dimensions, and having sharp and uneven edges. One hundred and forty wounded were treated by external fixators. In 102 patients this mode of fixation was applied for gun- and explosive-related long bone fractures of the lower extremities. External fixator for the upper and forearm fractures was used in 38 cases. During this period, different types of external fixators were used and experience in this work has been gained. Stability of both open and unstable bone fractures of the extremities, caused by explosive devices, has been obtained by the external fixation mostly in one plane, regardless of the type of external fixator used. The advantages of use of external fixators of the types Instrumentarija Zagreb 1 and 2 for the treatment of long bone fractures has been emphasized as well as the possibility of the subsequent corrections owing to the technical construction of the bone spike. The usefulness of the longitudinal bar of the AO/ASIF fixator for the healing of fractures of the upper leg with subsequent callus formation is also stressed. The same stability has been achieved by the CMC fixator. The external fixators of a type Zagreb 2 have been a satisfactory treatment for forearm fractures as well.(ABSTRACT TRUNCATED AT 250 WORDS)

Croatia↗

[Massive spongioplasty and external fixation in the posttraumatic pseudoarthrosis management--a case review].

The authors of this case review present three cases of posttraumatic pseudoarthroses as complications of open fractures of the forearm and the course of their treatment. External fixation with the Ilizar external fixation apparatus and bridging spongioplasty was applied in all patients. In the first presented case, the external fixation and spongioplasty was required after resection of the atrophic posttraumatic pseudoarthrosis. In the remaining two cases, furthermore, transposition of the distal fragment of the radius using distraction in order to correct its position against the distal part of the ulna, was required. The pseudoarthroses healed in all three subjects. The case review highlights the key significance of the external fixation method and the massive spongioplasty.

Adolescent↗

Recent innovations and future directions in external fixation of the foot and ankle.

Although the basic design of external fixators has changed little in the last 50 years, advances in pin engineering are decreasing rates of infection and loosening. Newer limb-specific frames are easier to apply to the ankle and novel designs in ring fixators are improving the field of deformity correction. Just as important as any technical improvement, though, is a more refined understanding of the merits and weaknesses of the technique. There are many applications in which external fixation is the best option and others in which it is the only surgical option. Because of this, external fixation will remain an essential tool for future orthopedic surgeons.

Animals↗

Combined internal and external fixation of distal radius fractures.

Combined internal and external fixation of distal radius fractures is used most commonly to treat injuries with joint surface or metaphyseal comminution. External fixation aids reduction intraoperatively and facilitates arthroscopic, per-cutaneous, or open manipulation of the fracture. Internal fixation maintains precise reduction of critical anatomy, principally the contour and orientation of the articular surface. Postoperatively the fixator functions as a neutralization device, preventing fracture collapse and decreasing the biomechanical demands on the internal fixation hardware. The combined technique exploits the benefits of both forms of fixation, allowing each to be used to full advantage in the treatment of complex distal radius fractures.

External Fixators↗

Nonbridging external fixation for fractures of the distal radius.

OBJECTIVE: To assess the feasibility of using standard components from the small AO external fixator set to support fractures of the distal radius with a construct incorporating distal fixation in the periarticular radius fragment that would allow for primary mobilization of the wrist joint during fracture healing. METHODS: In a prospective pilot study of a nonbridging external fixator in early 2001, 6 consecutive cases of fracture in the distal radius presenting at a tertiary care centre, the Hamilton General Division of Hamilton Health Sciences, were compared with 6 historical controls treated with a standard bridging construct immobilizing the wrist. Both groups were or had been treated with closed reduction and external fixation of the distal radius under fluoroscopic control. Fracture alignment was measured on radiographs after healing and removal of the fixation devices; additional (secondary) outcome measures were pin-tract sepsis and implant loosening (treatment failure). RESULTS: Compared radiographically with controls, alignments after fracture healing were improved (and virtually anatomic) with use of the nonbridging external fixator. The incidence of pin-tract sepsis was similar in the 2 groups, neither of which included any treatment failures. CONCLUSIONS: Nonbridging external fixation of comminuted distal radius fractures can be accomplished safely and effectively. The results of this pilot study suggest that improved radiographic alignment may be achieved with this technique.

Early Ambulation↗

[Treatment of infected tibial fractures and pseudarthrosis using an external fixator].

The clinical course and the results of our treatment of 18 patients with External Fixator after infection or pseudarthrosis are demonstrated. On an average of 6.1 months the patients wore the external fixator, the time of consolidation of the fracture was 17.2 months from the accident. At the date of examination - 16 months to 10 years after removal the external fixator all fractures and pseudarthroses were united. Two patients still had a fistula three years after removal of the external fixator. Three patients had slight pain in the area of the former fracture or the complication-wound; disturbance of sensibility in the area of the scar and the meshgrafts were found at 11 patients. The mobility of the knee joint was nearly free in all patients, the mobility of the ankle joint was impaired in most of them.

Adolescent↗

Intrafocal (Kapandji) pinning of distal radius fractures with and without external fixation.

Seventy-three patients were treated with either intrafocal pinning (Kapandji technique) alone or in combination with external fixation between 1988 and 1993 for extra-articular fractures of the distal radius (with or without a nondisplaced extension into the radiocarpal articular surface) with inadequate alignment after initial closed reduction. Sixty-one patients were available for follow-up examination at an average of 34 months (range, 24-71 months). The average age was 52 years (range, 16-84 years). Thirty-three of the patients were female. The patients all had dorsally displaced extra-articular fractures, although 56% had a nondisplaced extension of the fracture into the radiocarpal joint and 46% had a nondisplaced fracture extending into the distal radioulnar joint. The patients were separated into groups based on age, degree of comminution, and whether external fixation was also used. In the older patients, range of motion, grip strength, and pain relief were significantly better when external fixation was used, even when only 1 cortex of the radius demonstrated comminution. In the younger patients, good results in terms of range of motion, grip strength, and pain relief were obtained when percutaneous intrafocal pins were used alone in patients with comminution of only 1 surface of the radius (<50% of the metaphyseal diameter). When > or = 2 sides of the radial metaphysis were comminuted, the patients with external fixation had better results than those without external fixation. Although the correction of palmar tilt and radial tilt did result in better functional results, the restoration of radial length had the most significant effect on range of motion and grip strength.

Adolescent↗

New concept in external fixation.

A new concept in external skeletal fixation is presented. A 3D unilateral system developed by Mitkovic has widely been investigated biomechanically in AO institute in Davos (Switzerland). Consists of three components only providing extremely simple application and dynamic fixation of bones and different joints. This simple external fixator functions as an accurate reduction device at the same time, minimizing need for fluoroscopy. Clinically this system has been applied to mere then 13 thousand patients in 43 clinics. This paper presents the results of its application for treatment of open fractures, war wounds with fractures and for comminuted and intraarticular closed fractures in the series of 597 patients. Overall average time for union time was 3.2 months. Overall success of fracture healing was 96.8% including open and closed fractures. Our study suggests that the use of this 3D unilateral system is suitable for routine use.

Adult↗

Flexible intramedullary nailing versus external fixation of paediatric femoral fractures.

Treatment outcomes were compared in two groups of children with femoral diaphyseal fractures which were treated with external fixation (20 fractures) or flexible intramedullary nailing (20 fractures). These 40 children were between 5.4 to 14.1 years of age. The duration of the operation averaged 52 minutes for the external fixator compared with 70 minutes for the flexible nail group. The time taken to gain full weight bearing, full range of movements and return to school was shorter in the flexible intramedullary nail group. There was a higher complication rate in the external fixator group than in the flexible nail group. At final review, three patients in the external fixator group had pain, two had leg-length discrepancy of up to 1 cm, and four had malalignment of 5 degrees -10 degrees. In the nailing group, there were no leg-length discrepancies or malalignments. We recommend the use of flexible intramedullary nailing for fractures of the femoral shaft in children which require surgery, and reserve external fixation for open or severely comminuted fractures.

Adolescent↗

Fractures of the distal radius treated with a nonbridging external fixation technique using multiplanar k-wires.

PURPOSE: Joint-bridging external fixation is a minimally invasive treatment option for distal radius fractures. Although radial length can be restored easily the anatomic reduction of articular fragments and restoration of the normal volar tilt proves to be more difficult. A method of nonbridging hybrid fixation of distal radius fractures facilitates fracture reduction and allows for free wrist movement. METHODS: Twenty-five consecutive patients with fractures of the distal radius were treated with nonbridging external fixation for 6 weeks. The stepwise surgical technique comprised a preliminary joint-bridging construction for reduction purposes, the subsequent insertion of 3 to 4 K-wires in the distal fragment, the assembling of wires to a bar nearly parallel to the fracture line, and lastly the removal of the joint-bridging part. Clinical and radiologic evaluation was performed on the first and seventh days and at 6 weeks and 2 years after surgery. RESULTS: All fractures united. Palmar tilt (> or =0 degrees ) and articular surface (articular step-off < 2 mm) were restored in all patients whereas loss of radial length occurred in 4 patients having the distal fracture fragment secured with 3 K-wires. No radial shortening was seen in fractures with 4 K-wires inserted in the distal fragment. Functional results at 2 years after surgery showed an average extension of 55 degrees and flexion of 64 degrees without significant differences between extra-articular and intra-articular fractures. There was no extensor tendinitis or pin loosening in the distal fragment; however, 3 pin track infections of proximal pins occurred. CONCLUSIONS: This surgical technique of nonbridging external fixation is a good treatment option for distal radius fractures: it permits wrist movement. We recommend the insertion of 4 K-wires in the distal fracture fragment.

Aged↗

External fixation of pediatric femoral fractures.

Fifteen pediatric femoral fractures in 14 patients were treated with external fixation using the EBI Orthofix unilateral external fixator. The average patient age was 8.5 years (range, 3-13 years). There were 7 children with multiple injuries and 7 with isolated fractures. The average duration in the fixator was 63 days; average followup was 34 months. All 15 fractures healed without additional operative intervention. Average angulation at the fracture site was 4.4 degrees in the anteroposterior plane (range, 0 degrees-10 degrees) and 4.6 degrees in the lateral plane (range, 0 degrees-11 degrees). There were 5 pin tract infections, all of which resolved with systemic antibiotics. There was 1 case of refracture in a boy with muscular dystrophy. Ten patients had clinically equal leg lengths, 3 patients had < 1 cm of inequality, and 1 patient had a 1.5 cm discrepancy. External fixation is a well-proven technique for managing pediatric femoral fractures in the child with multiple injuries. It is also an effective means of treating isolated femoral fractures in the pediatric population.

Adolescent↗

External fixation in war traumatology: report from the Rwandese war (October 1, 1990 to August 1, 1993)

Modern missiles cause important damage in the tissues. In case of bone injury, apart from the presence of foreign bodies and soil dirt in the foyer, the lesion is characterized by a certain instability caused by the smashing and resulting in the comminutive fractures, as well as severe lesions of the soft tissues. If primary treatment includes the necessity of a large wound excision, of which the modalities have been described for centuries, it also includes a rigorous immobilization of the foyer as precaution against shock and infection. All techniques proposed during former conflicts proved that they are little adapted to the final goal. Their inadequacy may lead to amputation, at any rate to severe sequelae. In war traumatology, opposed to the shortcomings of nonoperative methods and opposed to the prohibitions of intrafocal synthesis, external fixation is considered to be the best among compromises: it stabilizes fractures efficiently without risk, retains the distance between bone fragments, and prevents contracture of the muscles. External fixators promote debridement of the wounds, permit vascular repairs and control of the wounds, allow mobilization of the limbs, improve the injured's comfort, and facilitate evacuation . All types of external fixators can be used, but a number of military imperatives must be taken into account. Fixing of the device must be easy to every user, even with little training. A minimal number of parts must allow a maximal number of assemblies. Easy use implies simplicity, but the assembled set must be stable. It must reduce the reprise of reductions, its compression, and its distraction to a minimal number of acts. Moreover, it must be relatively cheap. In theory, all open war fractures should be treated by means of an external fixator. The problem, however of mass surgery under uncertain circumstances, the limited equipment, and a precarious supplying must be considered. Rwanda was involved in a war from October 1, 1990 to August 1, 1993 (Arusha's agreement). A Belgian medical team from the Military Cooperation had to cope with 4,646 different casualties. We treated 1,129 fractures, and among them 115 fractures of the arm, 122 fractures of the forearm, 80 fractures of the femur (including the neck and the condylae), and 148 fractures of the leg. We had to cope with 315 fractures of the hand, of which 220 fractures were of the metacarpal bone. "Strangely," there were always more lesions of the left hand (9.5%) than the right hand (5.8%), sometimes up to five times (the only exception was met in August 1993). We placed 209 external fixators (of which 20 bridging the joint in case of important impairment), including those used for an arthrodesis. In the majority fo the cases (93.3%), we used the French device Fixateur Externe du Service de Sante des Armees (FESSA). Until March 1993, we had no "orthopedic table." Since March 1988, we had an Image Intensifier, but not very appropriate to an operating room (no mobile C-arm). A more accurate one was lent by the Belgian Medical Service and set up in September 1992. The average time to place an external fixator was about 30 minutes. General practitioners were also trained to handle external fixators. According to the importance of mass casualties, an external fixator was used immediately upon arrival of the wounded or at revision day (5th day after debridement). The only exception were femoral fractures that were at first time-treated by traction for 10 days. Sometimes we had precarious supplying because the supplies had to be ordered in Europe. Sometimes one patient had to wait until material became available from another patient. External fixation was also used for reconstructive surgery, mainly for ankle arthrodesis. In conclusion, it was possible for a very small surgical team, on its own for 18 months, to cope with a lot of difficulties caused by lack of readiness of the Rwandan Armed Forces, lack of organization, and lack of discipline of the R

External Fixators↗

External fixation for diaphyseal femoral fractures: a benefit to the young child?

External fixation for the treatment of diaphyseal femoral fractures in children seems an attractive alternative, which explains why its application gets more and more advocates. Between 1984 and 1989 15 children aged from 4 to 10 years were treated for a diaphyseal femoral fracture with an external fixation using a small Hofmann system. Fracture healing was without complications. Four children were able to walk on crutches non-weight-bearing after a short period. Six cases had complications, such as pin tract infection, inexplicable pain, or secondary displacement. One patient sustained a supracondylar fracture through one of the distal pin tracts. Hospital stay was longer than expected. In conclusion external fixation for femoral fractures in children is simple and elegant, but has considerable complications, while presumed advantages are not always obtained. In selected cases it is an attractive alternative, but the indications must be restricted.

Child↗

External fixation for pelvic ring disruptions.

The application of external fixation for acute treatment of unstable pelvic fractures can be a lifesaving procedure; however, it must be coordinated with other efforts of the trauma team. The patient with a pelvic fracture must be adequately resuscitated and carefully evaluated. This evaluation includes a careful physical examination and radiographic studies, which include plain films and computerized tomography. A proper evaluation enables classification of the pelvic injury and appropriate selection of patients that require acute pelvic external fixation. In this article, both open and percutaneous techniques for pin placement and fixator frame configurations are discussed.

External Fixators↗