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Mechanical effect of posterior wire or half-pin configuration on stabilization utilizing a model of circular external fixation of the foot.

BACKGROUND: Numerous studies have addressed biomechanical characteristics of circular external fixation of long bones. The objective of the present study was to evaluate stabilization of a simulated foot model using external fixation with either calcaneal tensioned stopper wires or half-pins. METHODS: Fixation configurations of the calcaneus included two parallel wires, two wires crossing at either 30 degrees or 45 degrees, a 4-mm- and 5-mm-diameter single half-pin, or two half-pins inserted at a cross-angle of either 45 degrees or 90 degrees. All frames were tested in axial compression, anteroposterior (AP) bending, and mediolateral (ML) bending. RESULTS: An increase in wire cross-angle improved the axial and AP bending stabilization but had no influence on ML bending. Utilization of a single calcaneal half-pin instead of two cross-wires resulted in a considerable reduction in ML bending stabilization. Frame configurations with two half-pins substantially improved axial and ML bending stabilization. Due to the medial location of the metatarsal wire stopper, an increase in half-pin cross-angle significantly improved ML bending stiffness under lateral foot loading. Under the medial foot loading, however, the half-pin cross-angle had no effect on ML bending stabilization. Replacement of cross-wires with two half-pins significantly improved the AP bending stiffness only when the half-pin cross-angle was reduced to 45 degrees. In all modes of two half-pin frame loading, the half-pin diameter had a substantial effect on foot stabilization. CONCLUSIONS: Although the wire cross-angle, half-pin cross-angle, and half-pin diameter affect the stability of foot circular external fixation, the influence of these mechanical parameters on foot stabilization is dependent on the mode and location of loading. CLINICAL RELEVANCE: The results of the present mechanical testing can be utilized as a useful guideline for the optimization of circular external fixation of the foot.

Biomechanical Phenomena↗

External fixator for the hand: a quick, cheap and effective method.

The value of external fixation in certain hand injuries is well established. It particularly has a place with highly comminuted fractures not well managed by internal fixation. Expense and availability of formal mini external fixator sets have resulted in differing methods being employed. An "alternative" external fixator is presented comprising the disposable sheath of an i.v. cannula as the cross bar, held by K-wires as the pins. Such basic raw materials are available immediately in all theatres at minimal cost. This has been used in gun shot wounds with highly comminuted fractures. A preliminary study with eight patients is presented. The method is inexpensive, simple to use, and quick to apply. Good bone union and length is achieved. Stability is excellent, allowing early motion. This method can be recommended when no standard fixator sets are available to the surgeon.

Catheterization↗

Use of external fixation in the reconstruction of the Charcot foot and ankle.

External fixation allows the progressive foot and ankle surgeon to approach Charcot foot and ankle deformities in a new way. Surgeons can now correct Charcot pathology with percutaneous techniques using a new generation of external fixation frames. These fixators allow the surgeon to adjust or manipulate the Charcot foot after surgery and the patient early weightbearing. External fixation provides the foot and ankle surgeon the opportunity to reconstruct and stabilize this destructive disease.

Ankle Joint↗

Intramedullary nailing following external fixation in femoral and tibial shaft fractures.

BACKGROUND: Intramedullary nailing is the standard of care for the definitive management of lower extremity long bone fractures. Occasionally, temporary external fixation is used in fractures with severe open wounds or vascular injury before definitive intramedullary nailing. Secondary intramedullary nailing following external fixation is somewhat controversial, especially with respect to the duration of external fixation that is allowable before the risk of infection following later nailing becomes too great. Several recent studies have provided further insight into this issue. OBJECTIVE: The primary objective is to evaluate infection and nonunion rates in patients treated with temporary external fixation and secondary intramedullary nailing for lower extremity long bone fractures. The secondary objective is to evaluate whether the duration of external fixation and the interval time (defined as the time from external fixator removal to intramedullary nailing) influence the risk of infection after intramedullary nailing.

External Fixators↗

Dynamic axial external fixation in the surgical treatment of tibia vara.

Osteotomy is the well-established treatment of Blount's disease (tibia vara), although the types of fixation used vary considerably. The use of dynamic axial external fixation to stabilize osteotomies for tibia vara until solid union occurs without the use of supplemental casting has not been reported by other authors. From 1985 until the present, we have used osteotomy with dynamic axial external fixation as treatment of 31 tibiae in 23 patients. All osteotomies healed and there was no postoperative loss of correction. There was an average correction of 20 degrees between the pre- and postoperative mechanical axis. Advantages of dynamic axial external fixation include ease of application, adjustability, early weight bearing, the ability to lengthen the extremity, and no second operation for removal of hardware. Based on our results, we believe that dynamic axial external fixation is an excellent form of osteotomy stabilization in the surgical treatment of tibia vara.

Adolescent↗

A comparative mechanical study of 3 external fixator clamps.

OBJECTIVE: To compare external fixator clamps from Kirschner-Ehmer (K-E), Synthes, and Meynard with respect to 6 mechanical parameters. Study Design-A bench test of mechanical properties. METHODS: Specially designed fixtures were used to mechanically test 6 clamps of each type at 2.5, 5.0, and 7.5 Newton-Meters of clamp bolt-tightening torque. RESULTS: Components slipped axially and torsionally in the K-E clamp at higher forces for all parameters except for clamp bolt axis pivot. No bolt axis pivot occurred with the Synthes clamp. Instead, the clamp plastically deformed at the fixator-pin interface. This failure occurred at a higher applied torque than the pivot torque for other clamps. The Meynard clamp withstood significantly greater force than the K-E clamp when torsion was applied to the clamp bolt axis in the clockwise direction. Pivot forces for the K-E clamp were significantly higher than the Meynard clamp in the counterclockwise direction. CONCLUSIONS: Overall, the K-E clamp was able to resist higher axial and torsional forces before slipping than the Meynard clamp or the Synthes clamp. The Synthes clamp was best able to resist torsion around the clamp bolt axis. Torsional resistance at the clamp-fixator pin and clamp-connecting bar interface was the weakest parameter of clamp mechanics. CLINICAL RELEVANCE: The ability to resist motion within a clamp is related to fracture-reduction stability. Knowledge of the mechanical properties of fixator clamps will improve a clinician's ability to apply rigid fixation.

Animals↗

Geometric and material nonlinearity in tensioned wires of an external fixator.

OBJECTIVE: To investigate the fundamental characteristics of a tensioned wire in an external fixator. DESIGN: Many factors that may influence the wire performance including the change in wire geometry, material hardening and yielding, loading and unloading, and levels of pre-tension are considered in order to obtain a whole spectrum of the wire characteristics. BACKGROUND: External fixation is widely used in the treatment of unstable fractures, limb lengthening, and congenital and pathological orthopedic deformities. With the use of tensioned wires, external fixation provides attractive features such as minimal invasiveness, maximum tailorability, and versatility. These seemingly simple wires actually fulfill a very complex duty. To be able to maximize the benefit of these wires, it is necessary to know their fundamental characteristics. METHODS: A single wire was isolated from an external Ilizarov ring-frame, and nonlinear elastic and plastic analyses of the wire were performed using the method of finite element analysis. RESULTS: The nonlinear behavior of the wire originates not only from the material hardening and yielding but also from the change in its geometry. Pre-tension reduces wire deflection, delays the onset of full-plastic deformation, and elevates the limiting plastic moment, but at the same time leads to early material hardening and yielding. CONCLUSIONS: An entire load-deflection curve is necessary when comes to describe the wire performance. To enhance the wire performance, further efforts should be directed to exploiting the benefit of geometric nonlinearity of the wire. RELEVANCE: The findings will lead to refinement of external fixation design and provide engineering information to surgeons regarding the application of pre-tension during surgery.

Bone Wires↗

The surgical treatment of severe comminuted intraarticular fractures of the distal radius with the small AO external fixation device. A prospective three-and-one-half-year follow-up study.

Although fractures of the distal radius are very common, an optimal treatment has not been clearly delineated. This is a prospective study of 40 patients, mainly young and active adults, with comminuted and unstable intraarticular fractures of the distal radius. The end results of closed reduction and rigid fixation with the small AO external fixator includes 36 patients (90%) with excellent and good results. Roentgenograms of 33 of these patients showed accurate alignment of the healed fractures. Four patients (10%) had a fair functional result, with a partial restriction of the range of movement, although roentgenograms demonstrated good alignment of the healed fractures. The small AO external fixator is both a useful and convenient method for the reconstruction and treatment of comminuted intraarticular fractures of the distal radius.

Adult↗

Intra-articular fractures of the distal radius: a prospective randomised controlled trial comparing static bridging and dynamic non-bridging external fixation.

This prospective randomized trial compared a non-bridging external fixator with a bridging external fixator system for the treatment of severe comminuted intra-articular fractures of the distal radius. The results did not demonstrate a statistically significant difference in the radiological and clinical outcomes achieved with these two treatments.

Activities of Daily Living↗

Treatment of external fixation pins about the wrist: a prospective, randomized trial.

BACKGROUND: Pin-track infection remains one of the most troublesome complications of external fixation, in some cases compromising otherwise successful fracture treatment. METHODS: One hundred and eighteen patients (120 wrists) who had been managed with the placement of an external fixation device for the treatment of a displaced, unstable, distal radial fracture were randomized into one of three treatment groups: (1) weekly dry dressing changes without pin-site care; (2) daily pin-site care with a solution of one-half normal saline solution and one-half hydrogen peroxide; and (3) treatment with the placement of chlorhexidine-impregnated discs (Biopatch) around the pins, with weekly changes of the discs by the treating surgeon. The patients were followed at weekly intervals until the external fixator was removed. Radiographs were made biweekly. The patients were evaluated with regard to (1) erythema, (2) cellulitis, (3) drainage, (4) clinical or radiographic evidence of pin-loosening, (5) the need for antibiotics, and (6) the need for pin removal before fracture-healing due to infection. Differences in complication rates among the three groups, with adjustment for patient age, gender, and the performance of an associated open procedure, were evaluated. RESULTS: The average age of the patients was fifty-four years. Forty-seven wrists had an open procedure (either bone-grafting or open reduction and internal fixation) in addition to treatment with the external fixator. The fixators remained in place for an average of 5.9 weeks. Twenty-three patients (19%) had a complication related to the pin track, with twelve of these patients requiring oral antibiotics for the treatment of a pin-track infection. There were no significant differences among the three groups with regard to the prevalence of pin-site complications. The age of the patient was found to be significantly associated with an increased risk of postoperative pin-track complications (p = 0.04). CONCLUSIONS: We found a high rate of local wound complications around external fixation pin sites; however, most complications were minor and could be observed or treated with oral antibiotics. The prevalence of these complications was not decreased in association with the use of hydrogen peroxide wound care or chlorhexidine-impregnated dressings. On the basis of these results, we do not recommend additional wound care beyond the use of dry, sterile dressings for pin-track care after external fixation for the treatment of distal radial fractures.

Adolescent↗

Acute management of major trauma involving the foot and ankle with Hoffmann external fixation.

Massive trauma involving the foot was treated by external fixation in 33 cases and followed for 1 to 3 years. Amputations were performed in seven (21%) because of uncontrollable deep sepsis in two and massive injury in five. The other 26 (79%) had functionally acceptable feet at follow-up, but all had some stiffness and cosmetic deformity. Complications attributed to the Hoffman external fixation were limited to three pin tract infections. We recommend Hoffmann external fixation when it is necessary to: 1) stabilize major open fracture dislocations; 2) maintain length where bone is lost or extensively comminuted; 3) prevent soft tissue contractures; 4) control joint position for delayed ankle arthrodesis; and 5) provide easy access for soft and bone tissue reconstructions.

Adolescent↗

Skeletal traction versus external fixation for pediatric femoral shaft fractures: a comparison of hospital costs and charges.

OBJECTIVES: To compare the hospital costs, charges, and reimbursement for treatment of pediatric femur fractures by two treatment methods: external fixation and 90-90 traction with spica casting. DESIGN: Retrospective clinical review. SETTING: Department of Orthopaedic Surgery, Children's Hospital Oakland, regional pediatric trauma center. PATIENTS: Twenty-nine consecutive patients between the ages of five and ten with a fracture of the femoral shaft were treated by one of two methods: external fixation (sixteen patients) or 90-90 skeletal traction followed by spica casting (thirteen patients). INTERVENTION: External fixation or 90-90 traction followed by spica casting. MAIN OUTCOME MEASURE: Hospital billing data including costs, charges, reimbursement for the initial inpatient hospitalization, and outpatient financial data until fracture union and cessation of treatment. RESULTS: There was no difference in age, total treatment time, mechanism of injury, or number of associated injuries between the two groups. The average charge for treatment with skeletal traction and spica casting was $32,094 per patient versus $21,439 for external fixation (p < 0.001). The average cost for treatment with traction and spica casting was $22,396 per patient versus $11,520 for external fixation (p < 0.001); reimbursement was $30,846 and $7,490, respectively (p < 0.001). The number of days in the hospital was larger for the traction group than for the external fixation group (22.3 days versus 4.7 days, p < 0.0001). CONCLUSIONS: External fixation of pediatric femoral shaft fractures results in decreased hospital costs and length of hospitalization, but produces significantly less income for the hospital when compared with skeletal traction followed by spica casting.

California↗

The hybrid ring tubular external fixator: a biomechanical study.

OBJECTIVE: To measure and compare the mechanical properties in bending of the four-ring, and three-ring/one-tube hybrid external fixation frames. DESIGN. IN VITRO: measurements of the mechanical behaviour of ring and ring-tubular external fixation frames. In the latter, one ring of the full circular frame was replaced by one tube and Schanz screws. BACKGROUND: The mechanical properties of the classical Ilizarov four-ring external fixation frames has been compared to those of other external fixation frames by various authors. However, in clinical practice the hybrid fixation frame is being used with increasing frequency. Therefore the mechanical properties of the latter are of immediate interest and clinical value. METHODS: On explanted sheep tibiae with single and double osteotomies, frame stiffness in the four-point bending mode was measured at different K-wire tensions, comparing the values obtained from four-ring frames, to those of three-ring-tubular hybrid frames. These measurements were made under conditions of (a) bone distraction (BD), and (b) segment transport (ST), both at the initial and final stages of this procedure. RESULTS: In circular frames, frame stiffness in bending for increasing K-wire tension showed a Gaussian distribution both in distraction and post-ST with an optimum at 1000 N. In ring tubular hybrid frames, however, frame stiffness showed a more linear relationship to K-wire tension. CONCLUSIONS: In the four-ring Ilizarov external fixation frame, the exchange of one ring with one tube and one Schanz screw both reduced frame stiffness in bending and converted to linear its relationship to K-wire tension. RELEVANCE: Under clinical conditions, the use of a similar ring tubular hybrid external fixator allows the adjustment of frame stiffness in a simple and practical way. This is not the case with the original ring fixation frame.

Journal Article↗

A mechanical comparison of veterinary linear external fixation systems.

OBJECTIVE: To compare the fixation rigidity of recently developed external fixation systems (EFSs) to that of the traditional Kirschner-Ehmer (KE) system. STUDY DESIGN: In vitro biomechanical study. SAMPLE POPULATION: Five different EFSs (KE, Secur-U, small SK carbon fiber, small SK titanium, large SK carbon fiber) were assembled into 7 frame geometries to stabilize Delrin plastic rods with a 1-cm gap. METHODS: External skeletal fixation (ESF) constructs were tested in axial compression, torsion, medial-lateral bending, and cranial-caudal bending. Testing was conducted within the elastic range of each fixator. Mean stiffness in each mode was determined from the slope of the linear portion of the load-deformation curve. Comparison of stiffness values of each EFS within each loading mode and frame type was performed with 1-way analysis of variance (P <.05). RESULTS: Mean stiffness values were significantly higher for the large SK EFS in all frame types compared with KE but were equal in torsional stiffness in the double-bar type 1a frame. The small SK EFS with titanium connecting bar had greater stiffness than the KE in all modes for frame types Ia, Ia-accessory bar, and II-modified. No overall difference was detected between the KE EFS and the small SK with carbon fiber rod. The stiffness of the Secur-U type Ia frame with augmentation plate was significantly greater than the KE type Ia with accessory bar. CONCLUSIONS: The newer external fixation systems evaluated in this study provided fixation rigidity equal to or greater than that of the KE system. CLINICAL RELEVANCE: EFSs with increased frame rigidity should permit the use of less complex frame designs while providing fracture stability.

Animals↗

[Our experiences with change of osteosynthesis from external fixator to internal fixation in fractures of the lower limb].

INTRODUCTION: In polytrauma patients and fractures with severe soft tissue damage of the lower limb the use of external fixator is indicated. To show the possibilities and limits of change of external fixation to internal osteosynthesis we performed a retrospective analysis. PATIENTS AND METHODS: Between 1.1.1993 to 30.6.1997 671 cases were primarily treated with external fixator. After a mean of 16.5 days a change of osteosynthesis was performed in 75 cases. RESULTS: 5 infections of the pin tracks, 3 infections of the wound, two thromboses, one case of thromboembolism and one osteomyelitis were seen in these 75 cases. One patient died due to severe brain damage after head injury. No further operations were necessary, all fractures showed primary healing. Taking the severe soft tissue damages and severe multiple trauma into account only few complications were observed. CONCLUSION: The main problems and risks of internal fixation occur in the early phase of treatment, whereas complications after external fixation are more likely to occur in later stages. By a change from external fixation to internal osteosynthesis the advantages of both methods can be combined.

Accidents, Traffic↗

[Treatment of complex open fractures of the limbs using home-made external fixators. Technical presentation].

For the external fixation of complex open fractures in Da-Nang, Vietnam, the authors developed a home-made fixator, based on the Orifix system. The model allows correction of axial deviations and may be used for lengthening procedures. Sufficient stability is obtained without the aid of any other device. Weight bearing and sometimes walking are possible. The first cases were successful and are reported here.

Adolescent↗

Deformity correction and lengthening of lower legs with an external fixator.

Deformities combined with shortening in 34 lower limb segments of 28 patients were treated with an Ilizarov external fixator or a Taylor spatial frame at the same level as the osteotomy. We compared an acute correction group (A) with a gradual correction group (G) in patients undergoing deformity correction followed by lengthening. We retrospectively examined the amount of deformity correction, length gained, distraction index, maturation index, and external fixation index in both groups. The mean age of subjects was 12.9 years for A, 17.9 years for G. The mean deformity correction was 17.8 degrees for A, 25.1 degrees for G. Mean lengthening was 5.5 cm for A, 5.0 cm for G. Mean distraction index was 16.4 days/cm for A, 10.6 days/cm for G (P<0.05). Mean maturation index was 40.5 days/cm for A, 29.5 days/cm for G (P=0.081). Mean external fixation index was 58.6 days/cm for A, 42.5 days/cm for G (P<0.05). The distraction index and external fixation index differences between the two groups were statistically significant. Gradual correction may represent a better approach than acute correction with the use of external fixators to treat deformity combined with shortening.

Adolescent↗

Hinged elbow external fixators: indications and uses.

Hinged external fixation of the elbow joint can play an important role in managing complicated fracture-dislocations, joint instability after extensive contracture release, and distraction interposition arthroplasty. Application of these devices requires accurate alignment of the fixator axis with the anatomic axis of the elbow. The primary therapeutic goal is to allow joint motion while protecting the healing ligaments. Common complications include pin loosening, injury to adjacent neurovascular structures, cellulitis, and loss of reduction. Although reported data are limited, this technique is a useful adjunct in patients with complex elbow instability.

Contracture↗