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Cement augmentation of intertrochanteric fracture fixation: a cadaver comparison of 2 techniques.

We evaluated 2 techniques of cement augmentation to enhance fixation of intertrochanteric hip fractures. 4 fixation groups with 6 cadaver femurs in each group were compared: stainless steel lag screw and side plate with and without cement augmentation and a titanium alloy expandable dome plunger and side plate with and without cement augmentation. Gauges were used to establish the mechanical behavior of intact and then fractured femurs to simple uniaxial loads. Subsequent loading to failure allowed determination of maximum fixation strengths and modes of failure. Cement augmentation of each device increased its load to failure. There was no significant difference between the cemented lag screw and the uncemented dome plunger groups with average loads to failure of 4.0 x 10(3) N. The greatest average load to failure was in the cemented dome plunger group (5.6 x 10(3) N) with the lowest in the uncemented sliding hip screw group (3.6 x 10(3) N). Device cut-out as a cause of failure occurred mostly in the uncemented lag screw group. Sliding was enhanced by those methods that increased the fixation surface area within the femoral head, unless cement encroached in the region of the barrel-screw junction. Strain analysis showed that the dome plunger unloaded the bone at the calcar, regardless of cement augmentation, while the sliding hip screw allowed for compressive stresses in this area. Proper cement augmentation increases load to failure and minimizes nail cut-out for both devices studied. However, the dome plunger, a device with a large fixation area in the femoral head, was equally effective and eliminated potential cement encroachment. Failure of intertrochanteric fracture fixation in osteoporotic bone may be minimized by an appropriate choice of device or cement augmentation.

Bone Cements↗

Biomechanics of fracture fixation failure.

This article reviews the physiologic forces, stresses, and strains in normal bones. Biomaterials used in implants for fracture fixation devices are described, and the mechanical properties of an implant are discussed. The common mechanisms of implant failure are included.

Animals↗

Well-leg compartment pressures during hemilithotomy position for fracture fixation.

OBJECTIVE: To evaluate the relationship between the well-leg compartment pressures and time during hemilithotomy position for fracture fixation. DESIGN: Prospective. SETTING: Level 1 trauma center. PATIENTS/PARTICIPANTS: Ten patients who underwent intramedullary nailing of a fractured femur in the hemilithotomy position (with a well-leg holder). INTERVENTION: Continuous pressure monitoring was achieved with in-dwelling slit catheters inserted into the calf compartments of the well leg. Baseline measurements were obtained in the supine position. After the leg was placed in the hemilithotomy position, compartment pressures were monitored throughout surgery. MAIN OUTCOME MEASUREMENTS: Calf compartment pressures at baseline, during hemilithotomy position, and post-hemilithotomy were compared. The association between body mass index and compartment pressure was analyzed. RESULTS: A consistent pattern was observed between compartment pressures and time. The curve was that of a step function in which the pressure increased as soon as the leg was placed in the well-leg holder and remained elevated until the leg was taken down. The pressure jumped from a baseline of 9.2 to 27.3 millimeters of mercury (mm Hg) (p<0.0001). While in the hemilithotomy position, the leg pressure trended slightly upward. Once the leg was taken down, the pressure immediately returned to a near-baseline level of 8.1 mm Hg (p<0.0001). A significant correlation was also found between the body mass index and leg pressure (R2 = 0.713; F = 0.002). CONCLUSIONS: The use of the well-leg holder to maintain hemilithotomy position increases the calf compartment pressures dramatically and significantly. Therefore, we recommend avoiding this position for fracture fixation in at-risk patients.

Adolescent↗

Economic considerations on avoiding implant removals after fracture fixation by using absorbable devices.

Pins and screws for internal fracture fixation made of absorbable polymers have been available since the latter half of the 1980s. When using these implants there is no need for a subsequent implant removal operation. During the 7-year period 1985-1991, a total of 1219 patients were treated with such absorbable fixation devices, the most common indications being displaced malleolar fractures of the ankle and fractures of the radial head. Considering the economic viewpoints, the high acquisition costs of the absorbable implants partially outweighed the benefit of avoiding all removal procedures. When all costs also for the implant removal procedure after metallic fixation were included, the average cost saved per patient by using absorbable implants in a trimalleolar fracture was FIM 2023 (4.4% of the total costs). However, the removal of metallic devices is in fact to some degree optional, and in case the metallic implants were not removed, the economic result was in favor of the metallic devices by FIM 3684 per patient. Consequently, the ultimate economic audit of the use of absorbable vs. metallic devices is linearly dependent on the actual implant removal frequency. According to the present cost analysis, the break-even point would be attained at a removal rate of 65% in trimalleolar ankle fractures, at 51% in uni-and bimalleolar fractures and at 30% in fractures of the radial head. Only at a higher removal rate the introduction of absorbable devices would be a financially more favorable alternative.

Bone Nails↗

[Biomechanical studies on fracture fixation mechanism of the clover leaf medullary nail].

The intramedullary nailing method described by Küntscher is used widely now as an excellent treatment of the fracture of the long bone. However, it is well known from clinical experience that fracture fixation of the clover leaf nail is not so strong and especially rotational fixation is very poor. For the purpose of re-evaluating fracture fixation mechanism with Küntscher's nail, the following studies were performed. Osteotomized human cadaveric femur was fixed with the clover leaf nail in an ordinary manner. This osteosynthesis model was imbedded in plastic resin (RIGOLAC) in situ. Afterwards this model was cut into specimens 1.5 cm in thickness. The contact area between the bone and the nail was investigated macroscopically and roentgenographically on each specimen. Stress distribution in cross section of some commercially available clover leaf nails was investigated by the technique of photoelastography. Total expansive force of the clover leaf nail was obtained by the calculation based on the measured values. From these investigations the author concludes that the clover leaf nail does not fix the fracture by the expansive spring mechanism only, as was originally claimed by Küntscher.

Biomechanical Phenomena↗

High-impact poly(L/D-lactide) for fracture fixation: in vitro degradation and animal pilot study.

The impact strength of amorphous lactide copolymers can be significantly improved by blending with biodegradable rubbers. Rubber toughening of amorphous poly(85L/15D -lactide) with the copolymer poly (50/50-trimethylenecarbonate-co-epsilon-caprolactone) results in a high-impact polymer (PDLLA/P(TMC-CL)). In vitro, the PDLLA/P(TMC-CL) blend retained its tensile and impact strength for a long period of time. Up to 45 weeks, the amount of water absorbed by the blend remained very low and no significant mass loss was observed. To test the suitability for fracture fixation, in a dog study mandibular fractures were fixated with PDLLA/P(TMC-CL) bone plates and screws. Bone healing was uneventful without premature failure of the implants. Although long-term degradation studies have to be carried out, PDLLA/P(TMC-CL) seems to be promising for application in fracture fixation.

Animals↗

Symptomatic displacement of the lesser trochanter following trochanteric fracture fixation.

Unstable intertrochanteric hip fractures are characterized by comminution of the posteromedial cortex, resulting in a fragment of variable size containing the lesser trochanter. Controversy exists as to whether it is necessary to perform reduction and fixation of this fragment. This case lends further support to the practice of fixating the lesser trochanteric fragment in unstable intertrochanteric fractures.

Aged↗

Mandibular fracture fixation and reconstruction using the lower-border threaded rod: an eleven-year follow-up study.

Twenty-five cases in which a lower border threaded rod was used for fracture fixation and mandibular reconstruction were reviewed. These cases were performed during the last 11 years and have been followed for periods of up to five years and ten months. The fixation technique, originally reported in 1978, is well tolerated and provides excellent mechanical stability when enhanced security of fixation is indicated. Three unusual cases are reported in detail.

Adolescent↗

[Comparative investigations on the stability of fracture fixations with different fixateurs externes (author's transl)].

Short oblique fractures of the tibiae were stabilized with two-dimensional (frame spanner), three-dimensional and various V-shaped fixateurs externes, applied at the ventral-medial side. The stability of all these different types of fracture fixations was tested with and without an additional lag screw. Under a torsional load the stability of the area of osteotomy was measured. The three-dimensional fixateur externe and the V-shaped fixateur externe yielded the best results. The use of an additional lag screw produced a greater and significant (p less than 0,01) improvement.

Biomechanical Phenomena↗

Comparison of the size of plates for fracture fixation with the size of phalanges and metacarpals in cadavers of Asian origin.

The size and volume of plates and screws for fracture fixation of the hand (1.5-mm screws and titanium miniplates, 2.0-mm screws and stainless-steel AO miniplates, and 2.7-mm screws and stainless-steel AO miniplates) were compared against the phalanges and metacarpal bones and the surrounding soft tissue from male cadavers of Asian decent. In the cadaver study, it was first established that the difference between anatomic measurements and radiologic measurements for the interarticular bone length and midshaft width were not significant (p = .09). Second, the volume occupied by the bone showed a close association to interarticular bone length. This finding would suggest that the volume occupied by the bone may be estimated from the radiographs. When the length of the plates was compared to that of the bones, the analysis showed 4-hole and 6-hole 1.5-mm titanium miniplates, and the 4-hole and 6-hole 2.0-mm AO plates were not suitable for the middle phalanx, although only rarely are fractures in the middle phalanx fixed with plates. For the proximal phalanx, only the 4-hole 1.5-mm and 2.0-mm plates were suitable in length. The 6-hole 2.0-mm AO plate was found to be suitable for only the longer proximal phalanx of the middle digit. For the metacarpals, the 5-hole 2.7-mm AO plate was found not to be suitable for the thumb (in length) and the ring digit (in width). The commonly used plates and screws for fracture fixation of the hand may not be suitable in size for groups of people with smaller hand sizes, in particular some Asians and women.

Adult↗

Early fracture fixation may be deleterious after head injury.

OBJECTIVE: To determine the neurologic risks associated with early fracture fixation (FF) in multitrauma patients with head injuries. METHODS: We reviewed 33 blunt trauma patients with significant closed head injuries (Abbreviated Injury Scale (AIS) score > or = 2) requiring operative FF. Nineteen patients underwent early FF defined as < or = 24 hours after injury, and 14 patients underwent late FF defined as > 24 hours after injury. The two groups were well matched in regards to age, 40.3 years (range, 8-88 years) versus 36.4 years (range, 8-75 years), admission Glasgow Coma Scale score (12 +/- 4 vs. 11 +/- 5), and Injury Severity Score (25 +/- 10 vs. 27 +/- 12). Additionally, the groups had similar neurologic and orthopedic injury scores (AIS-CNS score = 3.3 +/- 0.9 vs. 3.1 +/- 0.9, AIS-Ortho score = 3.0 +/- 0.9 vs. 2.9 +/- 0.7). Data were collected concerning the volume of fluid resuscitation, neurologic complications, and clinical outcomes. RESULTS: The early FF group received significantly more fluids in the first 48 hours (14.0 +/- 10.2 vs. 8.7 +/- 3.5 liters, p < 0.05). The early group trended towards a higher rate of intraoperative hypotension (systolic blood pressure < 90 mm Hg, 16% vs. 7%) and intraoperative hypoxia (O2-Saturation < or = 90, 11% vs. 7%). The neurologic complication rate was similar in the two groups (early FF = 16% vs. late FF = 21%), but the average discharge Glasgow Coma Scale score was lower in the early group (13.5 +/- 3.7) when compared with the late FF patient group (15.0 +/- 0.0). CONCLUSIONS: Early FF leads to greater fluid administration in patients with head injuries. Hypoxemia and hypotension, risk factors for secondary brain injury, may contribute to a poor neurologic outcome after early fixation. Prospective studies evaluating the impact of the timing of FF on head injury are indicated.

Adolescent↗

The effect of staple size, orientation, and number on torsional fracture fixation stability.

Staples have been used for fixation of metaphyseal fractures, but there are no guidelines for placing the staples to ensure maximum fixation stability. This study investigated the effect of staple size, orientation, and number on torsional stability in simulated transverse fractures. Six homogeneous foam cylinders were cut transversely, stapled back together using a power driver, and rotated coaxially on a servohydraulic test system. Staples with bridge widths of 7, 10, 13, and 16 mm, and leg lengths of 7, 10, 15, and 20 mm were used. Each test was performed seven times. Torsional holding power was increased when two staples were oriented in opposite directions (45 degrees) and had bridges wide enough to maintain bone purchase with respect to the fracture line. Fixation effectiveness increased with the number of staples: the use of two staples (as opposed to one) yielded the biggest increase; further significant increases were also observed for the use of three, four, and five staples. Bridge width and leg length had minimal effect, as long as bone purchase sufficient to avoid cutout was maintained from the staple to the fracture surface.

Biomechanical Phenomena↗

Femoral neck fracture fixation: rigidity of five techniques compared.

Artificial cadaveric femoral neck fractures were internally fixed with five different devices and subjected to cyclical loading of 0-1.0 kilonewtons (approximately one body weight) whilst in an anatomical position. Displacement of the proximal fragment was detected by a transducer and charted. Bone strength was assessed by a preliminary control loading phase on the intact bone. Efficiency of each fracture fixator could then be directly compared by the relative movement in each case. Five specimens each were tested with Moore's Pins, Trifin Nail, Garden Screws and a sliding screw-plate (OEC Ltd). By the criteria of the experiment, which put a severe shearing load on the implant, none of these devices reliably bore the representative body weight. An extended barrel-plate, which supported the sliding screw almost up to the fracture line, was then made. This device, employing some of Charnley's concepts, tolerated body weight in four cases out of five.

Aged↗

[Method of fracture fixation using external fixation devices].

An improvement of the results of treatment can be reached, beside respecting the indication of external fixateurs, with correct tactics of the treatment. Because of the disadvantages of the fixateur externe, we strive to restrict their use, to the time by all means necessary, and if possible to use other methods of fixation. This is motivated especially by the effect on fracture healing and the hindering of the movements and activity of the patient.

Biomechanical Phenomena↗

Comparative biomechanical analysis of supracondylar femur fracture fixation: locked intramedullary nail versus 95-degree angled plate.

OBJECTIVES: To compare the initial stability of the genucephalic (GSH) intramedullary nail and the 95-degree condylar compression screw and side plate (DCS) for distal femur fractures. DESIGN: Human cadaveric biomechanical study. PARTICIPANTS: Twelve matched pairs of fresh frozen human cadaveric femurs. INTERVENTION: Genucephalic intramedullary nail device (Smith and Nephew Richards, Memphis, TN, U.S.A.) and the 95-degree DCS device (Synthes USA, Paoli, PA, U.S.A.) were compared. Grouped or dispersed screw constructs were tested for each fracture fixation system with progressively more severe simulated fracture patterns. MAIN OUTCOME MEASUREMENT: Axial and torsional stiffness values. RESULTS: The DCS plate with the dispersed screw configuration had the greatest torsional stiffness (p < 0.0011). The GSH nail with the grouped screw configuration absorbed more energy (work) during axial loading compared with the plate constructs (p < 0.0007). There were no significant differences in axial or torsional stiffness within treatment groups for fracture patterns of increasing severity. CONCLUSIONS: Based on the authors' results, the selection of a GSH nail or a DCS plate should not be determined by the severity of the fracture. If a DCS plate construct is selected, the authors recommend a dispersed screw configuration, including the most proximal hole in the plate, to provide superior stiffness in torsional loading and equal stiffness in axial loading when compared with the GSH nail constructs. If a GSH nail is selected, the authors recommend a grouped screw configuration, which absorbed more energy during axial loading compared with the DCS plate constructs and the nail with the dispersed screw configuration.

Adult↗

Spiral fracture fixation techniques. A biomechanical study.

The mechanical strengths of five common fixation techniques for spiral fractures have been tested. A total of 240 cadaver metacarpals and proximal phalanges were fractured and fixed by either crossed K-wires, interosseous loops, a dorsal mini-plate, a single compression screw or K-wire plus cerclage wire. Specimens were subjected to torsional and cantilever bending tests. A single compression screw provided the best overall fixation for the proximal phalanx. In addition, a single compression screw provided better fixation than any of the other techniques when proximal phalanges and metacarpals were subjected to torsional tests (P < 0.05). In apex dorsal bending tests of metacarpals, the screw provided fixation superior to interosseous wires, crossed K-wires, or dorsal mini-plates (P < 0.05). These results indicate that the use of a single compression screw provides the most satisfactory biomechanical advantage for spiral fracture fixation.

Biomechanical Phenomena↗

Routine radiography following ankle fracture fixation: a case for limiting its use.

The use of fluoroscopic screening in the orthopaedic theatre is a necessary operative aid in many procedures. Modern systems give good image resolution and allow the production of per-operative hard-copy prints. This study was performed to compare these prints with postoperative radiographs in 41 patients who underwent internal fixation for an ankle fracture in a 6-month period. The hard-copy prints and the postoperative X-ray films were independently assessed for several features, which included status of the tibiofibular syndesmosis, fibular length, talo-crural angle, talar tilt, presence and size of a posterior malleolar fracture, and abnormality of the medial clear space. Information was also recorded as to whether there had been a change in postoperative management plan after review of the check X-ray. Of the 41 cases, 30 were suitable for full assessment. In 25 of these cases there was no difference in the information provided by the hard-copy prints from fluoroscopic images and the postoperative check X-rays. In the other five cases, the differences were not significant. In none of the cases did the check X-ray effect a change in postoperative management. We therefore suggest that if per-operative hard-copy prints are obtained from the fluoroscopic images, postoperative radiographs of the ankle are only necessary in exceptional circumstances.

Adult↗

Tissue reaction on PLLA versus stainless steel interlocking nails for fracture fixation: an animal study.

In order to develop a biodegradable interlocking nail for fracture fixation, polylactic acid (PLLA) rods were implanted in the femoral bone of young pigs. A midshaft osteotomy was performed in order to mimic a fracture. The tissue response to PLLA rods versus stainless steel rods was studied after 1 and 3 months of implantation. Fracture-healing characteristics and chemical and mechanical properties of the PLLA rods were studied after explantation. Mechanical properties deteriorated during implantation and chemical properties changed significantly in 1 and 3 months of implantation. PLLA and stainless steel induced a similar tissue reaction during the studied implantation time of 3 months.

Animals↗