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Risedronate decreases fracture risk in patients selected solely on the basis of prior vertebral fracture.

The aim of this study was to examine the effects of risedronate (5 mg/daily) in patients identified solely on the basis of a prior fragility fracture, without BMD as an inclusion criterion. A total of 1,802 patients were examined from the VERT-NA and VERT-MN clinical trials. Lateral radiographs (T4 to L4) were obtained at baseline and annually; incident fractures were evaluated using quantitative and semiquantitative methods at the central facility. BMD was measured at the lumbar spine and femoral neck by dual-energy X-ray absorptiometry. Secondary analyses evaluated vertebral fracture efficacy in patient subgroups categorized according to the presence of risk factors for osteoporosis at baseline (age, femoral neck BMD, lumbar spine BMD, more severe BMD, height, weight, body mass index, prevalent nonvertebral fracture status, smoking, and bone turnover marker levels). Over 3 years, risedronate reduced the risk of new vertebral fractures by 44% (95% CI, 28% to 56%) compared with placebo. In patients subgrouped according to the presence or absence of putative risk factors, the efficacy of risedronate was comparable across all groups (all treatment-by-non BMD subgroup interactions p > or =0.210). Adjustment for age, baseline BMD, and prevalent vertebral fractures on fracture risk gave results similar to the unadjusted analysis. In patients taking placebo, the incidence of new vertebral fracture was higher in several of the high-risk categories (elderly, T-score < or = -2.5 SD). In conclusion, the findings of this study suggest that risedronate is effective in patients identified solely on the basis of a prior fragility fracture and that the efficacy of risedronate in the reduction of vertebral fractures is largely independent of the presence of clinical risk factors for osteoporotic fracture.

Absorptiometry, Photon↗

Definition of a spine fracture threshold based upon prospective fracture risk.

Assessment of fracture threshold (FT) could have important clinical application in determining which individuals should be treated preventively, and what level of therapy to prescribe, if suitable treatment regimens can be developed. We propose that FT be defined as the bone mineral content (BMC) at which the risk of fracture doubles, relative to premenopausal women, as determined by logistic regression analysis of spine fracture incidence in a prospective study of 408 postmenopausal women. The observed values for the FT agree well with those reported by others, based upon more arbitrary definitions. More than 90% of individuals with new nonviolent spine fractures have BMC below the fracture threshold, while fewer than 10% of younger women (age 30-45) are below this value. Although not all women with BMC below the FT have had fractures, they are at increased risk of fracture. Women with BMC equivalent to the FT have at least a 5% chance of fracture over a 10-year period, and the probability of fracture rises rapidly as BMC decreases. BMC appears to be a much stronger predictor of fracture risk than age or body size (height or weight). Thus, use of a BMC fracture threshold to categorize individual risk could provide a more objective basis for clinical decision making.

Adult↗

Long-term consequences of fracture of the lower leg: cross-sectional study and long-term longitudinal follow-up of bone mineral density in the hip after fracture of lower leg.

The purpose of this study was to investigate whether bone loss in the hip, occurring after a fracture of the lower leg, persists many years after the fracture. In a long-term follow-up we measured bone mineral density (BMD) by dual-energy X-ray absorptiometry (DXA) of both hips and the lumbar spine in a group of 11 patients, 5 years after a fracture of the lower leg. These patients were part of an earlier study, evaluating bone loss in the hip, up to 1 year after fracture of the lower leg. In this follow-up study, 5 years after fracture, loss from baseline BMD in the trochanteric region of the ipsilateral hip was 4.7% (p=0.04), whereas after a year in this group there was a decrease of 12.5% from baseline. On the contralateral side, hardly any change occurred. In the ipsilateral femoral neck, 5 years after fracture, BMD decreased by 2.9% (p=0.10), after 1 year loss from baseline was 5.1%. In a cross-sectional study we examined the differences in BMD of both hips, measured by DXA, in a group of 19 elderly patients reporting a fracture of the lower leg, with a mean time of 9.3 years after fracture. In this study, we found a 4.7% lower BMD in the trochanteric region of the hip on the fractured side compared with the nonfractured side (p=0.006), and a 2.9% lower BMD in the femoral neck (p=0.25). We conclude that, after fracture of the lower leg, BMD in the ipsilateral hip decreases significantly, with maximal bone loss after 1 year. After 5 years recovery has occurred, but not to baseline. Thereafter, significant excess bone loss is still observed in the trochanteric region. This persisting lower BMD may lead to an increased risk of another fracture in later years.

Aged↗

Fractures of the mandibular condyle. Part 1: patterns of distribution of types and causes of fractures in 348 patients.

This prospective study was designed to record relevant characteristics of mandibular condyle fractures and to evaluate the relationship between these. Data were recorded on sex, age, cause of trauma, level of fracture, dislocation of the mandibular head, dental state and associated fractures of all patients diagnosed in our hospital during the period 1984-1996 with mandibular condyle fractures. Data were analysed in our Computer Department. The sample comprised 348 patients with 444 fractures, and a male:female ratio of 2:1. Traffic accidents were the most common cause: 103 (41%) of the unilateral and 54 (56%) of the bilateral fractures, followed by alleged assault and falls. Low fractures were the most common -n = 314 of 444 (71%). The causes that involved considerable force (traffic accidents and falls) resulted in more dislocations of the mandibular head, more bilateral fractures, a tendency to fractures higher on the condyle and significantly more intracapsular fractures. Absence of molar occlusion also gave more high and fewer low fractures, but played no part in dislocation of the mandibular head from the glenoid fossa.

Adolescent↗

A critical assessment of factors influencing reliability in the classification of fractures, using fractures of the tibial plafond as a model.

OBJECTIVE: To investigate three factors that may influence the reliability of a fracture classification system: (a) the quality of the radiographs; (b) the ability of observers to identify the fracture fragments; and (c) the use of binary decision making. DESIGN: Assessment of interobserver reliability of blinded observers. SETTING: Medical school department of orthopaedics. PARTICIPANTS: Two attending orthopaedists, two PGY-5 orthopaedic residents, and two PGY-3 orthopaedic residents served as observers. INTERVENTION: Observers classified radiographs of twenty-five tibial plafond fractures according to the Rüedi-Allgöwer and binary classification systems, and also rated the quality of each radiograph as adequate or inadequate for accurately classifying the fracture. At a second session, observers classified the same radiographs after marking the fragments of the tibial articular surface, as well as radiographs that had the articular fragments premarked by the senior author. MAIN OUTCOME MEASURES: Pairwise interobserver reliability was analyzed by kappa statistics, and mean kappa values were compared for each method of fracture classification. RESULTS: No difference in interobserver reliability was detected between the Rüedi-Allgöwer and binary classification systems. Interobserver agreement on the adequacy of the radiographs was poorer than agreement on the classification of the fractures themselves. Having observers mark the fragments of the tibial articular surface had no effect on interobserver reliability; having the articular fragments premarked, however, significantly improved interobserver reliability in classifying the fractures. CONCLUSIONS: The results of this study underscore the complexity of tibial plafond fractures and the difficulty observers have in reliably interpreting fracture radiographs. Fracture classification systems, such as the Rüedi-Allgöwer, predicated on identification of the number and displacement of articular fragments, may inherently perform poorly on reliability analyses because of observer difficulty in reliably identifying the fragments. Because binary decision making did not improve the reliability of fracture classification in this study, further investigation of the effectiveness of binary decision making may be advisable before such strategies are put into widespread use.

Adult↗

Impact of MRI on treatment plan and fracture classification of tibial plateau fractures.

OBJECTIVE: To evaluate the interobserver agreement for both treatment plan and fracture classification of tibial plateau fractures using plain radiographs, computed tomography (CT) scan, and magnetic resonance imaging (MRI). DESIGN: Prospective study to assess the impact of an advanced radiographic study on the agreement of treatment plan and fracture classification of tibial plateau fractures among three orthopaedic surgeons. SETTING/PARTICIPANTS: Patients presenting with tibial plateau fractures to a level I trauma center were evaluated with plain knee radiographs (anteroposterior, lateral, two oblique views), CT scan, and MRI. Three experienced attending orthopaedic trauma surgeons were randomly presented three sets of studies for each injury: radiographs alone, radiographs with CT, and radiographs with MRI (including soft tissue injuries documented by an experienced MRI radiologist). The surgeons were asked to render fracture classification and treatment plan based upon the blind reading of each individual radiographic set. MAIN OUTCOME MEASURES: Agreement among the three surgeons was measured using kappa coefficients. RESULTS: For fracture classification, radiographs alone yielded a mean kappa coefficient of 0.68, which increased to 0.73 for radiographs with CT scan and 0.85 for radiographs with MRI. Fracture classification (Schatzker) was changed an average of 6% with the addition of the CT scan and 21% based on radiographs with MRI. For the fracture management plan, the mean interobserver kappa coefficient for radiographs alone was 0.72, which increased to 0.77 for radiographs with CT scan and 0.86 for radiographs with MRI. MRI changed treatment plan in 23% of the cases. CONCLUSION: Magnetic resonance imaging increases the interobserver agreement on fracture classification and operative management of tibial plateau fractures.

Adult↗

Impact of bone density on distal radius fracture patterns and comparison between five different fracture classifications.

OBJECTIVE: To investigate the impact of bone mineral density (BMD) and bone geometry on failure loads and fracture patterns of the distal radius and to compare 5 different fracture classifications. DESIGN: Biomechanical and radiologic in vitro study. SETTING: Research laboratory. MAIN OUTCOME MEASUREMENTS: A total of 118 intact human forearms from elderly donors were examined by means of conventional radiography and peripheral quantitative computed tomography (PQCT) to determine BMD and geometry. The forearms were subjected to a standardized biomechanical test simulating a fall on the outstretched hand. The distal radius fractures were classified from x-rays using the AO ( 33), Cooney ( 9), Fernandez ( 15), Frykman ( 17), and Melone ( 31) classifications. The grading was repeated after preparation and direct visual inspection of the fracture site and was correlated with radiographic results. Fracture patterns also were correlated with BMD and geometry. RESULTS: Correlations between bone properties and fracture patterns (r = 0.09-0.70) suggested an increase in the severity of fractures with decreasing bone quality. The highest correlation between failure load and bone properties was found for the cortical area (r = 0.70) and trabecular density (r = 0.60). Good correlations between radiographic and direct visual classification were obtained for the Cooney ( 9) (r = 0.70), the AO ( 33) (r = 0.68), and the Fernandez ( 15) (r = 0.65) classifications. Smaller values were found for the Frykman ( 17) (r = 0.44) and the Melone ( 31) (r = 0.27) classifications. CONCLUSIONS: With increasing osteopenia, the load to failure decreases, and the severity of fractures increases. Fracture patterns in this patient population can be adequately graded with the AO ( 33) and Cooney ( 9) classifications. The severity of distal radius fractures tends to be underestimated by conventional x-ray examination, which needs to be taken into account when a fracture treatment plan is selected.

Aged↗

The reduction of endplate fractures during balloon vertebroplasty: a detailed radiological analysis of the treatment of burst fractures using pedicle screws, balloon vertebroplasty, and calcium phosphate cement.

STUDY DESIGN: In a human cadaveric burst fracture model, the amount of endplate fracture reduction after posterior instrumentation and balloon vertebroplasty was investigated quantitatively. OBJECTIVES: To assess, in a burst fracture model, the vertebral body and adjacent disc heights, in parallel sagittal planes with 3-dimensional (3D) rotational x-ray imaging, at various phases during pedicle screw fixation and subsequent balloon vertebroplasty. SUMMARY OF BACKGROUND DATA: In recent human cadaveric thoracolumbar fracture studies, it was found that vertebral body height could be restored significantly with inflatable bone tamps. However, limited quantitative data exist on the amount of fracture reduction that can be achieved and how much of the reduction will be lost after deflation and removal of the bone tamps before the cement is injected. METHODS: Twenty burst fractures were created and balloon vertebroplasty with calcium phosphate cement was performed after pedicle screw instrumentation. A 3D dataset was obtained during the following phases: intact, fractured, after reduction and stabilization with pedicle screws, after inflation of the balloons, after deflation and removal of the balloons, after injection of the cement. The fractured vertebral body and adjacent disc heights were measured from five reconstructed sagittal images and compared for the six phases of the procedure. Furthermore, the difference between the vertebral body height centrally and peripherally was calculated. RESULTS: The mean vertebral body height at the thoracic level was Tintact = 19.5 +/- 2.2 mm, Tfractured = 14.6 +/- 3.8 mm, Treduction = 17.3 +/- 2.2 mm, Tinflation = 20.1 +/- 2.0 mm, Tdeflation = 18.0 +/- 2.0 mm, and Tcement = 17.8 +/- 1.8 mm. The overall change in vertebral body height between these phases was significant (P < 0.001). At the lumbar level the mean vertebral body height was Tintact = 23.2 +/- 3.8 mm, Tfractured = 14.7 +/- 3.0 mm, Treduction = 18.4 +/- 2.5 mm, Tinflation = 23.2 +/- 3.5 mm, Tdeflation = 19.3 +/- 2.3 mm, and Tcement = 20.2 +/- 2.8 mm. The overall change in MCVBH between these phases was also significant (P < 0.001). The increase in vertebral body height resulted in a decrease of the adjacent disc height. No difference was found for the amount of endplate reduction in the center or at the periphery. No leakage of cement was detected in the spinal canal. CONCLUSIONS: Reduction of endplate fractures, both in the center and at the periphery, seems feasible and safe with combined fracture reduction and balloon vertebroplasty. The endplate fracture reduction that was gained by inflation of the bone tamps could not be maintained after deflation.

Aged↗

Long-term prediction of incident hip fracture risk in elderly white women: study of osteoporotic fractures.

OBJECTIVES: To identify independent risk factors for first hip fracture over 10 years of follow-up. DESIGN: Prospective cohort study. SETTING: Four U.S. clinical centers. PARTICIPANTS: A total of 6,787 women aged 66 and older in the Study of Osteoporotic Fractures. MEASUREMENTS: Total hip bone mineral density (BMD) using dual-energy x-ray absorptiometry and a comprehensive set of potential risk factors were collected. Incident hip fractures were identified prospectively and confirmed using radiographic report. RESULTS: Six hundred two women (8.9%) had a hip fracture during a mean +/- standard deviation (SD) follow-up of 10.1 +/- 3.2 years. Older age, previous self-reported fracture after age 50, maternal history of hip fracture after age 50, greater height at age 25, impaired cognition, slower walking speed, nulliparity, type II diabetes mellitus, Parkinson's disease, and depth perception each independently predicted a 1.17- to 1.83-fold increase in hip fracture risk, whereas each SD (0.13 g/cm2) decrease in hip BMD was independently associated with a 1.84-fold increase in risk. Lower body mass index also was associated with an increased risk of hip fracture, although lower hip BMD largely explained this association. CONCLUSION: Although hip BMD is strongly related to hip fracture risk in elderly white women, other clinical risk factors also are independent predictors of long-term risk and provide additional insight into the prevention of fracture in high-risk women. Clinicians should be alert to factors other than BMD that place older women at a high risk of hip fracture.

Absorptiometry, Photon↗

Temporal bone fractures: longitudinal or oblique? The case for oblique temporal bone fractures.

Classical descriptions and illustrations of temporal bone fractures are misleading. Both oblique and longitudinal fractures produce a similar fracture line in the middle cranial fossa; however, externally, they are different. Oblique fractures cross the petrotympanic fissure while longitudinal fractures run within it. In a study of 150 temporal bone fractures, the majority were oblique. An array of fracture planes accounts for most of the fractures observed. Depending on the direction of trauma, fracture planes rotate around an anteroposterior axis. When they approach the horizontal (axial) plane, they result in oblique fractures. True longitudinal fractures are rare. They are vertical and perpendicular to the oblique planes.

Adolescent↗

Restoration fractures, cusp fractures and root fragments in a diverse sample of adults: 24-month incidence.

BACKGROUND: There are few reports in the literature regarding estimates of the occurrence of tooth fractures. Most studies have assessed tooth fractures in people seeking dental care, which may underestimate the incidence of the problem. METHODS: This study sought to estimate the incidence and prevalence of cusp and restoration fractures, as well as root fragments in participants in the Florida Dental Care Study, a diverse representative sample of community-dwelling residents of four north Florida counties made up of people who seek dental care regularly and those who do not. Participants received a dental examination and an in person interview at baseline and at a 24-month follow-up session. RESULTS: At least 20 percent of the participants were diagnosed as having bulk restoration fractures, cusp fractures or root fragments at the baseline visit. At the 24-month follow-up session, 26 percent of the participants had at least one new occurrence of these problems. Of those subjects presenting with tooth fracture, 25 percent had multiple teeth affected. African-Americans and people who sought care on a problem-oriented basis experienced twice the rate of cusp fracture and a higher rate of root fragments as did those who sought care on a regular basis. These data represent consecutive prevalence estimates rather than the true incidence, in that fractures that occurred after baseline may have been treated in the intervening 24 months. Thus, these data represent "lower-bound" incidence estimates. CONCLUSIONS: These results suggest that restoration fractures, cusp fractures and root fragments are a significant dental health problem, and that selected segments of the population are at greater risk of developing these problems. CLINICAL IMPLICATIONS: These data are useful for dentists in understanding the magnitude of the problem and the potential progression of fractures and root fragments.

Adult↗

Bone mineral density predicts non-spine fractures in very elderly women. Study of Osteoporotic Fractures Research Group.

To determine the ability of bone density to predict fractures in very elderly women, we examined the association of bone density with non-spine, hip, wrist and humerus fractures in 8699 Caucasian women aged 65-79 years and 1005 women aged 80 years and older who were participants in the prospective Study of Osteoporotic Fractures. Follow-up averaged 4.9 (+/- 1.0) years after baseline measurement of appendicular bone density (single-photon absorptiometry; Osteon-Osteo Analyzer) and 2.9 (+/- 0.6) years after measurement of hip and anteroposterior lumbar spine bone density (dual-energy X-ray absorptiometry; Hologic QDR 1000) at a later examination. In general, measurements of bone density in the oldest women retained their predictive value for fractures. Among women aged 80 and over a 1 standard deviation decrease in bone density of the distal radius was associated with an increased risk of non-spine (relative risk: 1.6; 95% confidence interval: 1.3, 1.8), wrist (1.7; 1.2, 2.4) and humerus fracture (2.9; 1.8, 4.7), while a 1 standard deviation decrease in femoral neck bone density was associated with an increased risk of non-spine (1.9; 1.6, 2.4), humerus (2.4; 1.2, 4.7) and hip fracture (2.1; 1.4; 3.2). However, only trochanteric but not femoral neck fractures were associated with low bone density in these oldest women. The excess risk of fracture in women with below-median bone density was greater in those aged 80 years and over compared with the younger women: 38.4 v 20.4 per 1000 woman-years for non-spine fracture and 12.2 v 3.2 per 1000 woman-years for hip fracture.(ABSTRACT TRUNCATED AT 250 WORDS)

Absorptiometry, Photon↗

Does the level of an intracapsular femoral fracture influence fracture healing after internal fixation? A study of 411 patients.

The aim of the study was to determine if the level of an intracapsular femoral fracture influences the risk of non-union or avascular necrosis occurring after internal fixation. An observer blinded to the outcome of the treatment (fracture union, non-union or avascular necrosis) reviewed the radiographs of 411 patients with an intracapsular fracture, which had been treated by internal fixation. The level of the fracture was determined by two methods, a direct distance measurement and a ratio method. In addition, the diameter of the femoral head was measured. Results indicated that none of the methods for determining the fracture level had any relationship to the risk of non-union or avascular necrosis occurring. Undisplaced fractures were found to be more proximally located than displaced fractures. We conclude that the level of an intracapsular fracture should not be used as a method of deciding if the femoral head should be preserved or replaced. The level of an intracapsular fracture may determine if the fracture displaces at the time of injury.

Aged↗

A fracture movement monitoring system to aid in the assessment of fracture healing in humans.

This paper presents a new design for a device to monitor the motion of fracture fragments in diaphyseal tibial fractures. The device measures the motion that occurs at the fracture site when loaded by gait or by manipulation. It has undergone rigorous calibration and acceptance trials. The device has been used in ethically approved research clinics held at the North Staffordshire Hospital (40 patients). The paper presents a selection of results obtained using the new device. The results demonstrate several new ways of assessing fracture healing by examining fracture site motion. The following conclusions were drawn: 1. If fracture monitoring devices are to be attached to bone screws, it is essential to minimize bone screw errors. To do this, each patient must have similar bone screw lengths, orientations, alignment and siting. This is only achievable using a peroperative reduction device. 2. If fracture stiffness is to be used as a measure of fracture healing, load rate should be controlled; at the very least strain rate should be controlled. 3. It is imperative that fracture stiffness be measured in more than one plane by a biplanar device so that asymmetry may be accommodated. 4. Fracture stiffness, on its own, is probably not a sufficiently rigorous measure of healing end-point. The quantifiably viscoelastic properties of healing callus should be taken into account.

Bone Screws↗

Tibial shaft fractures treated with functional braces. Experience with 780 fractures.

We have reviewed our recent results with functional bracing of tibial shaft fractures in adults in order to define its role in management. We also analysed several parameters of these fractures to discover those which influence healing. A total of 780 tibial fractures treated in prefabricated functional braces were followed to union; shortening of less than 10 mm and angulation of less than 5 degrees in any plane were our parameters for successful treatment. The average time before applying a brace was 3.8 weeks for closed fractures and 5.2 weeks for open ones. Closed fractures healed in an average of 17.4 weeks and open fractures in an average of 21.7 weeks, 90% of them with 10 mm of shortening or less. Varus angulation and posterior angulation were the most common deformities encountered at union. There were 20 nonunions (2.5%) and 46 braces were discontinued during treatment. We found no association between fracture healing and the patient's age, the mechanism of injury or the fracture location. The degree of soft tissue injury appeared to have most influence on the speed of fracture healing. Fracture comminution and initial displacement, the condition of the fibula and the time from injury to bracing also appeared to affect the speed of union.

Adolescent↗

Supracondylar fractures of the humerus associated with ipsilateral forearm fractures in children: a report of forty-seven cases.

Supracondylar fractures of the humerus associated with ipsilateral forearm fractures are uncommon and treatment recommendations are controversial. The purpose of this study was to determine whether pin fixation of both fracture components, humerus and forearm, would improve the outcome. In a two-center trial, 884 children sustaining supracondylar fractures of the humerus were retrospectively reviewed, and 47 (5.3%) showed associated ipsilateral forearm fractures. Of those, 29 underwent Kirschner-wire fixation of the forearm fracture, and 18 of the forearm fractures were treated with casting alone. Three of the 18 forearm fractures with casting alone reangulated. There were no reangulations in the patients who had pin fixation of their fractures. There were no complications due to pin fixation in the humerus or the forearm. In unstable supracondylar humerus and forearm fractures, stabilization with pin fixation to prevent reangulation should be considered.

Adolescent↗

Long-term results of functional treatment in intraarticular knee fractures and multifragment fractures of the shaft of femurs.

Functional treatment of fractures is a nonoperative technique used in intraarticular knee fractures and multifragment and multilevel fractures of the shaft of femurs since 1974. The basic principle of this technique is placement of the fractured extremity in the specially designed rehabilitation splint, with skeletal traction fixed above the ankle joint through both tibia and fibula. Traction reduces the fracture while stretching of muscles provides conditions favorable for callus formation. Exercises are first isometric and then isotonic. During exercises, muscle tone and moments of force in each muscle group are measured to evaluate effects of exercises. Exercises in traction and rehabilitation splints are continued until clinical signs of healing are observed (i.e., for six to eight weeks with intraarticular knee fractures and ten to 12 weeks with fractures of the shaft of femur). Alternative flexion of bone fragments with their compression by the contracted muscles facilitate absorption of hemorrhage, reduces swelling, and accelerates osteogenesis by replacing passive-tissue congestion with the active-tissue metabolism. Seven hundred fifty-seven intraarticular knee fractures with 76% excellent and good results, 20% average, and 4% poor were observed with this treatment. Functional treatment was also used in 320 multifragment and multilevel fractures of the shaft of femurs, with approximately 81% excellent and good results, 17% average, and 2% poor. Functional treatment of fractures is simple and safe, promotes healing, prevents muscle atrophy, reduces contracture formation, and minimizes functional loss.

Adult↗

Intramedullary nailing of femoral shaft fractures. Part II: Fracture-healing with static interlocking fixation.

A consecutive, prospective series of ninety-seven patients who had 100 fractures of the femoral shaft that were treated with static interlocking nailing was analyzed to determine the incidence of union of the fracture without planned conversion from static to dynamic intramedullary fixation as a technique to stimulate healing of the fracture. Eighty-four patients (eighty-seven fractures) were studied through union of the fracture (average follow-up, fourteen months). Eighty-five (98 per cent) of the eighty-seven fractures healed with static interlocking fixation. Two patients needed conversion from static to dynamic interlocking fixation because of inadequate fracture-healing; both progressed to uneventful union. The time to full weight-bearing (average, eleven weeks) was individualized for each patient and depended on the cortical contact of the major fragments, the presence of bridging callus as seen on radiographs, and the extent of other injuries of the ipsilateral lower extremity. No deformation or failure of the static interlocking device developed after early walking with weight-bearing, but fatigue failure of one nail occurred in a non-ambulatory patient who had an intracranial injury. Pain related to soft-tissue irritation by the prominent heads of the interlocking screws, clinically presenting as bursitis or snapping of the iliotibial band, was severe enough in six patients to necessitate removal of either the proximal or the distal screw after union of the fracture. We concluded that static interlocking of intramedullary nails in femoral shaft fractures does not appreciably inhibit the process of healing of the fracture, and that routine conversion to dynamic intramedullary fixation, although occasionally necessary, need not be performed.

Adolescent↗