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A population-based study of fracture incidence in southern Tasmania: lifetime fracture risk and evidence for geographic variations within the same country.

Symptomatic fractures are a significant problem in terms of both morbidity and financial cost. Marked variation in both total and site-specific fracture incidence has been documented internationally but there is limited within-country data. This prospective population-based study documented the incidence of all symptomatic fractures occurring from July 1, 1997 to June 30, 1999 in adults > or =50 years of age resident in Southern Tasmania (total population > or = 50 years: 64688). Fractures were ascertained by reviewing reports from all the radiology providers within the area. There were 701 fractures in men and 1309 fractures in women. The corresponding fracture incidence in men and women was 1248 and 1916 per 100000 person-years, respectively. Residual lifetime fracture risk in a person aged 50 years was 27% for men and 44% for women with fractures other than hip fractures constituting the majority of symptomatic fracture events. These fracture risk estimates remained remarkably constant with increasing age. In comparison to Geelong, there were significantly lower hip fracture rates (males: RR 0.59, 95% CI 0.45-0.76; females: RR 0.61, 95% CI 0.53-0.71) but significantly higher distal forearm fractures (males: RR 1.87, 95% CI 1.10-3.78; females: RR 1.31, 95% CI 1.11-1.55) and total fractures in men (RR 1.31, 95% CI 1.17-1.46) but not women (RR 1.05, 95% CI 0.98-1.13). In contrast, Southern Tasmania had lower age-standardized rates of all fractures compared with Dubbo (RR 0.28-0.79). In conclusion, this study provides compelling evidence that fracture incidence varies between different geographic sites within the same country, which has important implications for health planning. In addition, the combination of high residual fracture risk and short life expectancy in elderly subjects suggests fracture prevention will be most cost-effective in later life.

Age Distribution↗

Changes in hip fracture epidemiology: redistribution between ages, genders and fracture types.

After several reports of increasing hip fracture incidence some studies have suggested a trend-break. In a previous study of hip fractures we forecast a 70% increase in the total number of fractures from 1985 up to year 2000. We therefore studied the incidence trend for the last 15 years and supply a new prognosis up to year 2010. We recorded all incident hip fractures treated in the county of Ostergötland, Sweden (approximately 400,000 inhabitants) 1982-96. A total of 11,517 hip fractures in men and women aged 50 years and above were included in the study after cross-validation between a computerized register of radiologic investigations and the hospital records. The projected number of fractures up to year 2010 was estimated by a Poisson regression model, considering both age and year of fracture in every single year 1982-96 for the respective fracture type and gender, and applied to the projected population. The annual number of hip fractures increased by 39% in men and 25% in women during the study period. Amongst men, the age-adjusted incidence of cervical fractures increased from 188 to 220/100,000 and of trochanteric fractures from 138 to 170/100,000. In women the incidence of cervical fractures decreased from 462/100,000 to 418/100,000 and of trochanteric fractures from 407/100,000 to 361/100,000. Cervical/trochanteric fracture incidence rate ratio leveled off, and also the female/male fracture rate ratio declined. A prognosis assuming that the incidence development will continue as during 1982-96, and a population in agreement with the forecast, predicts that the total age- and sex-adjusted number of hip fractures will decrease by 11% up to year 2010 compared with 1996. In women and men, however, a decrease of 19% and an increase of 7% respectively were projected. If the age- and sex-specific incidence remains at the same level as at the end of the study period, no significant change in the total numbers will occur. A trend-break was thus found in hip fracture incidence for women but not for men. Whether this is due to therapeutic and/or preventive measures in women is unknown. According to the most probable scenario a substantial increase in male trochanteric fractures (36%) is expected up to 2010, while all other hip fractures in both genders will decrease by 4-32% resulting in a total reduction of 11%.

Age Distribution↗

Pre-existing fractures and bone mass predict vertebral fracture incidence in women.

OBJECTIVE: To determine the independent contributions of bone mass and existing fractures as predictors of the risk for new vertebral fractures. SUBJECTS: Postmenopausal Japanese-American women. MEASUREMENTS: Baseline measurements of the distal radius, the proximal radius, and the calcaneus were obtained in 1981 using single-photon absorptiometry. Measurements of the lumbar spine were obtained in 1984 using dual-photon absorptiometry. Prevalent vertebral fractures were identified using dimensions measured on lateral radiographs; vertebral height values more than 3 SD below vertebra-specific means were considered to indicate fracture. Statistical models were used to evaluate the utility of bone mass and existing (prevalent) fractures to predict the risk for new fractures during an average follow-up of 4.7 years. MAIN RESULTS: Differences of 2 SD in bone mass were associated with fourfold to sixfold increases in the risk for new vertebral fractures. A single fracture at the baseline examination increased the risk for new vertebral fractures fivefold. Presence of two or more fractures at baseline increased the risk 12-fold. A combination of low bone mass (below the 33d percentile) and the presence of two or more prevalent fractures increased the risk 75-fold, relative to women with the highest bone mass (above the 67th percentile) and no prevalent fractures. Stature, body mass index, arm span, and spinal conditions such as scoliosis, osteoarthritis, and sacroiliitis did not predict fracture incidence (P greater than 0.05). Weight was marginally predictive (P = 0.04) of fracture incidence but became nonpredictive after adjusting for bone mass (P greater than or equal to 0.05). CONCLUSIONS: Both bone mass and prevalent vertebral fractures are powerful predictors of the risk for new vertebral fractures. Combining information about bone mass and prevalent fracture appears to be better for predicting new fractures than either variable alone. Physicians can use these risk factors to identify patients at greatest risk for new fractures.

Absorptiometry, Photon↗

The effect of vertebral fracture as a risk factor for osteoporotic fracture and mortality in a Spanish population.

There is little data concerning the morbidity, mortality, and epidemiology of vertebral fracture. The aim of this study was to evaluate the effect of prevalent and incident vertebral fractures as risk factors for further osteoporotic fractures and mortality. The study was performed on a cohort of 316 women and 308 men older than 50 belonging to the EVOS study, randomly selected from our city register. At the beginning of the study and 4 years later, lateral dorsal and lumbar X-rays were performed. In addition, evaluation of the incidence of osteoporotic nonvertebral fractures was performed throughout 8 years. The incidence of all osteoporotic fractures was higher in women than in men (two-fold increase in vertebral fracture incidence and five-fold increase in Colles' and femur incidence). Vertebral fracture was a strong risk factor for a new vertebral fracture [RR=4.7 (1.8-11.9)], hip fracture [RR=6.7 (2.0-22.7)] and Colles' fracture [RR=3.0 (1.1-7.8)]. Prevalent and incident vertebral fractures were associated with a higher risk of having a hip fracture [RR=10.0 (2.0-50.2)] and Colles' fracture [RR=5.5 (1.3-23.4)]. In addition, in women, the vertebral fracture was associated with a higher mortality. By contrast, no association was found in men. These results demonstrate the association between a previous vertebral fracture with increments in the incidence of osteoporotic fractures of any type. In addition, we found a significantly higher mortality rate in women having vertebral fractures. These findings support the necessity of preventing the occurrence of vertebral fractures to limit their strong negative impact on mortality.

Aged↗

Nontraumatic lumbar vertebral compression fracture as a risk factor for femoral neck fractures in involutional osteoporotic patients.

To screen a potential risk factor for femoral neck fracture, we characterized lumbar vertebral fractures in 120 patients with femoral neck fractures (19 men, 101 women; mean age, 78.7 years) by investigating the frequency of patients with lumbar vertebral fracture, the number of vertebral fractures per patient, and the severity of deformity of the fractured vertebral bodies. These findings were compared with data gathered from a population of age- and sex-matched control patients (20 men, 89 women; mean age, 77.6 years) who had no evidence of femoral neck fracture. The heights of the anterior and posterior walls together with the midpart of the lumbar vertebrae were measured on lateral radiographs to identify fractures. The extent of height loss in the fractured vertebrae was calculated for each group. The incidence of patients with vertebral compression fractures was significantly higher in the femoral neck fracture group than in the control group (65.0% vs 41.1%). In terms of age, the difference in the incidence of vertebral fractures in the two groups was greater in the less aged (60-79 years old) than in the more aged (>80 years old) population. The mean number of lumbar vertebral fractures was also significantly greater in the femoral neck fracture group than in the control group (1.59 +/- 1.39 vs 0.75 +/- 1.19; P < 0.001). The incidence of more deformed vertebral fractures, which were defined as a vertebral height loss of more than 50%, was also significantly higher in the group with femoral neck fracture than in the control group (23.0% vs 7.3%). Based on these results, we concluded that multiple and more severely deformed vertebral fractures might represent a high risk for femoral neck fracture, particularly in patients less than 79 years of age. Care measures that encompass fall prevention and protection of proximal femurs in addition to drug therapy for osteoporosis should be recommended to individuals in this category.

Age Factors↗

Vitamin D and vitamin D analogues for preventing fractures associated with involutional and post-menopausal osteoporosis.

BACKGROUND: Due to their known effects on bone metabolism, Vitamin D and related compounds have been proposed for the prevention of osteoporosis and fractures. OBJECTIVES: To determine the effects of supplementation with Vitamin D or a Vitamin D analogue in the prevention of fractures of the axial and appendicular skeleton in elderly men or women with involutional or post-menopausal osteoporosis. SEARCH STRATEGY: We searched MEDLINE, EMBASE, BIOSIS, CINAHL, HealthPLAN, Dissertation Abstracts, Index to UK Theses, Current Contents, and bibliographies of identified trials and reviews. Trials were also obtained from the Cochrane Musculoskeletal Injuries Group trials register. Date of the most recent search: December 1995. SELECTION CRITERIA: Any randomised or quasi-randomised trial which compared Vitamin D or a Vitamin D analogue, either alone or in combination with calcium supplementation, with a placebo, no intervention, or the administration of calcium supplements, with fracture as an outcome, in elderly men or women with involutional or post-menopausal osteoporosis. DATA COLLECTION AND ANALYSIS: Two reviewers independently assessed trial quality, by use of a seven item scale, and extracted data. Additional information was sought from trialists. Where possible the data were pooled. MAIN RESULTS: Fourteen trials recording 13 different comparisons were included. In the only trial of Vitamin D alone, protection against hip fracture was not confirmed. Two regimens, each represented by one large trial, which showed limited evidence of efficacy in reducing the incidence of hip or other appendicular skeleton fractures were: 1) Oral Vitamin D when accompanied by calcium supplementation. 2) 1,25 dihydroxy Vitamin D (calcitriol). This appeared more effective than calcium in a direct comparison. Regimens showing limited evidence of efficacy in reducing the incidence of vertebral deformity were: 1) 1,25 dihydroxy Vitamin D (calcitriol), which appeared more effective than calcium in one large trial, and more effective than placebo from pooled results of two small trials. 2) Oral 1-alpha hydroxy Vitamin D (alfacalcidol), when administered with calcium supplements (two small trials, which lacked power to confirm a possible effect). Hypercalcaemia and gastro-intestinal symptoms, reported in less than 5% of participants, were slightly more common when Vitamin D analogues were taken. However, the risk of death was marginally less. REVIEWER'S CONCLUSIONS: Uncertainty remains about the efficacy of regimens which include Vitamin D or its analogues in fracture prevention. Particularly if co-supplementation of calcium is required, significant cost differences are likely to exist between regimens. Further randomised trials with economic evaluation are desirable before community fracture prevention programmes employing Vitamin D supplementation can be confidently introduced.

Aged↗

Fracture-related and implant-specific factors influencing treatment results of comminuted diaphyseal forearm fractures without bone grafting.

INTRODUCTION: Recommendations regarding the application of primary autologous bone grafting in the surgical treatment of comminuted diaphyseal forearm fractures are conflicting. Some recent studies suggested that there is no difference in the union rate between simple and comminuted forearm fractures and that the use of bone grafting in the treatment of these fractures is therefore not necessary. Our hypothesis was that among comminuted forearm fractures there is a small group of fractures with a very large extent of comminution that heal with a significantly lower union rate and a prolonged time to union compared with other fractures. We believe that in these fractures bone grafting could help to reduce the time to union and further decrease the rate of nonunion. MATERIALS AND METHODS: We reviewed the results of the treatment of 214 consecutive patients who sustained 319 diaphyseal fractures of forearm bones. To prove our hypothesis, union rate and time to union in fractures with different extents of comminution were compared. All fractures were treated by open reduction and internal fixation with plates without the use of bone grafting. In addition, the study evaluated other factors that could influence the union rate and time to union in observed fractures. RESULTS: Separate analysis of union rate and time to union in fracture groups with different extents of comminution confirmed our hypothesis only partially. Although we proved that fractures with bone loss greater than two-thirds of the diameter of the diaphysis had a significantly prolonged time to union, we could not demonstrate a significant difference in the union rate between groups. Based on these findings, we believe that primary autologous bone grafting of comminuted diaphyseal forearm fractures is not necessary in most cases. If used, its application should be reserved only for fractures where the bone loss exceeds two-thirds of the diameter of the diaphysis. Such fractures are rare; in our study, they accounted for only 5% of all fractures. CONCLUSION: The most important factors found to influence the union rate and time to union were stability of fixation and type of plate used for fixation.

Adult↗

Risk of new vertebral fracture in the year following a fracture.

CONTEXT: Vertebral fractures significantly increase lifetime risk of future fractures, but risk of further vertebral fractures in the period immediately following a vertebral fracture has not been evaluated. OBJECTIVE: To determine the incidence of further vertebral fracture in the year following a vertebral fracture. DESIGN AND SETTING: Analysis of data from 4 large 3-year osteoporosis treatment trials conducted at 373 study centers in North America, Europe, Australia, and New Zealand from November 1993 to April 1998. SUBJECTS: Postmenopausal women who had been randomized to a placebo group and for whom vertebral fracture status was known at entry (n = 2725). MAIN OUTCOME MEASURE: Occurrence of radiographically identified vertebral fracture during the year following an incident vertebral fracture. RESULTS: Subjects were a mean age of 74 years and had a mean of 28 years since menopause. The cumulative incidence of new vertebral fractures in the first year was 6.6%. Presence of 1 or more vertebral fractures at baseline increased risk of sustaining a vertebral fracture by 5-fold during the initial year of the study compared with the incidence in subjects without prevalent vertebral fractures at baseline (relative risk [RR], 5.1; 95% confidence interval [CI], 3.1-8.4; P<.001). Among the 381 participants who developed an incident vertebral fracture, the incidence of a new vertebral fracture in the subsequent year was 19.2% (95% CI, 13.6%-24.8%). This risk was also increased in the presence of prevalent vertebral fractures (RR, 9.3; 95% CI, 1.2-71.6; P =.03). CONCLUSION: Our data indicate that women who develop a vertebral fracture are at substantial risk for additional fracture within the next year.

Aged↗

Alendronate reduces the risk of multiple symptomatic fractures: results from the fracture intervention trial.

OBJECTIVES: To evaluate the effect of alendronate on the occurrence rate of multiple svmptomatic fractures and on the risk of multiple symptomatic fractures (likelihood of having more than one fracture diagnosed because of the symptoms the fractures caused over the study period) among women with osteoporosis. DESIGN: Primary analysis of data from a randomized, placebo-controlled, double-blind trial. SETTING: Eleven community-based clinical research centers. PARTICIPANTS: Subset of women enrolled in the Fracture Intervention Trial: aged 55 to 81 and having at least one morphometric vertebral fracture at baseline (n=2,027) or having no vertebral fracture but meeting prevailing World Health Organization bone mineral density criteria for osteoporosis (T-score < or =2.5 at the femoral neck)(n = 1,631). INTERVENTION: All participants reporting calcium intake of 1,000 mg/day or less received a supplement of 500 mg calcium and 250 IU cholecalciferol. Participants were randomly assigned to placebo or alendronate sodium (5 mg/day for 2 years and 10 mg/day for the remainder of the study). Average total follow-up was 4.3 years. MEASUREMENTS: Symptomatic fractures were diagnosed by personal physicians and confirmed by review of radiological data by an expert committee blinded to treatment assignments. RESULTS: Eighty-six of 1,817 women receiving placebo experienced multiple symptomatic fractures during the follow-up period, compared with 51 of 1,841 receiving alendronate. Reduction of risk for multiple symptomatic fractures combined was 42% (relative risk (RR) = 0.58, 95% confidence interval (CI) = 0.41, 0.81) and for multiple symptomatic vertebral fractures was 84% (RR = 0.16,95% Cl = 0.05, 0.42). Cumulative incidence curves showed divergence after as little as 3 months of treatment, with a statistically significant (P = .044) reduction at 6 months for multiple symptomatic vertebral fractures. When all fractures over the follow-up period were included, the occurrence rates of all symptomatic fractures and symptomatic vertebral fractures were 34% and 63% lower, respectively, with alendronate than with placebo. These reductions were sustained during the follow-up period. All reductions in risk were consistent across predefined subgroups: age (<75 vs > or =75), morphometric vertebral fracture(present vs absent), prior clinical fracture since age 45 (yes vs no), and whether the subject had fallen in the 12 months before randomization. CONCLUSIONS: These data demonstrate that treatment with alendronate reduces the risk of multiple symptomatic fractures during a treatment period averaging 4.3 years. The reductions were consistent across prespecified sub-groups. This effect is evident early in treatment and is sustained.

Aged↗

Different risk profiles for hip fractures and distal forearm fractures: a prospective study.

In a prospective cohort of elderly persons, aged 70 years and over, we examined risk indicators for which data could be easily obtained, to construct risk profiles for hip fractures and distal forearm fractures. Participants lived independently, in apartment houses for the elderly or in homes for the elderly. At baseline, information was obtained in 2578 subjects on age, gender, residence, mobility and the frequency of going outdoors. Mobility was measured using a walking score ranging from 1 (not able to walk independently) to 3 (able to walk independently for a fair distance). During the study period (median duration 3.5 years, maximum 4 years) 106 participants sustained a hip fracture and 60 participants suffered a distal forearm fracture. Women compared with men, adjusted for age, had a higher risk of hip fracture (adjusted relative risk (RR) = 2.4, 95% confidence interval (CI) 1.3-4.3) and distal forearm fracture (RR = 3.7, 95% CI 1.5-9.2). Age, adjusted for gender, was related to hip fractures only: the relative risk of fracture for those in the highest age category (> 85 years) was 9.5 (95% CI 4.3-21.2) compared with those in the lowest age category (70-75 years). Moderately impaired walking ability compared with normal walking ability, adjusted for age and gender, was associated with a higher risk of hip fracture (RR = 1.8, 95% CI 1.2-2.7) but with a lower risk of distal forearm fracture (RR = 0.4, 95% CI 0.2-0.8). The outdoor score, adjusted for age and gender, was associated with distal forearm fractures only: going outdoors less than once a week, compared with three times or more, was associated with a lower risk of fractures (RR = 0.3, 95% CI 0.1-0.9). In those living in homes for the elderly the risk of hip fracture was higher compared with those living independently (RR = 2.4, 95% CI 1.4-4.2), adjusted for age and gender. Risk profiles were constructed using stepwise Cox's proportional-hazards regression. The risk profile predicted probabilities of sustaining a hip fracture in a 4-year period ranging from 0.4% to 25.9%, and of distal forearm fractures ranging from 0.2% to 4.5%, depending on the subject's characteristics as defined by the risk indicators. We conclude that easily obtainable risk indicators can be used in the prediction of fractures and can discriminate among fracture types.

Accidental Falls↗

Knee and shoulder fractures: association of fracture detection and marrow edema on MR images with mechanism of injury.

PURPOSE: To assess the value of magnetic resonance (MR) imaging for enabling the classification of fracture mechanisms and to compare marrow edema caused by compressive forces with that caused by tensile forces. MATERIALS AND METHODS: In 62 knees or shoulders, 78 fractures were identified prospectively on MR images or plain radiographs; compressive or tensile forces were determined retrospectively to have caused impaction or distraction fractures, respectively. Edema was measured on T1-weighted images. Frequencies of fracture detection on MR images or plain radiographs were compared. RESULTS: Forty-nine (63%) and 29 (37%) fractures were attributed to compressive and tensile forces, respectively. Edema measured 31 mm +/- 10 in impaction fractures and 2.5 mm +/- 2.4 in distraction fractures (P < .001). MR images and plain radiographs of 63 fractures were compared. On MR images, distraction fractures, including four of seven Segond fractures, were missed more often than impaction fractures (P < .008). Fractures overlooked on MR images were associated with less edema (P < .003). CONCLUSION: On MR images, impaction fractures demonstrate prominent marrow edema, and distraction fractures demonstrate minimal edema. Impaction fractures are more often missed on plain radiographs, and distraction fractures are more often missed on MR images. Segond fractures should be suspected if MR images show lateral capsular ligamentous injury in the knee; in these cases, evaluation with plain radiography is warranted.

Adult↗

Differences in mechanical response between fractured and non-fractured spines under high-speed impact.

OBJECTIVE: The differences in mechanical response between fractured and non-fractured spines were investigated using a porcine spine impact model. DESIGN: Ten three-vertebrae segments (C3-C5) of porcine spine were subjected to a single impact to study the trauma mechanism. Small steel balls glued to the vertebra and a high-speed camera were used to observe the deformation of vertebral body and disc during impact. After trauma, the episodes of fractured specimens were compared with those of non-fractured specimens. BACKGROUND: Experimental trauma models using the spines of mature animals have rarely been evaluated. Finding a well-controlled, reproducible protocol based on an easily accessible specimen was therefore important. These models will be promising if clinical fractures can be produced. METHODS: All of the specimens were subjected to high-speed flexion-compression loading. The impact to the load cell and the operation of the high-speed camera were synchronized. The force-time sequence and disc deformation curve were recorded. The results from fractured and non-fractured spines were then compared. RESULTS: There were three burst fractures, four pedicle fractures, one facet joint fracture, one compression fracture and one fracture-dislocation. All of these fractures were similar to clinical fractures. Compared to non-fractured specimens, the fractured specimens had lower maximal force and longer reaction time. The characteristic steep decline in the middle region of the force-time curve was also consistently noted in the fractured spines. CONCLUSIONS: Spinal fractures similar to those found clinically were successfully produced in porcine spines. The characteristics of the mechanical responses observed should be helpful in the interpretation of events which occur during impact.

Journal Article↗

Conservative versus operative treatment for extracapsular hip fractures.

BACKGROUND: Until operative treatment involving the use of various implants was introduced in the 1950s, hip fractures were managed using conservative methods based on traction and bed rest. OBJECTIVES: To compare conservative with operative treatment for extracapsular fractures of the proximal femur (hip) in adults. SEARCH STRATEGY: We searched the Cochrane Musculoskeletal Injuries Group trials register and bibliographies of published papers, and contacted trialists. Date of the most recent search: August 1999. SELECTION CRITERIA: Randomised and quasi-randomised trials comparing these two treatment methods in adults with hip fracture. Outcomes sought fell into four categories: a) fracture fixation complications, b) post-operative or clinical complications, c) final outcome measures including mortality and d) anatomical restoration. DATA COLLECTION AND ANALYSIS: Both reviewers independently assessed trial quality, by use of an eleven item scale, and extracted data. Additional information was sought from trialists. Comparable groups of trials were subgrouped by implant type (fixed nail plate or sliding hip screw) and where appropriate, data were pooled using the fixed effects model. MAIN RESULTS: The four randomised trials identified involved only 402 elderly patients. These tested a variety of surgical techniques and implant devices and only one trial involving 106 patients can be considered to test current practice. In this trial, no differences were found in medical complications, mortality and long-term pain. However, operative treatment was more likely to result in the fracture healing without leg shortening, a shorter hospital stay and a statistically non-significant increase in the return of patients back to their original residence. REVIEWER'S CONCLUSIONS: The limited available evidence from randomised trials does not suggest major differences in outcome between conservative and operative management programmes for extracapsular femoral fractures, but operative treatment appears to be associated with a reduced length of hospital stay and improved rehabilitation. However these results are derived mainly from one study. Conservative treatment will be acceptable where modern surgical facilities are unavailable, and will result in a reduction in complications associated with surgery, but rehabilitation is likely to be slower and limb deformity more common. Although further randomised trials would provide more robust data, they may be difficult to mount.

Adult↗

Fractures of the facial skeleton in Reykjavik, Iceland, 1970-1979. (I) Mandibular fracture in 238 hospitalized patients, 1970-79.

Almost all facial fracture surgery in Iceland is performed in the hospitals in Reykjavik. Some information about the treatment of facial fractures at the City Hospital was published in the Icelandic Medical Journal in 1978. Apparently, no other research on facial fractures has been done here. This article, therefore, deals with 238 patients who sustained mandibular fracture in 1970-79. There was a marked increase in the incidence of fracture of the mandible during the research period, especially in 1974 and 1975. The total of fractures in women, 33%, was higher than in other countries. Assault was a major factor for both sexes. Especially interesting was the fact that beating and assault accounted for 46% of all mandibular fractures in women. Multiple fractures from beatings were commoner here in Iceland than in other countries. For the group as a whole, 52% of the patients had multiple fractures of the mandible. The incidence of fractures among those between 16 and 20 years of age was proportionately higher here than elsewhere due to car accidents and assault and battery. The types of fracture and area of occurrence in the mandible varied with the cause. Fractures of the corpus and angulus mandibulae were proportionately common, both because of the number of assault cases and also because the proportion of those who were edentulous, 19%, was higher than in other countries. Among the young, fracture of the processus condylaris was commonest, and up to age 30, when fracture of the corpus mandibulae was more likely. Fracture of the processus coronoideus never occurred alone. In all cases, it was accompanied by a fracture in another area of the mandible or zygomatic fracture, and this result is in accordance with the idea that the processus coronoideus almost never breaks alone, because of its location, its strength, and the attachment of the muscles.

Adolescent↗

Osteotomy, compression and reaming techniques for internal fixation of extracapsular hip fractures.

BACKGROUND: Many different surgical techniques, such as osteotomy, have been used in internal fixation of extracapsular hip fractures. OBJECTIVES: To compare different aspects of surgical technique in internal fixation of extracapsular hip fractures that have been subjected to randomised trials in adults. SEARCH STRATEGY: The Cochrane Musculoskeletal Injuries Group trials register, Medline, CENTRAL and reference lists of relevant articles were searched. Date of the most recent search: March 1999. SELECTION CRITERIA: All randomised and quasi-randomised trials investigating operative technique for the treatment of extracapsular hip fractures. DATA COLLECTION AND ANALYSIS: Two reviewers independently assessed trial quality, by use of an eleven item check list, and extracted data. Wherever possible and appropriate, results of outcome measures were pooled. MAIN RESULTS: All eight included trials were of only modest methodological quality. One trial of 65 patients undergoing fixation with a fixed nail-plate compared osteotomy versus anatomical reduction. There was a tendency to a reduced fixation failure rate after osteotomy. Four trials involving 465 patients undergoing fixation with a sliding hip screw (SHS) compared osteotomy versus anatomical reduction. Osteotomy was associated with an increased operative blood loss and length of surgery. There was also a tendency to an increased length of hospital stay and limb shortening for osteotomy. One trial of 200 patients undergoing fixation with a SHS compared results with or without compression across the fracture site. The only significant difference in outcomes was increased varus deformity in those fractures treated with compression. One trial of 19 patients reported reduced temperatures generated by a modified method of reaming the femoral head. Another study used oesophageal ultrasound to demonstrate reduced bone marrow intravascular embolism when a Gamma nail was inserted in 50 patients with, rather than without, a distal pressure venting hole in the femur. REVIEWER'S CONCLUSIONS: There is inadequate evidence to determine if any benefits exist for the routine use of osteotomy in conjunction with a SHS for the internal fixation of an unstable trochanteric femoral fracture. Osteotomy may be relevant if used in conjunction with a fixed nail plate. Based on the evidence of one trial only, there is inadequate evidence to support the application of compression across the fracture site of a trochanteric fracture during SHS fixation. Inadequate information exists for different reaming techniques during SHS or Gamma nail fixation to make definite conclusions.

Fracture Fixation, Internal↗

Surgical interventions for treating distal radial fractures in adults.

BACKGROUND: Fracture of the distal radius is a common clinical problem, particularly in older white women with osteoporosis. OBJECTIVES: To determine when, and if so what type of, surgical intervention is the most appropriate treatment for fractures of the distal radius in adults. SEARCH STRATEGY: We searched the Cochrane Musculoskeletal Injuries Group's specialised register, Cochrane Controlled Trials Register (The Cochrane Library Issue 4, 2000), MEDLINE, EMBASE, CINAHL, the National Research Register (Issues 2 to 4, 2000) and bibliographies of trial reports. The full search was concluded in December 2000. SELECTION CRITERIA: Randomised or quasi-randomised clinical trials involving skeletally mature patients with a fracture of the distal radius, which compared surgical treatment with conservative treatment, different types of surgical intervention or the duration of immobilisation after surgery. The main categories of surgical intervention were external fixation, percutaneous pinning, open reduction and internal fixation, and the insertion of bone scaffolding materials. DATA COLLECTION AND ANALYSIS: All trials, meeting the selection criteria, were independently assessed by both reviewers for methodological quality. Data were extracted for anatomical, functional and clinical outcomes (including complications). The trials were grouped into categories relating to the main comparisons and types of surgical intervention. Despite clear heterogeneity in the characteristics of comparable trials, pooling of data was undertaken where possible and appropriate. MAIN RESULTS: Forty four trials, examining 23 treatment comparisons, met the inclusion criteria of this review. These involved a total of 3193 mainly female and older patients with generally displaced, often comminuted and potentially or evidently unstable fractures. Half of the trials compared surgery with plaster cast immobilisation. Summarising the outcomes was hampered by the variation between the studies in participant characteristics, interventions, quality of trial methodology and reporting, and methods of outcome measurement. Surgical methods were usually associated with better anatomical appearance after fracture healing, but there was inadequate evidence to confirm that these had resulted in better functional and clinical outcomes for the patients. REVIEWER'S CONCLUSIONS: The 44 randomised trials do not provide robust evidence for most of the decisions necessary in the management of these fractures. Although, in particular, there is some evidence to support the use of external fixation or percutaneous pinning, their precise role and methods are not established. It is also unclear whether surgical intervention of most fracture types will produce consistently better long-term outcomes. There is a need for good quality evidence for the surgical management of these fractures.

Adult↗

Second generation intramedullary nailing of subtrochanteric femur fractures: a biomechanical study of fracture site motion.

OBJECTIVES: To compare fracture site motion between different second-generation intramedullary nails used to fix subtrochanteric fractures of the proximal femur with and without femoral neck fractures. DESIGN: Nondestructive mechanical testing of four types of femoral intramedullary nails was undertaken to evaluate fracture site motion using a model that simulated single-leg and double-leg stance. METHODS: Three types of reconstruction nails (the Russell-Taylor Delta [Smith & Nephew, Memphis, TN], the Uniflex [Biomet, Warsaw, IN], Alta CFX [Howmedica-Osteonics, Rutherford, NJ]) and the Long Gamma nail (Howmedica-Osteonics, Rutherford, NJ), each measuring 11 x 380 mm, were inserted in fiberglass composite femurs. Four fracture patterns were studied (transverse subtrochanteric, subtrochanteric with posteromedial wedge comminution, subtrochanteric with one-centimeter gap, and a one-centimeter gap with a subcapital neck fracture). Single-and double-leg stance loading was simulated using a servohydraulic load frame (MTS, Eden Prairie, MN). Two-way analysis of variance and post hoc t tests were used to determine any statistically significant differences between groups. RESULTS: In single-leg stance there were significant differences in coronal plane rotation, shear, and axial translation across the subtrochanteric fracture site between the different nail types and the different fracture patterns (p < 0.001). In double-leg stance there were significant differences in coronal plane rotation and femoral head vertical motion between the different nail types and the different fracture patterns (p < 0.001), and there were significant differences in shear and axial translation between the different fracture patterns (p < 0.001) but not the different nail types (p > 0.05). CONCLUSIONS: For simple, well-reduced fractures the choice of implant is not critical. As fracture severity increased (comminution, gap, and combined neck fracture), the choice of implant, particularly with reference to proximal nail dimensions and implant materials, was a significant factor in reducing fracture site motion. Therefore, our laboratory data suggest that when subtrochanteric fractures are unstable (e.g., comminution, segmental bone loss) and early weight bearing is desirable, the choice of implant is critical and should be restricted to implants that allow minimal fracture site motion (Long Gamma and Russell-Taylor).

Biomechanical Phenomena↗

The effect of muscle flap transposition to the fracture site on TNFalpha levels during fracture healing.

The trauma and sepsis that follow open fractures and wounds may lead to the production of various cytokines. Understanding wound healing requires a direct knowledge of the specific cytokines and the respective wound fluid levels that are present at the wound site. An animal model was designed that mimics the open fracture and the clinical repair of the human, high-energy open fracture. Canine right tibiae were fractured with a penetrating, captive-bolt device, then repaired in a standard clinical fashion using an interlocking intramedullary nail. Before primary wound closure, microdialysis probes were placed at the fracture site and in a muscle located at a contralateral site. Canines received one of the following experimental protocols: (1) tibial fracture (n = 5); (2) tibial fracture plus Staphylococcus aureus inoculation at the fracture site (n = 5); and (3) tibial fracture, S. aureus inoculation, and a rotational gastrocnemius muscle flap (n = 5). Microdialysis fluid samples were collected intermittently for 7 days. Tumor necrosis factor alpha (TNFalpha) levels at the fracture site were significantly elevated 3 to 34-fold (p<0.02), as compared with respective serum levels at all time points for all treatment groups. Fracture site TNFalpha levels were elevated (p<0.02) in days 1 through 6, as compared with the baseline and contralateral in all treatment groups. At days 1 through 6, the TNFalpha levels of the muscle flap group fracture site were significantly decreased by approximately 50 percent (p<0.05), as compared with the fractures without muscle flaps and regardless of additional S. aureus inoculation. On day 7, fracture site TNFalpha levels in all animal groups were similar, yet remained well above those of baseline TNFalpha. These results demonstrate that S. aureus does not further elevate TNFalpha levels in the presence of an open fracture and that a muscle flap reduces pro-inflammatory TNFalpha levels during early wound healing. This experimental model allows for the characterization of specific biological signals and cellular pathways that are influenced by bacterial infection and surgical closure. These data provide a scientific framework on which to judge or validate therapeutic regimens for open-fracture wound healing.

Animals↗