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The validity of self-reported fractures among Danish female nurses: comparison with fractures registered in the Danish National Hospital Register.

BACKGROUND: The authors compared self-reported non-spine fractures obtained from a cohort of Danish female nurses with fracture diagnoses registered in the Danish National Hospital Register (DNHR). METHOD: The self-reported fracture history was obtained from a questionnaire and was related to fracture information registered with the DNHR by means of the unique person identification code of Danish citizens. A total of 166 self-reported hip fractures, 391 self-reported wrist fractures, and 121 self-reported upper arm fractures were available for the comparison. The self-reported fractures were initially compared with the anatomic specific fracture diagnoses registered in the DNHR. Second, the comparison also included fracture diagnoses of adjacent skeletal sites (unspecific fracture diagnoses). RESULTS: The positive predictive value of a positive report of hip fracture was 89%. Inclusion of unspecific registered hip fractures increased the positive predictive value to 94%. The same figures for wrist fractures were 75% and 84%, respectively, and for upper arm fractures 54% and 83%, respectively. The predictive value of a negative report of hip fracture was 99.5%. The fracture year was correctly reported in 76% of the hip fracture cases, 81% of the wrist fracture cases, and 82% of the upper arm fracture cases. Predictors of false-positive report of fractures were young age ( < 60 years), report of indoor falls in the previous year, and use of hormone replacement therapy (HRT). CONCLUSION: The authors conclude that self-report of hip, wrist, or upper arm fractures among Danish nurses is relatively accurate but varies by the site of fracture. False positive reports of fracture introduce only modest bias fracture risk estimates and tend to dilute the association between exposures and fracture.

Aged↗

Treatment with alendronate prevents fractures in women at highest risk: results from the Fracture Intervention Trial.

BACKGROUND: The efficacy of antiresorptive therapy in preventing fractures in women at highest fracture risk, such as very elderly women or those with severe osteoporosis, is uncertain. PARTICIPANTS AND METHODS: Using data from a double-blind, randomized, placebo-controlled clinical trial that enrolled 2027 postmenopausal women aged 55 to 81 years with low femoral neck bone mineral density (BMD) and existing vertebral fractures, we examined the consistency of the effect of treatment with alendronate sodium in preventing fractures within a priori-specified risk subgroups defined at baseline by age, bone density, number of preexisting vertebral fractures, and history of postmenopausal fracture. The women were randomized to oral administration of alendronate or placebo and followed up for an average of 2.9 years. The initial dose of alendronate sodium was 5 mg/d; the dosage was increased from 5 to 10 mg/d at 24 months. New vertebral fractures, the primary end point of this arm of the trial, were defined by morphometry as a decrease of 20% and at least 4 mm in any vertebral height between baseline and a follow-up radiograph at 36 months. Incident clinical fractures, the secondary end point, included nonspine and clinical (symptomatic) vertebral fractures. All clinical fractures were confirmed with x-ray film reports or, in the case of clinical vertebral fractures, x-ray films. RESULTS: Overall, there was a 47% significant reduction in risk of new vertebral fractures in the alendronate group compared with the placebo group. The reduction in risk of new vertebral fracture was consistent across fracture risk categories including age (relative risk [RR], 0.49 in women < 75 years compared with 0.62 in those > or = 75 years), BMD (RR, 0.54 in women with a femoral neck BMD < 0.59 g/cm2 [median] compared with 0.53 in those with a BMD > or = 0.59 g/cm2), and number of preexisting vertebral fractures (RR, 0.58 in women with 1 vertebral fracture compared with 0.52 in those with > or = 2). The overall significant 28% reduction in risk of incident clinical fractures in the alendronate group compared with the placebo group was also observed within these subgroups. Compared with the number of lower-risk women, a similar or smaller number of high-risk women needed to be treated to prevent 1 fracture. For example, 8 women aged 75 years or older compared with 9 women younger than 75 years, or 4 women with 2 or more existing vertebral fractures compared with 16 women with 1 existing vertebral fracture, needed to be treated with alendronate for 5 years to prevent 1 new vertebral fracture. CONCLUSIONS: Alendronate effectively reduces fracture risk in postmenopausal women with vertebral fractures and low BMD, including those women at highest risk because of advanced age or severe osteoporosis. Since the risk reductions observed with alendronate treatment were consistent within fracture risk categories, more fractures were prevented by treating women at highest risk.

Administration, Oral↗

Limb fractures in elderly men as indicators of subsequent fracture risk.

BACKGROUND: Whether limb fracture in elderly men predicts future fracture is unknown. METHODS: Electronic health records were examined to determine fracture incidence among men 60 years or older who were members of a large health maintenance organization, experienced no fracture in the past 2 years, and experienced an ankle, hip, humerus, or wrist fracture between July 1, 1997, and August 31, 2001. Proportional hazards models were used to compare risk of new fracture (ankle, hip, humerus, or wrist) between groups. Recurrent fractures of the same type were excluded from analysis. RESULTS: During the follow-up period (mean duration, 2.4 years), 0.5% of the control subjects without fractures experienced a subsequent ankle fracture; 0.6%, a hip fracture; 0.2%, a humerus fracture; and 0.4%, a wrist fracture. A limb fracture was about 4 times more likely to occur in persons who experienced a previous humerus fracture (relative risk, 3.9; 95% confidence interval, 2.5-6.0), about 3 times more likely to occur in persons who experienced a previous hip fracture (relative risk, 2.8; 95% confidence interval, 1.7-4.5), and about 2 times more likely to occur in persons who experienced a previous wrist fracture (relative risk, 2.2; 95% confidence interval, 1.4-3.5) than in controls. In contrast, persons who experienced a previous ankle fracture had no greater risk of subsequent fracture than nonfracture controls (relative risk, 1.0; 95% confidence interval, 0.5-1.9). CONCLUSIONS: Among men 60 years or older, a recent hip, humerus, or wrist fracture is a statistically and clinically significant predictor of future limb fracture risk. An increased risk of future fracture is greatest after a humerus fracture and is lowest after a wrist fracture; however, among elderly men, a previous ankle fracture is not an indicator of future fracture risk.

Aged↗

Comparison of biochemical markers of bone turnover and bone mineral density between hip fracture and vertebral fracture.

Bone density and the biochemical markers of bone turnover were compared between 26 hip-fracture patients and 41 vertebral-fracture patients after age adjustment to investigate whether or not type of osteoporosis differs between hip fracture and vertebral fracture. C-Terminal propepides of type I collagen (PIPC) was lower in hip fracture than vertebral fracture. The other bone formation markers (bone-specific alkaline phosphatase [ALP], osteocalcin) tended to be lower, and bone resorption markers (deoxypyridinoline, C-telopeptide crosslinking of type I collagen [CTX] tended to be higher in hip fracture compared to vertebral fracture. Mean of Z-scores of spine bone mineral density (BMD) in hip fracture and vertebral fracture were -0.461 and -0.919, respectively. Mean of Z-scores of femoral neck BMD in hip fracture and vertebral fracture were -0.994 and -0.361, respectively. All Z-scores were negative values, which means reduction of BMD compared to decade-matched controls. Z-scores of bone formation markers, such as bone-specific ALP, osteocalcin, and PIPC, were positive values in vertebral fracture, which means an increase against decade-matched controls, whereas those were negative values in hip fracture. Z-scores of bone resorption markers, such as deoxypyridinoline and CTX, were greater in hip fracture than in vertebral fracture. To express bone balance between formation and resorption in hip fracture and vertebral fracture, we calculated an uncoupling status index (USI) by the values of biochemical markers. USI of hip fracture showed a great negative value (-1.29), which indicates excess of bone resorption over formation, whereas that of vertebral fracture showed a small positive value (0.23). In conclusion, bone formation markers increase in vertebral fractures, but decrease in hip fracture. Bone resorption markers increase in both fracture, but greater increase in hip fracture.

Aged↗

Fracture risk following an osteoporotic fracture.

The aim of this study was to examine the pattern of fracture risk following a prior fracture at the spine, shoulder or hip. We studied 1918 patients with fractures at these sites identified from the Department of Radiology in Malmo who were followed for 5 years. Poisson regression was used to compute fracture rates immediately after the initial fracture and at 5 years thereafter in men and women aged 60 or 80 years. Immediate fracture risk was higher than that of the general population, more markedly so at the age of 60 than at 80 years. At the age of 60 years, the risk of hip, forearm and spine fractures were significantly increased following a prior spine, hip or shoulder fracture in men. A similar pattern was seen in women, except that the increase in risk of forearm fracture following a spine or hip fracture was not statistically significant. The incidence of further fractures at the shoulder, spine or hip fell with time after the first fracture, a fall that was significant for all fractures after a shoulder fracture, hip fracture after a spine fracture, and hip and spine fractures after a hip fracture. We conclude that the risk of a subsequent fracture immediately after an osteoporotic fracture is highest immediately after the event. This provides a rationale for very early intervention immediately after fractures to avoid recurrent fractures.

Age Factors↗

Septal fracture in simple nasal bone fracture.

SUMMARY: Nasal bone fractures are the most common type of facial fractures. Previous studies have shown that most nasal fractures involve the septum, which can provide an obstacle to the successful reduction of nasal bone fractures. In particular, septal fractures in combination with simple nasal bone fractures are usually unrecognized and untreated at the time of injury. Furthermore, systemized treatment protocols and diagnostic tools for septal fractures in the case of simple nasal bone fracture have not previously been presented. In this study, the clinical findings of septal fractures in cases of simple nasal bone fracture were correlated with symptoms, signs, and computed tomography findings and assessed statistically. The patterns of septal fractures in simple nasal bone fractures were assessed by direct vision via hemitransfixion incision. Of the 52 patients with simple nasal bone fracture who presented over a 3-year period and were included in this study, 10 were female and 42 were male, with an average age of 33.8 years (age range, 18 to 61 years). Fifty of these patients (96.2 percent) showed septal fractures, and septoplasty or submucosal resection was performed on 41 patients (78.8 percent) who manifested severe septal fractures of perioperative septal grade 3 or higher. Closed reduction of the nasal bone fracture only was performed on the remaining 11 patients. Among the signs evident at physical examination, mucosal tearing was found to be statistically significant for septal fracture. Computed tomography was found to be very helpful in diagnosing septal fracture but could not predict its severity accurately (Spearman correlation coefficient between computed tomography septal grading and perioperative septal grading, 33.5 percent). Therefore, computed tomography could not be used as a definitive diagnostic modality for septal fractures in terms of deciding whether septoplasty or submucous resection was needed. It is evident that septal fractures are frequent in simple nasal bone fractures that are not combined with other facial bone fractures. This study confirms that there are differences between radiologic findings and perioperative findings. To reduce the incidence of posttraumatic nasal deformity, meticulous physical examinations with subsequent septoplasty or submucosal resection are needed in the treatment of simple nasal bone fracture.

Adolescent↗

Implant-related fractures of the femur following hip fracture surgery.

BACKGROUND: Most hip fractures are treated surgically, with use of either internal fixation or prosthetic replacement of the femoral head. The presence of these implants increases the risk of a later femoral fracture in susceptible osteoporotic patients. The purpose of this study was to analyze the incidence of and risk factors for implant-related fractures of the femur after previous hip fracture surgery. METHODS: Over a ten-year period from January 1988 to December 1997, 6230 patients (median age, eighty-two years; male:female ratio, 1247:4983) who sustained a total of 6696 hip fractures were admitted to the Edinburgh Orthopaedic Trauma Unit. Demographic information on the patients and details of the original treatment of the hip fracture were prospectively coded and entered into a trauma database. All subsequent readmissions due to a femoral fracture related to the implant were prospectively audited and extracted for the purposes of this study. RESULTS: One hundred and forty-one patients sustained an ipsilateral fracture of the femur at a median of twenty-four weeks following the original hip fracture surgery. Survivorship analysis of the hip fracture population revealed an overall rate of subsequent femoral fracture of 2.9% at five years, which increased to 5.1% at ten years. The median age and gender distribution of the patients who sustained a subsequent femoral fracture were similar to those of the hip fracture population as a whole. Two-thirds of the fractures propagated from the tip of the implant. Analysis of the subsequent fractures according to the type of implant used to treat the original fracture revealed considerable differences in incidence. The incidence was relatively high in the patients initially treated with a Gamma nail (18.74 fractures per 1000 person-years) or a cementless hemiarthroplasty (11.72 per 1000 person-years) and was relatively low in those treated with a compression hip screw (4.46 per 1000 person-years), cannulated screws (4.50 per 1000 person-years), or a primary arthroplasty with cement (6.2 per 1000 person-years). The highest incidence of fracture was seen in the patients who had required an arthroplasty with cement as a revision procedure following failure of a primary implant (22.39 per 1000 person-years). CONCLUSIONS: Implant-related fractures following hip fracture surgery are more common than has previously been appreciated. The risk of later ipsilateral femoral fracture is increased by the use of a Gamma nail or a cementless hemiarthroplasty to treat the original hip fracture.

Aged↗

Pure orbital blowout fracture: new concepts and importance of medial orbital blowout fracture.

Pure orbital blowout fracture first occurs at the weakest point of the orbital wall. Although the medial orbital wall theoretically should be involved more frequently than the orbital floor, the orbital floor has been reported as the most common site of pure orbital blowout fractures. A total of 82 orbits in 76 patients with pure orbital blowout fracture were evaluated with computed tomographic scans taken on all patients with any suspicious clinical evidence, including nasal fracture. Isolated medial wall fracture was most common (55 percent), followed by medial and inferior wall fracture (27 percent). The most common facial fracture associated with medial wall fracture was nasal fracture (51 percent), not inferior wall fracture (33 percent). This finding suggests that the force causing nasal fracture is an important causative factor of pure medial wall fracture as the buckling force from the medial orbital rim. Of patients with medial wall fractures, 25 percent had diplopia and 40 percent had enophthalmos. On plain radiographs, diagnostic signs were found in 79 percent of medial wall fractures and in 95 percent of inferior wall fractures. On computed tomographic scans, late enophthalmos was expected in 76 percent of medial wall fractures. Therefore, the medial orbital blowout fracture may be an important cause of late enophthalmos, because it has a high incidence of occurrence, a low diagnostic rate, and a high severity of defect. Among the causes of limitation of ocular motility, muscle traction of the connective septa and direct muscle injury were found frequently, but true incarceration of the muscle was extremely rare in all fractures. The medial and inferior orbital walls are clearly demarcated by the bony buttress, which is an important structure supporting these orbital walls. Its buttress was closely correlated with the fracture of these orbital walls. Most orbital blowout fractures without collapse of the bony buttress had a trapdoor fracture with or without small fragments of punched-out fracture.

Adolescent↗

Subcapital fractures of the femoral neck: prevalence and cause of radiographic appearance simulating pathologic fracture.

OBJECTIVE: Subcapital fractures of the femoral neck are common in elderly persons who have osteoporosis. Occasionally, radiographs of the hip in these patients show a radiolucency in the superolateral, subcapital region of the femoral neck that mimics the features of a pathologic fracture. Our purpose was to determine the prevalence of this finding and the anatomic variations of fracture alignment that cause this appearance. MATERIALS AND METHODS: All subcapital nonpathologic hip fractures (n = 111) that occurred at our institution during a 5-year period were reviewed. Radiographs were available in 100 of these cases. Review of intraoperative biopsy specimens, available in 69 patients, revealed no evidence of neoplasm in any case. In the other patients, follow-up radiographs, clinical evaluation, and pathology reports were used to exclude neoplastic involvement. Preoperative radiographs were analyzed for the presence of findings suggesting a pathologic fracture. Fracture configuration was classified by using the Garden staging system. Cadaveric femurs (n = 6) were fractured and studied radiographically. RESULTS: Seventeen (17%) of the 100 subcapital fractures had a radiographic appearance similar to that of a pathologic fracture. This finding occurred only with Garden stage III fractures (n = 7, 32% of Garden stage III fractures) or Garden stage IV fractures (n = 10, 24% of Garden stage IV fractures). Study of the cadaveric femoral specimens showed that the radiographic appearance simulating a pathologic fracture was primarily caused by external rotation of the distal fracture fragment and was accentuated by displacement between fracture fragments. CONCLUSION: The radiographic appearance of subcapital fractures of the femoral neck unrelated to neoplasm is often similar to that of pathologic fractures. This appearance is caused primarily by rotation of the fracture fragments, and the finding is accentuated by displacement. Recognition of the appearance of subcapital hip fractures mimicking pathologic fractures and knowledge of the cause of this finding are important for prescribing appropriate treatment.

Adolescent↗

Weight change and fractures in older women. Study of Osteoporotic Fractures Research Group.

BACKGROUND: The effect of change in weight in later years on risk of osteoporotic fractures in uncertain. Prior studies have assessed the relationship between weight change and risk of hip fracture only and have not examined whether the association between weight loss and increased risk of hip fracture is because of voluntary or involuntary weight loss. OBJECTIVES: To determine the association between weight change in later years and the risk of fractures in elderly women and to assess the effect of weight loss intention on this relationship. METHODS: The association between weight change and fracture risk was assessed in 6754 ambulatory, non-black women aged 65 years or older enrolled in the Study of Osteoporotic Fractures who had measurements of weight performed at both the baseline and fourth examinations (mean, 5.7 years between examinations). These 6754 women were followed up for all incident nonspine fractures and frailty fractures (defined as fractures of the proximal femur, pelvis, and proximal humerus) occurring after the fourth examination (average follow-up, 19.5 months). All incident fractures were confirmed by radiographic report. RESULTS: During an average of 19.5 months after the fourth examination, 264 women (4%) had at least 1 nonspine fracture, including 83 women who suffered frailty fractures. After adjustment for age, women who lost weight between the baseline and fourth examinations had an increased risk of subsequent nonspine fracture (relative risk [RR] per 10% decrease in weight, 1.32; 95% confidence interval [CI], 1.11-1.55). This observed increase in the risk of nonspine fracture was entirely caused by an increase in the risk of frailty fracture (age-adjusted RR per 10% decrease in weight, 1.86; 95% CI, 1.42-2.43). Weight change was not significantly related to other types of nonspine fractures (age-adjusted RR per 10% decrease in weight, 1.09; 95% CI, 0.90-1.33). Further adjustment for cigarette smoking, physical activity, estrogen use, medical conditions, health status, body weight, femoral neck bone mass, and rate of change in calcaneal bone mass did not substantially alter the association between weight change and frailty fracture (multivariate RR per 10% decrease in weight 1.68; 95% CI, 1.17-2.41). Weight change was an even stronger predictor of risk of frailty fracture in those women who were not trying to lose weight (multivariate RR per 10% decrease in weight, 1.81; 95% CI, 1.26-2.61). CONCLUSIONS: Involuntary weight loss in later years substantially increases the risk of frailty fracture including hip fracture in elderly women. Weight change is not related to risk of other nonspine fractures in older women.

Aged↗

The age dependent relationship between facial fractures and skull fractures.

OBJECTIVE: To provide clinical evidence to support the age dependent relationship between facial fractures and skull fractures. DESIGN: Retrospective chart review of all children and adults admitted with combined facial fractures and skull fractures and skull fractures alone between January 1991 and November 1997. SETTING: The Albany Medical Center Hospital, a tertiary level-one trauma center. PATIENTS: Two hundred and one children, ages 1 month to 17 years, with skull fractures (frontal, parietal, or temporal), and 41 children with concurrent facial fractures were included in this study. One hundred and thirty-nine adults, ages 18-90 years, with skull fractures, and 70 adults with concurrent facial fractures were also studied. OUTCOME MEASURES: The gender, age, skull fracture, facial fracture, Glasgow coma score (GCS), mechanism of injury, and outcome of all patients admitted with frontal, parietal, or temporal fractures with or without facial fractures. RESULTS: There are a significantly greater (P < 0.001) number of facial fractures associated with skull fractures among adults as compared to children. Moreover, there is an exponential rise in facial fractures associated with skull fractures between infancy and adolescence. The GCS of children with combined facial and skull fractures is significantly lower than in those with skull fractures only (P < 0.001). CONCLUSION: The spectrum of craniofacial injuries is related to the specific developmental stage of the craniofacial skeleton. This is demonstrated by the variable pattern of combined facial and skull fractures observed clinically in children and adults.

Accidents, Traffic↗

Vertebral fractures predict subsequent fractures.

This population-based study documents an increase in most types of fractures following the occurrence of a clinically recognized vertebral fracture among 820 Rochester, Minnesota, residents. During 4349 person-years of follow-up, 896 new fractures were observed. Relative to incidence rates in the community, there was a 2.8-fold increase in the risk of any fracture, which was greater in men (standardized incidence ratio (SIR), 4.2; 95% CI, 3.2-5.3) than women (SIR, 2.7; 95% CI, 2.4-3.0). The estimated cumulative incidence of any fracture after 10 years was 70%. The greatest increase in risk was for subsequent fractures of the axial skeleton, in particular a 12.6-fold increase (95% CI, 11-14) in additional vertebral fractures. There was a lesser increase in most limb fractures, including a 2.3-fold increase (95% CI, 1.8-2.9) in hip fractures and a 1.6-fold increase (95% CI, 1.01-2.4) in distal forearm fractures. There was a slightly greater association with distal forearm fractures among those whose first vertebral fracture occurred before age 70 years but a similar relationship with hip fractures, including cervical and intertrochanteric hip fractures separately, regardless of age at the initial vertebral fracture. There was also an equivalent increase in subsequent fracture risk whether the initial vertebral fracture was attributed to severe or moderate trauma. These data show that vertebral fractures represent an important risk factor for fractures in general, not just those of the spine and hip.

Adult↗

Fracture patterns in children. Analysis of 8,682 fractures with special reference to incidence, etiology and secular changes in a Swedish urban population 1950-1979.

Age, sex, type of fracture and the circumstances causing the injury were studied in altogether 8,682 fractures in children, aged 0 - 16, which had occurred 1950, 1955, 1960, 1965, 1970 and 1975 - 1979. For studies of incidence, the years 1975 - 1979 were chosen and for secular trend studies 1950, 1955, 1960, 1965, 1970 and 1975 - 1979. The following conclusions may be drawn: 1. The risk of fracture increased with age up to age 11 - 12 in girls and 13 - 14 in boys. 2. The accumulated risk of fracture was 27 per cent in girls and 42 per cent in boys. 3. Fractures were more common in boys of all age groups. 4. Over the last three decades the risk of fracture was doubled in boys as well as in girls. 5. Over the years more and more fractures were caused by slight trauma whereas the more severe trauma - even if increasing somewhat in risk - contributed a smaller fraction of the injuries. 6. For the various types of fracture the pattern of change could differ - some increased in incidence, whereas some remained unchanged or even decreased. 7. All types of trauma - horse riding accidents excluded - were more frequent in boys. 8. The most commonly fractured region was the distal end of the forearm followed by the phalanges of the hand and the bones of the carpal-metacarpal region. 9. Playing, sports and traffic, in that order contributed 24, 21 and 12 per cent of those fractures in which the circumstances of the accident could be analysed. 10. Traffic accidents increased with one third in boys as well as in girls. 11. The passive participants in traffic - pedestrians and passengers in motor vehicles - were not more frequently injured during the latter part of the period under observation - a tendency of increase in girls was compensated for by a decrease in boys. 12. Sports and various playing activities as a cause of fracture increased with a factor of five. 13. In the upper limb, the left side was most frequently fractured. 14. The occurrence of fractures varied with the seasons with peak values in May and August and low values in July and December. 15. No fracture type in children could completely meet the criteria of a fragility fracture such as seen in old age. 16. Sustaining one fracture carried an increased risk of an additional fracture especially in the very young children. 17. Fractures not requiring reduction increased the most over the years. 18. The subset of children with various diseases suspected to interfere with skeletal development carried an increased risk of fracture. 19. Some age-related fracture patterns could be traced but they were not very distinct.

Accidents↗

A computer study of fracture mobility and strain on biodegradable plates used for fixation of mandibular fractures.

PURPOSE: This computer-based study was done to determine whether a small biodegradable plate system was suitable for internal fixation of mandibular fractures. MATERIALS AND METHODS: In a three-dimensional computer model of the mandible, fracture mobility and plate strain were calculated for bite forces applied on 13 bite points on the dental arch. Simulated solitary angle, body, and symphysis fractures were fixed with one titanium miniplate, one polylactide (PLA) midiplate, one PLA maxiplate, or two PLA midiplates. Fractures with and without interfragmentary bone contact were studied. In the case of fractures with bone contact, the loads were transmitted through the fracture surfaces and the plate; when there was no contact, the loads were transmitted only through the plate. Maximum fracture mobility was set at 150 microm. Maximum plate strain was set at the yield strain of PLA and titanium. RESULTS: For fractures without interfragmentary bone contact, all plate fixations resulted in a fracture mobility and plate strain higher than the limits set, except for the symphysis fracture fixed with two PLA midiplates. Interfragmentary bone contact significantly reduced fracture mobility and plate strain. For the angle fracture with bone contact, all PLA plate fixations resulted in a fracture mobility above the limit, whereas the titanium miniplate fixation had a fracture mobility below the limit. For the body and symphysis fracture with bone contact, only double PLA midiplate fixation resulted in a fracture mobility below the limit. CONCLUSIONS: From a mechanical point of view, based on the computer model, small PLA plates are only suitable for symphysis fractures with and without interfragmentary bone contact and for body fractures with interfragmentary contact. However, fixation with two PLA plates is always necessary to provide sufficient reduction of fracture mobility and plate strain.

Absorbable Implants↗

Differences in risk factor patterns between cervical and trochanteric hip fractures. Swedish Hip Fracture Study Group.

The two types of hip fracture--cervical and trochanteric femoral fractures--are generally considered together in etiologic studies. However, women with a trochanteric fracture may be more osteoporotic than those with cervical hip fractures, and have higher post-fracture mortality. To explore differences in risk factor patterns between the two types of hip fracture we used data from a large population-based case-control study in Swedish women, 50-81 years of age. Data were collected by questionnaire, to which more than 80% of subjects responded. Of the cases included, 811 had had a cervical fracture and 483 a trochanteric fracture during the study period; these cases were compared with 3312 randomly selected controls. Height and hormonal factors appeared to affect the risk of the two types of hip fracture differently. For every 5 cm of current height, women with a cervical fracture had an adjusted odds ratio (OR) of 1.23 (95% CI 1.15-1.32) compared with an OR of 1.06 (95% CI 0.97-1.15) for women with trochanteric fractures. Later menopausal age was protective for trochanteric fractures (OR 0.95, 95% CI 0. 91-0.99 per 2 years) but no such association was found for cervical fractures. Compared with never smokers, current smokers had an OR of 1.48 (95% CI 1.12-1.95) for trochanteric fractures and 1.22 (95% CI 0.98-1.52) for cervical fractures. Current hormone replacement therapy was similarly protective for both fracture types, but former use substantially reduced risk only for trochanteric fractures: OR 0. 55 (95% CI 0.33-0.92) compared with 1.00 (95% CI 0.71-1.39) for cervical fractures. These risk factor patterns suggest etiologic differences between the fracture types which have to be considered when planning preventive interventions.

Age Factors↗

Patients with prior fractures have an increased risk of future fractures: a summary of the literature and statistical synthesis.

Numerous studies have reported increased risks of hip, spine, and other fractures among people who had previous clinically diagnosed fractures, or who have radiographic evidence of vertebral fractures. However, there is some variability in the magnitudes of associations among studies. We summarized the literature and performed a statistical synthesis of the risk of future fracture, given a history of prior fracture. The strongest associations were observed between prior and subsequent vertebral fractures; women with preexisting vertebral fractures (identified at baseline by vertebral morphometry) had approximately 4 times greater risk of subsequent vertebral fractures than those without prior fractures. This risk increases with the number of prior vertebral fractures. Most studies reported relative risks of approximately 2 for other combinations of prior and future fracture sites (hip, spine, wrist, or any site). The confidence profile method was used to derive a single pooled estimate from the studies that provided sufficient data for other combinations of prior and subsequent fracture sites. Studies of peri- and postmenopausal women with prior fractures had 2.0 (95 % CI = 1.8, 2.1) times the risk of subsequent fracture compared with women without prior fractures. For other studies (including men and women of all ages), the risk was increased by 2.2 (1.9, 2.6) times. We conclude that history of prior fracture at any site is an important risk factor for future fractures. Patients with a history of prior fracture, therefore, should receive further evaluation for osteoporosis and fracture risk.

Aged↗