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Upper tibial hyperextension fractures in infants: another occult toddler's fracture.

We describe the radiographic findings associated with occult upper tibial fractures in infants and young children and offer an explanation for the underlying mechanism from which they result. These fractures tend to be subtle, just as the classic spiral tibial fracture originally described by Dunbar et al. (1964, J Can Assoc Radiol 15: 136-144). The fracture we describe results from a hyperextension injury to the knee, and the knowledge of the mechanism of injury, the subtle radiographic findings, and the findings on physical examination allow one to diagnose this fracture with confidence. Otherwise, it easily can go undetected.

Child, Preschool↗

MRI findings of thoracolumbar spine fractures: a categorisation based on MRI examinations of 100 fractures.

OBJECTIVE: To define the state of different structures of the fractured thoracolumbar spine which may play a role in the immediate and long-term mechanical stability on MR images and to investigate the relationship of these findings with the AO classification of spinal injuries. DESIGN: The state of the anterior longitudinal ligament, posterior longitudinal ligament, posterior ligamentous complex, cranial and caudal endplates, cranial and caudal discs and the vertebral body were defined using clinical, experimental and radiological data. The state of these structures was reported for each fracture on the MRI examinations and the different MRI features appropriate for different fracture classes were defined. PATIENTS: MRI examinations of 70 patients with 100 fractures of the thoracolumbar spine were used for this study. RESULTS: Wide variations were seen in the state of the structures studied. We could not find a definite pattern to relate these findings with the AO classification scheme. CONCLUSIONS: MR findings should be integrated into future classification schemes of thoracolumbar spine fractures. This would enable specific data about the structures involved in the stability of the spine to be acquired. Prospective studies using the criteria developed in this study may help resolve some of the controversies concerning the diagnosis and prognosis of these injuries as well as the development of new classification systems.

Humans↗

Reconstruction of comminuted posterior wall fractures using the buttress technique: a review of 32 fractures.

Fractures of the posterior wall are the most common of the acetabular fractures. The aim of this study was to assess the medium-term results of reconstruction of comminuted posterior wall fractures of the acetabulum by using the buttress technique. This is a retrospective review conducted at a level 1 trauma centre. Thirty-two patients (25 men, 7 women, mean age 41 years, range 14-80 years) with comminuted posterior wall fracture of the acetabulum underwent reconstruction of the posterior wall during the period of July 1998 to February 2004. The average follow-up was 43 months (range 24-70 months). Clinical evaluation was based on modified Merle d'Aubigne and Postel scoring. Radiographic evaluation was according to criteria developed by Matta. The postoperative reduction was graded as anatomical in 28 patients (88%) and imperfect in 4 patients (12%). The clinical outcome was excellent in 11 (34% ), very good in 9 (28%), good in 4 (12%), fair in 3 (9%) and poor in 5 (15%). Radiological grading at the final follow-up was excellent 12 (37%), good 11 (34%), fair 4 (12%) and poor 5 (15%). Reconstruction of comminuted posterior wall acetabular fractures by buttress technique can be expected to produce good results. It can provide a stable fixation of the posterior wall amenable to early range of motion and weight bearing.

Acetabulum↗

Bone remodeling markers: assessment of fracture risk and fracture risk reduction.

There is an increasing repertoire of laboratory tests available for assessing the bone remodeling process. Biochemical markers of bone remodeling can be measured in serum or urine, and have a number of potential roles in the management of fracture risk. Differences in remodeling between individuals might be related to fracture risk and could be used to target therapy. Change in remodeling with therapy could be related to fracture risk reduction and the choice of therapy could be influenced by knowledge of bone remodeling. Biochemical therapeutic monitoring may improve patient understanding and therapeutic adherence. The rate of bone remodeling is weakly predictive of fracture risk in individuals who are not receiving therapy; however, it is not clear whether this is independent of other risk factors. There is increasing evidence that change in bone mineral density does not explain fracture risk reduction with antiresorptive therapies, and that therapeutic benefit might be explained by change in bone turnover. Additional studies and information are required to allow these scientific advances to be translated into cost-effective and validated clinical protocols. Optimizing the precision and accuracy of bone turnover assessment remains an important priority.

Absorptiometry, Photon↗

Spiral tibial fractures of children: a commonly accidental spiral long bone fracture.

Pediatric training in child abuse has consistently emphasized a strong association between nonaccidental injuries and spiral fractures of long bones. Isolated spiral tibial fractures of childhood have previously been recognized by the orthopedic specialty to most frequently be accidental in etiology. The authors present evidence that supports a predominantly accidental etiology for isolated spiral tibial fractures of young children. This article presents a series in which 9 of 10 such spiral fractures were most likely the result of an accident and not child abuse or gross neglect. Additionally, almost all of these fractures presented as a gait disturbance and should be included in the differential of this complaint.

Accidents, Home↗

Lifetime fracture risk: an approach to hip fracture risk assessment based on bone mineral density and age.

Hip fractures occur late in life following a substantial reduction in skeletal mass. If risk for such fractures could be predicted early, efforts to prevent excessive bone loss would be more successful and could be directed at the individuals most likely to be affected. With this objective in mind, we devised an approach to estimating the lifetime risk of a proximal femur fracture based on age and on current femoral bone mineral density, using population-based data from ongoing studies of osteoporosis and fractures among Rochester, Minnesota, women. Our calculations indicate that, at any given age, the lifetime risk of a proximal femur fracture rises as current bone density diminishes. At any given level of femoral bone density, lifetime risk rises with younger age and increasing life expectancy. While these trends seem robust, estimates of risk vary substantially with the assumptions that underlie the model. Consequently, these assumptions must be validated before our findings can be applied clinically to predict risk for individual patients.

Adult↗

Hearing sensitivity and the risk of incident falls and fracture in older women: the study of osteoporotic fractures.

PURPOSE: To determine if age-related hearing loss may be related to bone health. Decreased vestibular function has been associated with hearing loss. We hypothesized that hearing loss would be related to an increased risk of falling and osteoporotic fracture in 6480 women aged 65 years or older enrolled in the Study of Osteoporotic Fractures. We further hypothesized that decreased bone mineral density would be associated with hearing loss. METHODS: Hearing sensitivity was ascertained via screening audiometry, and was classified as normal, mild loss, or significant loss. Incident non-spine fractures and falls were ascertained every 4 months for an average 6.7 years and 3 years, respectively. RESULTS: The age-adjusted annual fall rate did not differ significantly by hearing category, nor did the risk of incident fracture. Adjustment for confounding factors had no effect on our results. Age- and BMI-adjusted mean calcaneal bone mineral density (g/cm2) was 0.380 in the normal hearing group, 0.375 in the mild loss group, and 0.371 in the significant loss group (p = 0.02). There were no significant differences in total hip bone mineral density across hearing categories. CONCLUSIONS: Our results do not support the hypothesis that hearing loss is a risk factor for fracture or falls [corrected]

Accidental Falls↗

Part II: arthroscopic treatment of tibial plateau fractures: intercondylar eminence avulsion fractures.

Arthroscopic reduction and internal fixation (ARIF) of tibial intercondylar eminence fractures is the emerging state-of-the-art. ARIF is recommended for displaced type III fractures and should be considered for all cases of displaced type II fractures. Fractures without displacement after closed reduction require careful evaluation to rule out meniscal entrapment. Subjective results of ARIF are uniformly excellent, despite reports of objective anteroposterior laxity. Early range-of-motion exercises are essential to prevent loss of extension. Repair using nonabsorbable suture fixation, when of adequate strength to allow early range-of-motion, has the advantages of eliminating the risks of comminution of the fracture fragment, posterior neurovascular injury, and need for hardware removal, compared with ARIF using screws.

Anterior Cruciate Ligament↗

Bone mineral density and walking ability of elderly patients with hip fracture: a strategy for prevention of hip fracture.

The main risk factors for proximal femoral fracture include the hazard of falling and osteoporosis. The change in walking ability of patients before injury was evaluated over the last 10 years in a rapidly advancing aging society in Tokyo, Japan. The bone quality of patients was clarified in order to develop a strategy for prevention of hip fractures. The subjects were 157 women with proximal femoral fractures treated between 1989 and 1993 (group A) and 216 women treated between 1999 and 2003 (group B). Bone mineral density (BMD) of the radius of the patients showed slightly lower values than those of the elderly general population, but no statistically significant difference was observed in each age group except for the 75-79-year-old age group (p<0.05). Many patients had problems in walking, and 27% of patients in group A and 44% in group B could not walk outdoors or go shopping alone before the injury, and their bone mineral density was reduced. For the prevention of hip fractures, it is important to improve the physical function to avoid falls, which directly cause hip fracture. Patients who have difficulty performing effective physical exercise because of reduced walking ability require medication for osteoporosis.

Accidental Falls↗

Fracture in human cortical bone: local fracture criteria and toughening mechanisms.

Micromechanical models for fracture initiation that incorporate local failure criteria have been widely developed for metallic and ceramic materials; however, few such micromechanical models have been developed for the fracture of bone. In fact, although the fracture event in "hard" mineralized tissues such as bone is commonly believed to be locally strain-controlled, only recently has there been experimental evidence (using double-notched four-point bend testing) to support this widely held belief. In the present study, we seek to shed further light on the nature of the local cracking events that precede catastrophic fracture in human cortical bone, and to define their relationship to the microstructure. Specifically, numerical computations are reported that demonstrate that the stress and strain states ahead of such a notch are qualitatively similar irrespective of the deformation mechanism (pressure-insensitive plasticity vs. pressure-sensitive microcracking). Furthermore, we use the double-notched test to examine crack-microstructure interactions from a perspective of determining the salient toughening mechanisms in bone and to characterize how these may affect the anisotropy in fracture properties. Based on preliminary micromechanical models of these processes, the relative contributions of various toughening mechanisms are established. In particular, crack deflection and uncracked-ligament bridging are identified as the major mechanisms of toughening in cortical bone.

Adult↗

Displaced intra-articular fractures of the distal radius: the effect of fracture displacement on contact stresses in a cadaver model.

Contact stresses in the wrist were measured after simulating displaced fractures of the lunate fossa in the distal radius of eight human cadaver arms. Osteotomies created displaced lunate fossa fractures of 0, 1, 2, and 3 mm. Contact stresses were measured with Fuji pressure-sensitive film after loads of 100 N were applied to the wrist through wrist flexor and extensor tendons. Mean contact stresses were significantly increased with step-offs of 1 mm or more. Maximum stresses and overloaded areas were significantly increased with step-offs of 2 mm or more. As the magnitude of the fracture displacement increased, there was a shift in the focus of the maximum stresses toward the fracture line. In this model, simulated displaced die-punch fractures created alterations in both the magnitude and location of contact stresses in the wrist joint.

Biomechanical Phenomena↗

Bone fracture in elderly female with primary hyperparathyroidism: relationship among renal function, vitamin D status and fracture risk.

Among 12 aged postmenopausal females with primary hyperparathyroidism, 5 had no bone fracture and 7 had fractures. Both serum 1,25 (OH)2D levels and creatinine clearance values in patients with fracture were significantly lower than those without fracture (p less than 0.025). In addition, significant positive correlation was observed between serum 1,25 (OH)2D levels and creatinine clearance values (p less than 0.05). These data suggest that decreased serum 1,25 (OH)2D level due to renal dysfunction may causally correlate to bone fracture in postmenopausal primary hyperparathyroidism.

Aged↗

Freeze-fracture cytochemistry: partition of glycophorin in freeze-fractured human erythrocyte membranes.

Thin-section and critical-point-dried fracture-labeled preparations are used to determine the distribution and partition of glycophorin-associated wheat germ agglutinin (WGA) binding sites over protoplasmic and exoplasmic faces of freeze-fractured human erythrocyte membranes. Most wheat germ agglutinin binding sites are found over exoplasmic faces. Label is sparse over the protoplasmic faces. These results contrast with previous observations of the partition of band 3 component where biochemical analysis and fracture-label of concanavalin A (Con A) binding sites show preferential partition of this transmembrane protein with the protoplasmic face. Presence of characteristic proportions of WGA and Con A binding sites over each fracture face is interpreted to indicate the operation of a stochastic process during freeze-fracture. This process appears modulated by the relative expression of each transmembrane protein at either surface as well as by their association to components of the erythrocyte membrane skeleton.

Erythrocyte Membrane↗

Physical activity and hip fracture: a population-based case-control study. Swedish Hip Fracture Study Group.

BACKGROUND: A growing body of literature suggests that physical activity may be a protective factor against hip fracture. METHODS: To study the association between hip fracture risk and recreational physical activity at various ages, changes in activity during adult life, occupational physical activity and how risks vary by adult weight change, we performed a population-based case-control study among postmenopausal women aged 50-81 years residing in six counties in Sweden in 1993-1995. The analysis consisted of 1327 women with hip fracture and 3262 randomly selected controls. Information on leisure physical activity before age 18, at 18-30 years and during recent years was based on a questionnaire. Data on occupational physical activity were collected through an independent classification of job titles obtained from record linkage with census data from 1960, 1970 and 1980. RESULTS: There was a protective effect of recent leisure physical activity. Compared to women who reported no leisure activity, the odds ratios (OR) were 0.79 (95% CI: 0.62-1.00), 0.67 (95% CI: 0.54-0.84) and 0.48 (95% CI: 0.39-0.60) for women who exercised <1 h per week, 1-2 h per week, and 3+ h per week, respectively. These decreased OR were more pronounced in women who had lost weight after 18 years of age than in those who had gained weight. Women with high physical activity at both 18-30 years and during recent years did not have a stronger protection than those with isolated high activity late in life, after accounting for recent activity. Occupational physical activity was not associated with hip fracture risk in this study. CONCLUSIONS: Recent physical activity is protective against hip fracture. The protective effect is most pronounced in women who had lost weight after age 18.

Aged↗

The incidence of osteitis in open fractures: an analysis of 948 open fractures (a review of the Hannover experience).

Even though treatment protocols of open fractures have been improved in the past two decades, osteitis is still a major complication in these injuries. To investigate the primary factors responsible for posttraumatic osteitis, 19 cases of osteitis out of 297 open fractures (retrospective series from 1981 to 1983) and nine cases of osteitis out of 651 open fractures (prospective series from 1984 to 1989) were analyzed. The Hannover fracture scale was used for quantitative evaluation of the injury. A high prognostic index for bone infections was found for the amount of bone loss, the fracture type, the type of bacteriologic contamination, deep soft-tissue defects, compartment syndromes, vascular injuries, and soft-tissue infections.

Fractures, Open↗

Scaphoid fracture as a "puncher's fracture".

We investigated 18 scaphoid fractures induced by punching. The wrist position while punching was neutral to slight palmar flexion. We postulated that the mechanism of the fracture was caused by the concentration of the external force to the second metacarpus. The forces are then dispersed to the trapezium and trapezoid, which produces shear stress at the waist of the scaphoid. In spite of the differences in mechanism, the location of the fracture was similar to fractured scaphoids caused by wrist extension injuries. Regardless of the wrist positions, the carpal scaphoid is most vulnerable to fracture due to its characteristic morphology.

Adolescent↗

The crescent fracture: a posterior fracture dislocation of the sacroiliac joint.

Between October 1987 and August 1992, 22 patients with crescent fractures, a posterior fracture-dislocation of the sacroiliac joint, were admitted, treated, and available for review at Tampa General Hospital and The Hospital for Special Surgery. The purpose of the study was twofold: (a) to evaluate the incidence, severity, and pattern of associated injuries, and (b) to determine the efficacy of a treatment protocol using a posterior extrapelvic approach and extraarticular internal fixation. The study population was composed of 13 females and nine males; the average age was 25 years (range 10-52). Despite the fracture pattern resulting in a rotationally unstable hemipelvis, all patients were hemodynamically stable at the time of presentation. Fourteen patients (64%) had other associated injuries, including five (23%) with closed head injury. In all cases a posterior extrapelvic approach was used with an anatomic reduction of the fractured iliac wing and the sacroiliac joint dislocation. Stable extraarticular internal fixation was obtained using intertable lag screws and outer-table neutralization plates. All the fractures were clinically and radiographically healed within 8-10 weeks postoperatively, and there were no acute wound, neurologic, or vascular complications. One patient developed osteomyelitis of the iliac crest 6 months postoperatively.

Adolescent↗