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Effect of long-term impact-loading on mass, size, and estimated strength of humerus and radius of female racquet-sports players: a peripheral quantitative computed tomography study between young and old starters and controls.

Bone characteristics of the humeral shaft and distal radius were measured from 64 female tennis and squash players and their 27 age-, height-, and weight-matched controls with peripheral quantitative tomography (pQCT) and DXA. The players were divided into two groups according to the starting age of their tennis or squash training (either before or after menarche) to examine the possible differences in the loading-induced changes in bone structure and volumetric density. The used pQCT variables were bone mineral content (BMC), total cross-sectional area (TotA) of bone, cross-sectional area of the marrow cavity (CavA) and that of the cortical bone (CoA), cortical wall thickness (CWT), volumetric density of the cortical bone (CoD) and trabecular bone (TrD), and torsional bone strength index (BSIt) for the shaft, and compressional bone strength index (BSIc) for the bone end. These bone strength indices were compared with the DXA-derived areal bone mineral density (aBMD) to assess how well the latter represents the effect of mechanical loading on apparent bone strength. At the humeral shaft, the loaded arm's greater BMC (an average 19% side-to-side difference in young starters and 9% in old starters) was caused by an enlarged cortex (CoA; side-to-side differences 20% and 9%, respectively). The loaded humerus seemed to have grown periosteally (the CavA did not differ between the sites) leading to 26% and 11% side-to-side BSIt difference in the young and old starters, respectively. CoD was equal between the arms (-1% difference in both player groups). The side-to-side differences in the young starters' BMC, CoA, TotA, CWT, and BSIt were 8-22% higher than those of the controls and 8-14% higher than those of the old starters. Old starters' BMC, CoA, and BSIt side-to-side differences were 6-7% greater than those in the controls. The DXA-derived side-to-side aBMD difference was 7% greater in young starters compared with that of the old starters and 14% compared with that in controls, whereas the difference between old starters and controls was 6%, in favor of the former. All these between-group differences were statistically significant. At the distal radius, the player groups differed significantly from controls in the side-to-side BMC, TrD, and aBMD differences only; the young starters' BMC difference was 9% greater, TrD and aBMD differences were 5% greater than those in the controls, and the old starters' TrD and aBMD differences were both 7% greater than those in the controls. In summary, in both of the female player groups the structural adaptation of the humeral shaft to long-term loading seemed to be achievedthrough periosteal enlargement of the bone cortex although this adaptation was clearly better in the young starters. Exercise-induced cortical enlargement was not so clear at the distal radius (a trabecular bone site), and the study suggested that at long bone ends also the TrD could be a modifiable factor to build a stronger bone structure. The conventional DXA-based aBMD measurement detected the intergroup differences in the exercise-induced bone gains, although, measuring two dimensions of bone only, it seemed to underestimate the effect of exercise on the apparent bone strength, especially if the playing had been started during the growing years.

Absorptiometry, Photon↗

Effect of long-term impact-loading on mass, size, and estimated strength of humerus and radius of female racquet-sports players: a peripheral quantitative computed tomography study between young and old starters and controls.

Bone characteristics of the humeral shaft and distal radius were measured from 64 female tennis and squash players and their 27 age-, height-, and weight-matched controls with peripheral quantitative tomography (pQCT) and dual energy X-ray absorptiometry (DXA). The players were divided into two groups according to the starting age of their tennis or squash training (either before or after menarche) to examine the possible differences in the loading-induced changes in bone structure and volumetric density. The following pQCT variables were used: bone mineral content, total cross-sectional area of bone (TotA), cross-sectional area of the marrow cavity (CavA) and that of the cortical bone (CoA), cortical wall thickness (CWT), volumetric density of the cortical bone (CoD) and trabecular bone (TrD), and torsional bone strength index for the shaft (BSIt) and compressional bone strength index for the bone end (BSIc). These bone strength indices were compared with the DXA-derived areal bone mineral density (aBMD) to assess how well the latter represents the effect of mechanical loading on apparent bone strength. At the humeral shaft, the loaded arm's greater bone mineral content (an average 19% side-to-side difference in young starters and 9% in old starters), was caused by an enlarged cortex (CoA; side-to-side differences 20% and 9%, respectively). The loaded humerus seemed to have grown periosteally (the CavA did not differ between the sites), leading to 26% and 11% side-to-side BSIt differences in the young and old starters, respectively. CoD was equal between the arms (-1% difference in both player groups). The side-to-side differences in the young starters' bone mineral content, CoA, TotA, CWT, and BSIt were 8-22% higher than those of the controls and 8-14% higher than those of the old starters. Old starters' bone mineral content, CoA, and BSIt side-to-side differences were 6-7% greater than those in the controls. The DXA-derived side-to-side aBMD difference was 7% greater in young starters compared with that of the old starters and 14% compared with that in controls, whereas the difference between old starters and controls was 6%, in favor of the former. All these between-group differences were statistically significant. At the distal radius, the player groups differed significantly from controls in the side-to-side bone mineral content, TrD, and aBMD differences only: the young starters' bone mineral content difference was 9% greater, TrD and aBMD differences were 5% greater than those in the controls, and the old starters' TrD and aBMD differences were both 7% greater than those in the controls. In summary, in both of the female player groups, the structural adaptation of the humeral shaft to long-term loading seemed to be achieved through periosteal enlargement of the bone cortex, although this adaptation was clearly better in the young starters. Exercise-induced cortical enlargement was not so clear at the distal radius (a trabecular bone site), and the study suggested that at long bone ends, the trabecular density could be a modifiable factor to built a stronger bone structure. Conventional DXA-based aBMD measurement detected the intergroup differences in the exercise-induced bone gains, although, because it measured two dimensions of bone only, it seemed to underestimate the effect of exercise on the apparent bone strength, especially if the playing had been started during the growing years.

Adult↗

Epiphyseal separation of the distal humerus.

A case of epiphyseal separation of the distal humerus is presented, emphasizing the clinical and radiological features of this rare birth trauma. Conservative treatment resulted in complete recovery.

Birth Injuries↗

Evaluation of RF heating on humerus implant in phantoms during 1.5T MR imaging and comparisons with electromagnetic simulation.

PURPOSE: To evaluate the effect of radiofrequency (RF) heating on a metallic implant during magnetic resonance imaging (MRI), temperatures at several positions of an implant were measured, and results are compared with electromagnetic simulations using a finite element method. METHODS: A humerus nail implant made of stainless steel was embedded at various depths of tissue-equivalent gel-phantoms with loop (loop phantom) and partially cut loop (loop-cut phantom), and the phantoms were placed parallel to the static magnetic field of a 1.5T MRI device. Scans were conducted at maximum RF for 15 min, and temperatures were recorded with 2 RF-transparent fiberoptic sensors. Finally, electromagnetic-field analysis was performed. RESULTS: Temperatures increased at both ends of the implants at various depths, and temperature increase was suppressed with increasing depth. The maximum temperature rise was 12.3 degrees C at the tip of the implant and decreased for the loop-cut phantom. These tendencies resembled the results of electromagnetic simulations. CONCLUSION: RF heating was verified even in a nonmagnetizing metal implant in a case of excessive RF irradiation. Particularly, rapid temperature rise was observed at both ends of the implant having large curvatures. The difference in temperature increase by depth was found to reflect the skin-depth effect of RF intensity. Electromagnetic simulation was extremely useful for visualizing the eddy currents within the loop and loop-cut phantoms and for evaluating RF heating of a metallic implant for MRI safety.

Bone Density↗

Translations of the humerus in persons with shoulder impingement symptoms.

STUDY DESIGN: Two-group mixed-model analysis of covariance and correlation analysis. OBJECTIVES: To determine whether differences in humeral translations exist between patients with shoulder impingement symptoms and an asymptomatic comparison group, and if so, to determine if shoulder range-of-motion (ROM) measures are associated with abnormal translations. BACKGROUND: Abnormal translations of the humeral head are believed to reduce the available subacromial space and to contribute to the development or progression of shoulder impingement symptoms. These abnormal translations have also been theorized to be related to tightness of the posterior capsule and decreased shoulder ROM. METHODS AND MEASURES: Three-dimensional humeral translations were tracked in symptomatic construction workers and an asymptomatic comparison group while elevating the arm in the scapular plane under no-load, 2.3-kg, and 4.6-kg hand-load conditions. Between-group comparisons were made across 3 phases of motion (30 degrees-60 degrees, 60 degrees-90 degrees, and 90 degrees-120 degrees) and the association between humeral translations and cross-body adduction and shoulder internal rotation ROM measures were determined by Pearson correlation analysis. RESULTS: Persons with shoulder symptoms demonstrated small but significant changes in anterior-posterior translations of the humerus. These changes for the 90 degrees-120 degrees phase of humeral elevation were moderately negatively associated with available cross-body adduction ROM. CONCLUSIONS: The identified kinematic deviations are consistent with possible reductions of the subacromial space. Further study of relationships between posterior capsule tightness, rotator cuff function, and abnormal humeral translations is warranted to better delineate underlying kinematic mechanisms that may contribute to shoulder impingement symptoms and to refine rehabilitation techniques.

Adult↗

Restricted energy intake and elevated calcium and phosphorus intake for gilts during growth. IV. Characterization of metacarpal, metatarsal, femur, humerus and turbinate bones of sows during three parities.

The effect of early nutrition on subsequent bone development was studied using gilts that had previously been fed ad libitum or 75% ad libitum intake and 100 or 150% National Research Council-recommended daily Ca and P from weaning to 100 kg. During the three-parity reproductive study, sows were fed a 14% protein diet. Metacarpals and metatarsals were taken from sows culled due to lameness or failure to breed and from sows after completing three parities. Femur and humerus articular cartilage and turbinates were described at necropsy. Metacarpals and metatarsals were heavier and tended to have thicker walls when sows were previously fed ad libitum or fed 150% Ca and P. Energy intake produced the greater response. Metacarpal breaking strength was greatest for sows previously fed ad libitum. Metatarsals were not affected by energy intake. Stiffness, Young's modulus of elasticity (YME) and flexural modulus for metacarpals and metatarsals were not affected by energy intake. Previously fed Ca and P intakes did not affect any of the mechanical bone characteristics. Metacarpals were heavier, had a greater breaking strength, were more elastic and exhibited slightly less resistance to bending than the metatarsals. The ether extract, ash, Ca and P content and the Ca:P ratio of metacarpals and metatarsals were not affected by previously fed energy or Ca and P intakes. The ether extract content tended to decrease and the ash, Ca and P content tended to increase with age. Articular cartilage and turbinate scores were not influenced by previously fed energy or Ca and P intakes. The YME and flexural modulus were the only bone characteristics that were even poorly correlated (average r = .25) with soundness scores, suggesting that high values result in poorer soundness scores. Energy and Ca and P intakes during growth and development had only minimal effects on bone characteristics and no apparent effect on structural soundness and longevity of sows kept for three parities.

Animals↗

Volumetric determination of medial epicondyle and lateral epicondyle of humerus in male and female volleyball players.

The aim of this study was to assess the volume of the medial epicondyle and lateral epicondyle in comparison with the distal end of humerus volume in male and female elite athletes participating in an impact loading sport (volleyball). The volleyball group consisted of 17 female, aged 20.47 +/- 2.47 years (mean +/- SD), 16 male aged 21.68 +/- 3.47 years (mean +/- SD); training for about 8 hours/week. The control group consisted of 15 nonactive females aged 21.73 +/- 2.68 years (mean +/- SD) and 14 nonactive males aged 23.35 +/- 4.16 years (mean +/- SD). Anthropometric determinations (height, weight, limb length, girth of arm and forearm) were made on each subjects. Range of motion was evaluated by standard goniometric technique. Comparative plain films of both elbows were obtained in an anteroposterior projection. The volumes of the medial epicondyle and lateral epicondyle were determined by the principle of Cavalieri which is an effective stereologic volume calculation method. In the volleyball players, increased medial epicondyle volume was recorded in the dominant and nondominant arms as compared with the control subjects (P < 0.05). Wrist flexors are highly involved in spiking, blocking and serving in volleyball. In this study we founded volume of medial epicondyle which is the connection point of flexor muscle was increased because of loading.

Adolescent↗

Entrapment of median nerve by supracondylar process of the humerus. Case report.

The supracondylar process of the humerus has been described by anatomists and anthropologists in man and lower animals. Infrequently this process may cause compression of the median nerve. We are presenting such a case along with a brief review of the literature. Excision of the bone process led to immediate disappearance of symptoms.

Adult↗

Anterior interosseous nerve compression after supracondylar fracture of the humerus: a metaanalysis.

OBJECT: The authors conducted a metaanalysis of reports of anterior interosseous nerve syndrome, a rare nerve compression neuropathy that affects only the motor branch of the median nerve. This syndrome is characterized by paralysis of the flexor pollicis longus, the flexor digitorum profundus to the index finger, and the pronator quadratus, with weakness on flexion of the interphalangeal joint of the thumb and the distal interphalangeal joint of the index finger without sensory loss. METHODS: The authors reviewed reports of 34 cases of anterior interosseous nerve syndrome combined with supracondylar fractures of the humerus in children. They have added a new case identified in a 7-year-old boy in whom a diagnosis was made from the clinical findings and whose treatment and outcome are analyzed. The ages of patients reported in the literature ranged from 4 to 10 years. Ten patients (29%) were treated with closed reduction and application of a cast, whereas 25 patients (71%) were treated with open reduction and fixation of the fracture. CONCLUSIONS: All patients regained full flexion and strength after 4 to 17 weeks. The fractures that were surgically treated showed no entrapment of the anterior interosseous nerve.

Casts, Surgical↗

Humerus varus in a patient with pseudohypoparathyroidism.

A 7-yr-old girl presented with progressive shortening of the right upper arm and limitation of shoulder motion. Pseudohypoparathyroidism associated with Albright's hereditary osteodystrophy was diagnosed by biochemical, hormonal and radiographic studies. Her condition was complicated by severe humerus varus on the right side. Proximal humeral valgization osteotomy and concomitant humeral lengthening resulted in an improvement of the shoulder joint motion and activity in daily life.

Bone Diseases↗

Physeal injuries of the distal humerus.

Physeal injuries of the distal humerus comprise approximately 10% of all physeal injuries. Diagnosis of these injuries at a young age before the ossification centers have ossified and become visible radiographically is difficult. Poor outcome of distal humeral physeal injuries is not uncommon and can be best prevented by knowledge of anatomy and the use of all appropriate imaging techniques. The focus of this article is to correlate anatomy at different ages with the occurrence of specific injuries.

Adult↗

Supracondylar fractures of the humerus in children.

Supracondylar fractures of the humerus in children are either flexion or extension in type. Associated nerve or vascular injury is common. Fractures that remain stable after reduction can be treated with elbow flexion. If the fracture is unstable or if circulation is compromised, percutaneous pinning or traction treatment is utilized. The ischemic hand is always evaluated for brachial artery damage or for the presence of a compartment syndrome. Varus positioning should always be avoided, but other malalignments either remodel or are not of functional significance.

Child↗

Metastatic bone disease of the humerus.

Metastatic bone disease is the most common cause of destructive bone lesions in adults, and involvement of the humerus is common. Patients with destructive lesions involving <50% of the cortex are treated nonsurgically with external beam irradiation. Patients with diaphyseal lesions involving > or =50% of the cortex or those with pain after irradiation can be treated with intramedullary nailing to achieve rigid fixation. Although closed intramedullary nailing is used most often, open nailing with methylmethacrylate is appropriate for destructive lesions in which rigid fixation cannot be achieved with closed nailing. Plate fixation is acceptable when adequate proximal and distal cortical bone is present for screw purchase, although proximal humeral lesions usually are treated with prosthetic arthroplasty. Postoperative external beam irradiation can help prevent disease progression and subsequent loss of fixation. However, when disease progression persists or rigid internal fixation is not feasible because of extensive bone destruction, wide resection and reconstruction with a custom prosthesis can be done.

Adult↗

Surgical exposures of the humerus.

The neurovascular and muscular anatomy about the humerus precludes the use of a truly "safe" fully extensile approach. Working around a spiraling radial nerve at the posterior midshaft requires either a transmuscular dissection or a triceps-avoiding paramuscular technique. To gain maximal exposure, the radial nerve must be mobilized at the spiral groove. For exposure of only the proximal humeral shaft, many surgeons prefer the anterolateral approach because it uses the internervous plane between the axillary and deltoid nerves proximally and the radial and musculocutaneous nerves distally. Proximally, the deltopectoral approach to the shoulder continues to be the most widely used. However, the lateral deltoid-splitting approach is a viable, less invasive approach for both rotator cuff repair and fixation of valgus-impacted proximal humeral fractures. Distally, intra-articular exposure is dependent on triceps mobilization, either by olecranon osteotomy or triceps release; this exposure can be coupled with either a triceps-splitting or a paratricipital approach for proximal extension.

Arthroplasty↗

Prosthetic replacement in acute fractures of the proximal humerus.

The surgical treatment of selected displaced fractures of the proximal humerus with a humeral head prosthesis is a challenging procedure. Adequate knowledge of the pertinent anatomy and biomechanics of the shoulder as well as a clear roentgenographic evaluation of the displaced fracture patterns are essential. Successful prosthetic replacement requires adherence to technical factors involving soft tissue mobilization, prosthetic insertion, and tuberosity repair. Also, it is important to have a closely supervised rehabilitation program to achieve early passive motion and strengthening after fracture healing.

Fractures, Bone↗

[Ultrasonographic diagnosis of an epiphyseal detachment of the upper end of the humerus due to birth injury].

Injuries to the proximal humerus in infants are often missed or misinterpreted because of the non ossification of the epiphysis. Ultrasound allows direct visualisation of the proximal humeral epiphysis, metaphysis, joint space, and relationship with the glenoid cavity. Ultrasound diagnosis of other epiphyses birth trauma has been reported. Ultrasound should be considered as the first imaging modality if traumatic epiphyseal dislocation is suspected in a newborn.

Birth Injuries↗

Extensor mechanism sparing approach to the elbow for reduction and internal fixation of intercondylar fracture of the humerus.

OBJECTIVE: To evaluate the short term results of extensor mechanism sparing approach to the elbow for fixation of intercondylar fractures of the distal end of humerus and compare it with existing Surgical approaches. DESIGN: This is a prospective study conducted from June, 1992 to June, 1997. SETTING: Department of Orthopaedic Surgery, Jinnah Postgraduate Medical Centre and Mehran Clinic (Pvt.), Karachi. PRINCIPLE OF SURGICAL APPROACH: This approach is based upon the principle that by sparing the extensor mechanism, we reduce the amount of surgical trauma and help in early rehabilitation which can contribute in improving the results of this difficult fracture. RESULTS: There were nine type 2 fractures, eight type 3 fractures and four type 4 fractures according to Rise borough and Radin classification. Based upon the same authors criteria, there were over all 57.14% good 23.81% fair and 19.04% poor results. Adequate exposure was achieved in all of type 2 and seven (87.5%) out of eight type 3 fractures. We failed in type 4 fractures. Mean operating time was 107.38 (+/- 24.67) minutes. CONCLUSION: The results in this series are comparable to other studies. They can however be improved with proper selection of cases, experience with the technique along with better fixation and rehabilitations.

Elbow↗

[Innervation of the humerus metaepiphysis in newborn and one year old children].

Analysis of home and foreign literature on metaepiphyseal cartilage innervation and blood supply was presented, data on these organ diseases substantiate theoretical and clinical significance of the study was performed. Using macro-microscopic preparation, histological study, automatic image analyzer branches of humerus proximal metaepiphysis were shown to originate from axillary and subscapulary nerves. Nerves and vessels penetrating in the cartilaginous canals form neurovascular complexes. Cartilaginous canals are located unevenly. Nervous structures were found in the canals and their characteristics was given.

Growth Plate↗