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Making sense of highway construction: a taxonomic framework for ergonomic exposure assessment and intervention research.

Construction is one of the most hazardous industries in the United States. Occupational health research to characterize the hazards in construction work has been hampered by the lack of a systematic approach to classification of construction work and its associated hazards. A taxonomy of construction work, a nested system of classification, has been developed to systematize the collection and reporting of exposure assessment data for the characterization and reduction of hazards and the prevention of musculoskeletal injury. This taxonomy subdivides construction work into the categories of stage, operation, task, and activity. It is based on a bidding specification system already in use within the industry and thus provides a terminology common among workers, supervisors, and managers. The identification of tasks and activities that are present in multiple stages and/or trades contributes to the efficiency of exposure data collection and facilitates the generalizability to other settings for both exposure data and intervention evaluations. The taxonomy provides a framework and vocabulary that facilitates field work and participatory research activities. It can also potentially be linked to personnel and economic data for estimation of costs of safety and health problems, as well as benefits of interventions. Although developed for construction ergonomics, the taxonomic approach has application to non-routine work in other industry sectors and possibly in occupational health research other than ergonomics.

Classification↗

Orofacial pain--Part I: Assessment and management of musculoskeletal and neuropathic causes.

Orofacial pain is a common complaint, affecting the lives of millions of people around the world. Chronic orofacial pain often constitutes a challenging diagnostic problem that can be complicated by psychosocial factors and typically requires multidisciplinary treatment approaches. The fundamental prerequisite for successful management of orofacial pain is an accurate diagnosis. Generating a differential diagnosis, which will ultimately lead to a definite diagnosis, requires thorough knowledge of the diagnostic range of orofacial pain. There is a vast array of orofacial pain categories including: (1) musculoskeletal, (2) neuropathic, (3) vascular, (4) neurovascular, (5) idiopathic, (6) pain caused by local, distant, or systemic pathology, and (7) psychogenic. This article presents the salient clinical features and the therapeutic approaches for the various subtypes of musculoskeletal and neuropathic pain. Musculoskeletal pain is the most prevalent orofacial pain, with temporomandibular disorders and tension-type headache being the main examples. Neuropathic pain develops secondary to neural injury and/or irritation and can be distinguished into episodic, including trigeminal neuralgia and glossopharyngeal neuralgia, as well as continuous, such as herpetic and postherpetic neuralgia, traumatic neuralgia, and Eagle's syndrome.

Causality↗

[Musculoskeletal connections. Study of two cases of oto-mandibular dysplasia].

The current genetic data stress the importance of musculo-skeletal connections in the development of a coherent system connecting the tendons and aponeurosis muscles with the osseous parts. The observations in tomodensitometry of musculo-skeletal connections in otomandibular dysostosis make it possible qualitatively to observe the development of the muscles and their functions.

Adolescent↗

Developmental pathways in musculoskeletal neoplasia: involvement of the Indian Hedgehog-parathyroid hormone-related protein pathway.

There are many crucial genes and signaling pathways in the proper development of an organism. Pathologies may arise from a deregulation of these pathways. The Indian Hedgehog-PTH-related protein (Ihh-PTHrP) pathway is vital in the proper development of endochondral bones, such as the long bones. The Ihh-PTHrP pathway regulates the rate at which chondrocytes within the growth plate proliferate and differentiate. Thus, this pathway allows for the longitudinal growth of bones. However, a disruption in this pathway may lead to enchondromas and osteochondromas, which are both childhood cartilaginous neoplasms. Recently, our lab identified a mutant receptor for PTHrP in enchondroma samples. Mice expressing this mutant receptor and mice with increased Ihh activity develop conditions similar to human enchondromatosis. Linkage analysis shows an association between EXT genes and osteochondromas in hereditary multiple exostoses syndrome. Studies in Drosophila and mice suggest EXT gene products play a role in the diffusion of hedgehog proteins. A mutation in EXT genes may result in an abnormal Ihh diffusion pattern leading to an osteochondroma. There are agents that inhibit Hedgehog signaling. These agents may be useful in the treatment of enchondromas and osteochondromas. This review will discuss the discovery of the Ihh-PTHrP pathway and its involvement in neoplasia, and will suggest possible novel therapeutic agents in the treatment of these cartilaginous neoplasms.

Bone Development↗

The human chin and its relationship to mandibular morphology.

This study evaluated the proportion of the external chin (protuberantia mentalia) in relation to the total symphyseal area in normal jaws and those with a diverse morphology. A sample of 60 cases was randomly selected and divided into three groups of 20 each on the basis of normal growth, horizontal growth and vertical growth with an open bite. Tracings of lateral dn frontal radiographs were used to describe general mandibular form and to determine the percentage of external/total symphyseal area. Dental casts were also examined to determine a basal arch form ratio. The results of this study indicate that the amount of bony chin present is related to certain morphologic features of the mandible. The most significant findings illustrate: 1. The chin increases in size as the mandibular type varies from a vertical type, to a normal type, to a horizontal type of growth pattern. 2. With dental "hypofunction" in combination with an exaggerated vertical development of the mandible, a smaller proportion of the protruding chin is present. 3. The chin increases in size as the mandibular basal arch form varies from a tapered shape for the vertical cases to a more square form in the horizontal cases. 4. The degree of lateral ramal flair does not appear to influence the proportion of protruding chin present. Several models have been presented which attempt to explain protuberantia mentalia variation. The evidence in this study supports the concept that mandibular morphology is the result of the action of compensative adaption in a developing structure. There appears to be an implied polygenic influence on symphyseal morphology operating from the cartilaginous cranial base and mandibular basilar bone. This may be manifested in the relative proportion of mandibular basal bone to cranial base width, and to the vector of cranial base growth. The ultimate proportion of the bony chin is viewed to be the result of mandibular adaption to a functional musculoskeletal balance in the craniofacial complex. The extreme variability of chin form in man may be considered to be the result of compensative growth developing in response to the most structurally efficient jaw form, the contiguous soft and hard tissue environment, and the intrinsic genotype of the mandible.

Adolescent↗

Development of a multidisciplinary research clinic for patients with work-related upper extremity disorders.

The health care reform debate has focused attention on the need for outcomes research performed in ambulatory care settings. In this article, the authors describe the development of a research clinic focusing on symptomatic, functional, and vocational outcomes of patients with work-related upper extremity disorders. The authors describe the programmatic and research challenges associated with performing such research and emphasize the need for balancing the research and clinical agendas. Research efforts in this setting require careful consideration of the patient selection process and allocation of sufficient time for the clinical staff to collect and record essential research data.

Academic Medical Centers↗

Musculoskeletal abnormalities of the forearm in patients with juvenile idiopathic arthritis relate mainly to bone geometry.

OBJECTIVE: Alterations of the skeletal system, including reduced bone mineral density, increased frequency of fractures, and changes in markers of bone metabolism, have been described in juvenile idiopathic arthritis (JIA), but measurement of volumetric bone density and bone geometry is not possible with the techniques used in most studies. This study was undertaken to obtain a more detailed understanding of the musculoskeletal system in JIA by analyzing bone density, bone geometry, and muscle force as the most important factor in bone development. METHODS: The technique of peripheral quantitative computed tomography was used in a cross-sectional study of 57 children with the oligoarticular, polyarticular, or systemic form of JIA. Density of trabecular and cortical bone as well as geometric parameters of bone and muscle were measured at the forearm. RESULTS: Children in all subgroups had significantly reduced muscle cross-sectional area, which was strongly correlated with muscle force and abnormalities in geometric parameters of bone, including a significant reduction in cortical thickness. Trabecular density was affected only in the polyarticular JIA group, and cortical density was normal in all subgroups. CONCLUSION: Our results suggest that an important problem in JIA is the lack of muscle mass and force, together with abnormal bone geometry. The thinned bony cortices might predispose to fractures even though cortical bone density itself is normal. These results might have implications with regard to therapeutic approaches to preserve musculoskeletal integrity in JIA.

Adolescent↗

Chondrogenitor cells and gene therapy.

The development of isolation and culture techniques for mesenchymal progenitor cells from various tissues has promoted interest in the use of these cells for repair and regeneration of musculoskeletal tissues. The chondrogenic differentiation of these pluripotential cells seems to be mediated by numerous cytokines most of which belong to the transforming growth factor-beta superfamily. Strategies to repair articular cartilage have focused on delivery of these cytokines or progenitor cells to the area of damage. More recently, with the development of gene transfer techniques, these cells have become the target of in vivo gene therapy, which involves direct injection of viral and nonviral vectors carrying transgenes. Furthermore, they are viewed as potential carriers of the transgenes for ex vivo gene therapy, in which the gene transfer is done in vitro with culture-expanded cells that then are implanted or injected. In vitro data suggest that the chondrogenic potential of these cells is maintained with virally mediated ex vivo gene transfer. By transducing these cells with chondroinductive factors, the bioactive factors and the target cells are delivered to the repair site.

Animals↗

[The experience of the EPM (Ergonomics of Posture and Movement) Research Unit in risk analysis and the prevention of work-related musculo-skeletal diseases (WMSDs)].

The twenty-year experience of the "Ergonomics of Posture and Movement (epm)" Research Unit for prevention of work-related musculoskeletal disorders (WMSDs) is briefly summarized. The epm research unit is the outcome of an agreement between Milan University (Clinica del Lavoro Luigi Devoto), Milan Polytechnic, Don Gnocchi Foundation IRCCS (Bioengineering Centre) and the Regional Health Service (CEMOC of ICP Hospital). Early activities of epm (1985-1993) are first outlined: they are characterized by a wide range of laboratory studies allowing the development of original methods and criteria for on-site analysis of fixed postures and awkward movements and for ad hoc clinical examination of the musculoskeletal apparatus in working populations. Epm contributions are reviewed for the analysis of working activity involving manual load handling (adapted NIOSH method) and hospital patients (MAPO method) as well as for standardization of health surveillance protocols of spinal diseases. Updated contributions are reported on analysis and prevention of upper limb MSDs connected with upper limb repetitive movements (OCRA method). Finally epm's main collaborations with national and international Authorities are summarized as well as the major technical (health promotion) publications addressed to operators and workers, in different working situations, for prevention of musculoskeletal disorders due to biomechanical overload.

Ambulatory Care Facilities↗

Employer attitudes, training, and return-to-work outcomes: a pilot study.

This work was concerned with investigating and changing employer attitudes and practices that impede return to work and rehabilitation for injured workers. Prior studies have shown that employer responses to workers reporting work-related musculoskeletal discomfort have significant and independent effects on disability outcomes. Based on these findings, a pilot training program was developed by occupational rehabilitation specialists to improve the response of supervisors to employees reporting work-related injuries. The training was delivered to 108 supervisors at seven southeastern New Hampshire companies that volunteered to participate. A survey was developed and pilot-tested, then administered before the training. Survey participants were employees who had work-related injuries in the past year. The survey asked about types and onset of injury, specific supervisor responses, and overall impression of supervisor interaction at the time of injury. Employee responses before the intervention were compared with those collected from workers who reported injuries after the training. The postintervention results demonstrated significant decreases in supervisors (1) blaming employees for the injury, (2) not taking the condition seriously, and (3) discouraging the worker from filing a claim. Positive trends in confidentiality of discussions, access to medical care, and accommodation and work modifications were also noted. Although anecdotal reports from the companies indicated a consistent decrease in work-related lost time after the intervention, actual verification was not possible, and other components of the intervention may have accounted for this outcome. Small numbers of cases and possible lack of comparability of cases before and after the intervention are significant limitations. However, rehabilitation professionals may be able to improve disability management practices and accommodations through employer education, especially when training is directed toward front-line supervisors.

Attitude↗

The nature of work-related neck and upper limb musculoskeletal disorders.

The nature of work-related musculoskeletal disorders of the neck and upper limbs is reviewed using both scientific data and the consensus view of experts, union bodies and government agencies across the European Union. Work-related musculoskeletal disorders describe a wide range of inflammatory and degenerative diseases and disorders. These conditions result in pain and functional impairment and may affect, besides others, the neck, shoulders, elbows, forearms, wrists and hands. They are work-related when the work activities and work conditions significantly contribute to their development or exacerbation but are not necessarily the sole determinant of causation. The classification and the need for standardised diagnostic methods for assessment of neck and upper limb musculoskeletal disorders are reviewed. These disorders are a significant problem within the European Union with respect to ill health, productivity and associated costs. The pathomechanisms of musculoskeletal disorders affecting tendons, ligaments, nerves, muscle, circulation and pain perception are reviewed and conceptual models for the pathogenesis of musculoskeletal disorders affecting the neck and upper limbs are presented. The epidemiological evidence on the work-relatedness of these disorders is discussed. A relationship between the performance of work and the occurrence of neck and upper limb musculoskeletal disorders is evident. Intervention strategies in the workplace for the reduction of both exposure and effect should focus upon factors within the work organisation as well as actively involving the individual worker. The current knowledge is sufficient to enable informed decisions to be made on future research needs and prevention strategies at the societal, organisational and individual level.

Adult↗

MR imaging of muscle and tender points in fibromyalgia.

Fibromyalgia is a syndrome manifested by chronic, diffuse musculoskeletal aching and soreness, palpable muscle tender points, and other symptoms. Standardized clinical diagnostic criteria have recently been developed. Skeletal muscle has been postulated as the end organ in this disease. Biochemical, histologic, electromyographic, and conventional radiographic studies have demonstrated no definitive abnormality. This study sought to establish whether magnetic resonance (MR) imaging could demonstrate any abnormality in these patients. Eighteen patients were entered in the study, 14 of whom were able to complete their examinations. T1-weighted, T2-weighted, gradient-echo, and STIR (short-tau inversion-recovery) sequences were performed in all patients, with selected patients examined with T1-weighted, gadopentetate dimeglumine-enhanced sequences. The trapezius and suboccipital regions were imaged in patients who, clinically, had active fibromyalgia. No abnormalities could be detected. The authors conclude that the conventional MR imaging used in this study was unable to depict any primary skeletal muscle abnormality in fibromyalgia.

Adult↗

Salvage of the upper extremity in cases of tumorous destruction of the proximal humerus.

Malignant bone tumours or metastasis of the upper humerus may cause significant loss of function especially in those patients with resectional arthroplasty of the shoulder. One method for achieving functional reconstruction of the humerus concerned is replacement with a modular endoprosthesis. Little is known about clinical and radiological results in these rare circumstances. Between 1993 and 1997 we treated 21 patients (22 shoulders) with enlarged osteolytic destructions of the proximal humerus caused by metastatic spread or primary malignant tumours. Patients with additional involvement of the glenoid were excluded from this study. The average follow-up was 3.9 years. Every 3 months all patients were followed-up clinically and radiographically. Prior to surgery, diagnosis was established by incisional biopsy and the outcome determined the therapeutic algorithm (radiotherapy, chemotherapy, surgery). In most cases of metastatic lesions, surgery was the first treatment. According to the regional spread of the tumour, various amount of bone and soft tissues had to be removed. The distal stem of the prosthesis was inserted in a cementless way and secured to bone with two interlocking screws. The length of the diaphyseal part depended on the site of osteotomy. Soft-tissue coverage of the large implant was achieved in all patients. Early complications were lymphogenic oedema and superficial wound dehiscence. One patient developed a deep infection, which had to be managed surgically. According to the functional rating system of the Musculoskeletal Tumour Society for the upper extremity the overall results were inversely proportional to the extent of resection. None of our patients achieved unrestricted motion of the shoulder concerned. The most important finding was a proximal migration of the prosthesis causing a painful subacromial impingement, mainly a consequence of the resection of the deltoid muscle and the rotator cuff. In summary, a modular endoprosthesis cannot be recommended generally as the method of choice. If the muscular balance of the shoulder is too weak to act as a joint centralizer the endoprosthesis has no advantage over a simple diaphyseal spacer.

Adult↗

A new view of patterning domains in the vertebrate mesoderm.

The musculoskeletal system of vertebrates is derived from the embryonic mesoderm. Its structures are categorized as epaxial or hypaxial based on their adult position and innervation. The epaxial/hypaxial terminology is also used to describe regions of the embryonic somites based on fate mapping of somitic derivatives. However, the adult, functional distinctions are not fully consistent with the changing embryonic environments of mesodermal populations during morphogenesis, and the traditional terminology loses accuracy when used to describe certain mutant phenotypes. Here we describe a new terminology naming two mesodermal environments defined by the lineage of the included cells. We discuss how mutant phenotypes may be better explained by consideration of the embryonic context in which genes take their effect and argue that the recognition of these embryonic territories clarifies description and discussion of the morphogenesis and patterning of the musculoskeletal system.

Animals↗

Multiple defects and perinatal death in mice deficient in follistatin.

Follistatin, an activin-binding protein and activin antagonist in vitro, can bind to heparan sulphate proteoglycans and may function in vivo to present activins to their receptors. In the mouse, follistatin messenger RNA is first detected in the deciduum (on embryonic day 5.5), and later in the developing hindbrain, somites, vibrissae, teeth, epidermis and muscle. In Xenopus laevis, overexpression of follistatin leads to induction of neural tissue. Here we use loss-of-function mutant mice to investigate the function of follistatin in mammals. We find that follistatin-deficient mice are retarded in their growth, have decreased mass of the diaphragm and intercostal muscles, shiny taut skin, skeletal defects of the hard palate and the thirteenth pair of ribs, their whisker and tooth development is abnormal, they fail to breathe, and die within hours of birth. These defects are more widespread than those seen in activin-deficient mutant mice, indicating that follistatin may modulate the actions of several members of the transforming growth factor-beta family.

Animals↗

Myogenic expression of an injectable protease-resistant growth hormone-releasing hormone augments long-term growth in pigs.

Ectopic expression of a new serum protease-resistant porcine growth hormone-releasing hormone, directed by an injectable muscle-specific synthetic promoter plasmid vector (pSP-HV-GHRH), elicits growth in pigs. A single 10 mg intramuscular injection of pSP-HV-GHRH DNA followed by electroporation in three-week-old piglets elevated serum GHRH levels by twofold to fourfold, enhanced growth hormone secretion, and increased serum insulin-like growth factor-I by threefold to sixfold over control pigs. After 65 days the average body weight of the pigs injected with pSP-HV-GHRH was approximately 37% greater than the placebo-injected controls and resulted in a significant reduction in serum urea concentration, indicating a decrease in amino acid catabolism. Evaluation of body composition indicated a uniform increase in mass, with no organomegaly or associated pathology.

Animals↗

Fear of movement/(re)injury, avoidance and pain disability in chronic low back pain patients.

Chronic pain syndromes such as chronic low back pain are responsible for enormous costs for health care and society. For these conditions a pure biomedical approach often proves insufficient. Numerous studies have shown that there is little direct relationship between pain and disability and suggest that the biopsychosocial approach offers the foundations for a better insight in how pain can become a persistent problem. The main assumption is that pain and pain disability are not only influenced by organic pathology, if found, but also by psychological and social factors. In this contribution, a behavioural analysis of chronic musculoskeletal pain will be discussed, with special attention to the role of pain-related fear in the development and maintenance of chronic pain disability, and the behavioural rehabilitation perspective of chronic pain management.

Avoidance Learning↗

Magnetic resonance angiography. Application to the peripheral circulation.

Magnetic resonance angiography (MRA) for application in the musculoskeletal system is progressing at a rapid pace. The clinical role of this new technique is still being developed, although a number of uses have already become well recognized, and MRA is diffusing into clinical practice. This article describes the basic fundamentals of MRA as it applies to the peripheral circulation and to the evaluation of potential clinical procedures.

Blood Vessels↗