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At least 19 recordsLinked to original sources

An overview of neuroimmunomodulation and a possible correlation with musculoskeletal system function.

There is an increasing body of evidence that the nervous system is capable of modulating the immune response. Receptors for neuromodulators and neurohormones have been found on human T lymphocytes. Activation of these receptors can be stimulatory or inhibitory depending on the neuroactive substance. The immune system may be able to communicate with the nervous system using neuromodulators and neurohormones secreted by lymphocytes. Sympathetic innervation of lymphoid tissues is not restricted to blood vessels and smooth muscle, but directly supplies lymphocytes and blood precursor cells. It is theorized that spinal fixations may adversely affect the immune response through somatosympathetic reflexes. Spinal manipulation can correct the spinal fixations and may eliminate the adverse affects of somatosympathetic reflexes.

Humans

Laboratory diagnosis of postoperative sepsis of the musculoskeletal system.

The diagnosis of acute sepsis after musculoskeletal surgery is based on the results of the clinical examination. Microbiologic evaluation of clinical specimens permits identification of the causal organism(s) and of the susceptibility studies. In the subacute stage of postoperative sepsis, roentgenographic examination, a peripheral leukocyte count, erythrocyte sedimentation rate, hemoglobin level, and nuclear scans can be helpful to the clinician. Frozen section histologic examination of tissues and Gram staining of fluids obtained at surgery have resolved the choice in differential diagnosis between aseptic and septic loosening of painful prosthetic components. Laboratory evaluation, including tissue biopsy, identifies the chronic complications of amyloidosis and malignant change in patients with long term sepsis of the musculoskeletal system.

Arthritis, Infectious

[Tissue bank for the musculoskeletal system. Clinical applications].

From June 1987 to June 1990, the musculoskeletal system tissues bank of the Orthopaedics and Traumatology Department of the University Clinic of Navarra has used 310 allografts. Of this, 219 has been used in our Department, 142 of cancellous bone and 42 of cortical bone. 24 of patellar tendon and 11 of fascia lata. The other 91 grafts have been sent to other hospitals in the country. In the present work we make a retrospective study that included the patients who were operate with allograft. We observe the differences between several types of allografts comparing them with conventional surgery technics. Within the complications we distinguished a 10.52% of infection in cortical bone allografts used in patients with neoplastic treatment. In the other type of allograft we didn't present this complication. We concluded that a bone bank or a musculoskeletal system tissues bank has a great usefulness in different reconstructive surgery technics and arthrodesis. They are used more frequent in orthopaedics and traumatology surgery improving the development of this surgery.

Adolescent

Drug-induced lesions of the musculoskeletal system.

Drugs, whether prescribed by physicians or taken without the knowledge of the physician, may result in profound changes in the musculoskeletal system. Some drugs may produce teratogenic changes in the developing fetus frequently, but not necessarily, in association with anomalies of other systems. Other drugs may have their effects on the child or adult, whereas a number of drugs result in either teratogenic or nonteratogenic abnormalities. In the course of evaluating any diagnostic imaging study, it is essential that the radiologist be aware of any drugs that the patient may be taking and be knowledgeable of the radiologic changes that such drugs may produce in the musculoskeletal system.

Abnormalities, Drug-Induced

Sonography of the musculoskeletal system.

High-resolution ultrasound is an imaging technique with increasing applications in the musculoskeletal system. With the development of high-frequency, realtime transducers, detailed images of small superficial structures can be provided. Tendons, muscles, and subcutaneous tissues can be assessed for disruption, masses, or fluid collections. Foreign bodies can be localized to guide surgical excision. Increased use of this diagnostic tool may lead to new applications as the technology improves.

Bone and Bones

Sonography of the musculoskeletal system.

Improved technology and the development of high-resolution transducers have made sonography of the structures of the musculoskeletal system possible. The vast majority of scientific reports on the value of sonography for imaging musculoskeletal abnormalities have been written only in the last decade. Sonography has several inherent advantages: it is relatively inexpensive, allows comparison with the opposite normal side, uses no radiation, and can be performed at bedside or in the operating room if necessary. The advent of MR imaging has revolutionized musculoskeletal imaging and may be used in many instances rather than sonography for evaluating the same abnormalities or anatomic structures. It is important, however, to keep in perspective what the different imaging techniques have to offer, and, if one is just as efficacious as the other, the least invasive and least expensive should be chosen whenever possible. The goal of this article is to review the applications of sonography to the evaluation of musculoskeletal disorders including tendon disease, soft-tissue masses, identification of foreign bodies, osteomyelitis, cellulitis, and certain joint abnormalities.

Aneurysm

An analysis of the sources of musculoskeletal system impedance.

When antagonistic muscles co-contract, the impedance of musculoskeletal systems to applied loads is known to increase. In this paper a physiologically-based, higher-order, nonlinear antagonistic muscle-joint model is utilized to clarify the sources of impedance modulation during a variety of tasks, ranging from resisting transient loads to holding steady loads to making fast movements in unpredictable surroundings. It is shown that impedance modulation occurs automatically as a function of the specific operating ranges utilized during a given task by each of four different muscle-joint mechanical relations. The relative contribution of each relation depends on the type of task, with impedance during quasi-static conditions sensitive to muscle tension-length and sometimes joint parallel elastic properties and during dynamic tasks dominated by the series element and muscle force-velocity properties. Elimination of any of these causes a decrease in built-in biomechanical capabilities. These findings raise questions concerning past theories on stiffness-impedance modulation which appear to underestimate the role of inherent biomechanical properties.

Biomechanical Phenomena

Radiologic manifestations in the musculoskeletal system of miscellaneous endocrine disorders.

The manifestations of endocrine derangements in the musculoskeletal system in infancy and childhood are disturbances in growth and maturation and in adulthood are disturbances in maintenance and metabolism. Hypercortisolism during skeletal immaturity suppresses growth. In the adult, hypercortisolism leads to osteoporosis, osteonecrosis, and muscle wasting. Deficiency of growth hormone during skeletal development results in short stature. An excess of growth hormone in a skeletally immature individual results in gigantism, an excess in a skeletally mature individual results in acromegaly. Patients with gigantism have extreme height with normal body proportions. Musculoskeletal manifestations of acromegaly include soft-tissue thickening, vertebral body enlargement, characteristic hand and foot changes, and enthesal bony proliferation. Hyperthyroidism causes catabolism of protein and loss of connective tissue, which manifest as muscle wasting. Deficient levels of thyroid hormone cause defects in growth and development. Severe growth retardation from congenital hypothyroidism is rare because neonatal screening recognizes the disorder and leads to early treatment. The skeletal manifestation of hypergonadism in children is precocious growth and early skeletal maturation. Although the initial precocious growth spurt results in a tall child, early closure of the growth plates results in a short adult. Hypogonadism in the prepubertal child results in delayed adolescence and delayed skeletal maturation. Diabetes mellitus in childhood results in decreased growth, a phenomenon presumed to be secondary to nutritional abnormalities. Generalized osteoporosis and short stature are common. In the adult, generalized osteoporosis may accompany insulin-dependent diabetes mellitus if obesity is absent. Calcification of interdigital arteries of the foot is common in diabetics and uncommon in other conditions. Additional skeletal manifestations relate to complications of diabetes such as peripheral neuropathy and diabetic foot disease.

Adult

Computed tomography. Its use in space-occupying lesions of the musculoskeletal system.

The value of computed tomography in the diagnosis and management of lesions of the musculoskeletal system is being determined. Illustrative cases including a lipoma of the thigh, osteochondroma of the hip, simple cyst of the ilium, recurrent liposarcoma of the lumbar spine, desmoid tumor in the gluteal region, and postoperative interspace infection of the lumbar spine are presented to indicate the potential value of this procedure in the diagnosis and planning of treatment of musculoskeletal lesions.

Adolescent

[Occupational diseases of the musculoskeletal system of the SUVA (Swiss Accident Insurance Institute)].

First there is given a definition of occupation related diseases of the musculoskeletal system as a subject to the Swiss federal law of social insurance. As a relation to age and sex, the incidence, the following time of work incapacity and the financial consequences of disability are reported within a period from 1970 to 1983. Although the results are highly specific to Swiss legislation, the international comparison might be of interest.

Adult

Diseases of the musculoskeletal system in children: imaging with CT, sonography, and MR.

We reviewed the applications of CT, sonography, and MR imaging in diseases of the musculoskeletal system in children. Unique advantages of each technique are discussed, and common disease entities and practical applications of the three imaging methods are stressed. Evaluation of congenital dysplasia of the hip, hip effusion, and soft-tissue foreign bodies with sonography are emphasized. The role of CT in imaging patients with congenital dysplasia of the hip, tarsal coalition, osteomyelitis, and benign and malignant bone tumors is stressed. Common applications of MR that are emphasized include imaging of osteomyelitis, musculoskeletal tumors, normal bone marrow, and avascular necrosis. Innovations are briefly discussed, including evaluation of dermatomyositis with MR and imaging sternoclavicular dislocation, congenital vertical talus, and fractures and dislocations with sonography.

Child

Computed tomography of tumors of the musculoskeletal system in children. Clinical applications.

Studies indicate that computed tomography (CT) has several important clinical applications in the evaluation of tumors of the musculoskeletal system. These include (a) diagnosis of lesions involving difficult areas such as the sacrum and ilium, (b) demonstration of soft-tissue components of bone tumors or primary soft-tissue masses, (c) assessment of bone-marrow involvement, and (d) follow-up after irradiation or chemotherapy. Several selected pediatric cases are described in detail.

Adolescent

The untoward effects of steroid treatment on the musculoskeletal system and what to do about them.

The focus of this review is the musculoskeletal side effects of corticosteroids. These untoward effects can be divided into high-dose phenomena (myopathy and aseptic necrosis) and low-dose problems (growth suppression and osteoporosis). For the clinician, the former group may be an uncommon experience whereas the latter group is highly predictable. The low-dose problems are subtle and asymptomatic, and they can occur in spite of alternate day dosing with steroids. Treatments available to prevent or treat these side effects in patients who are unable to discontinue steroids are reviewed.

Adrenal Cortex Hormones

CT of malignant melanoma in the chest, abdomen, and musculoskeletal system.

Malignant melanoma is an aggressive neoplasm that can involve virtually every organ system. This article provides a review of the various appearances on computed tomographic (CT) scans of melanoma involving the chest, abdomen, and musculoskeletal system. Specific emphasis is placed on the typical and atypical CT manifestations of disease as well as the similarity of these findings to those for other disease entities. The importance of accurate staging of melanoma is stressed.

Abdominal Neoplasms

Three-dimensional imaging of the musculoskeletal system: an overview.

The clinical applications of three-dimensional computed tomography (3-D CT) reconstruction continue to expand rapidly. Recently, the field of three-dimensional magnetic resonance (3-D MR) reconstruction has also been developing. Three dimensional imaging offers a new approach to the analysis of complex anatomic relationships. The spatial configuration of an object can be directly displayed without observers requiring mental integration of a series of two-dimensional images. The easily interpretable images of 3-D CT have proven to be useful for surgical planning. Three-dimensional CT displays have used widely in the preoperative planning of craniofacial surgery, dysplastic hips in children, and complex fractures of skeletal systems. However, 3-D MR displays are technically more difficult than those of CT scans, and 3-D MR displays of the musculaskeletal system are still in a developing stage. Recently, we explored the feasibility of 3-D MR displays. This article provides an overview of those areas of the musculoskeletal system where the use of 3-D MR has proven valuable. The current techniques and ongoing applications are also presented. We believe that this exciting development will expand our ability to visualize pathologic anatomy in the near future.

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