PubMed Health⌕ Search

SEARCH · PubMed Health

Results for “Musculoskeletal System”

Explore indexed PubMed citations for clinical trials, systematic reviews and public health research. Read source abstracts and follow each citation to its original PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 127 records · Page 7Linked to original sources

[Infections of the musculoskeletal system with chronic polyarthritis during a combination therapy with Methotrexate and Leflunomide].

AIM: The long-term results of rheumatoid arthritis are unsatisfactory despite the mono or combination therapy of conventional "disease-modifying antirheumatic drugs". Therefore in the recent past the administration of a combination of Methotrexate with Leflunomide takes place more frequently. To what extent the perioperative infection rate is influenced by the individual immune-modulating drugs, is still disputed and should quantified on the basis the rheumatism orthopaedic patient collective of an orthopaedic university clinic. METHOD: The clinical progresses of patients after operative treatment in the orthopaedic hospital, since introduction of the Leflunomide, were evaluated with regard to perioperative infection. RESULTS: Of 16 patients, who were observed during a period of 1,5 years under a combination therapy by MTX/Leflunomide, three exhibited a heavy infection of the musculoskeletal system. CONCLUSION: The combination of the two above mentioned drugs affects different pathophysiological processes. Synergistic effects in therapy but also with regard to side effects must be expected. First available reports on this combination therapy do not refer to a increased infection/risk. The observation of three serious infections under the combination MTX/Leflunomide prompted us to call attention to this risk. In particular with infection-susceptible bone-surgical operations such a combination of immune-modulating medicines should be employed with caution. The recent literature is discussed.

Antirheumatic Agents↗

A system for the functional evaluation of reconstructive procedures after surgical treatment of tumors of the musculoskeletal system.

The need for a standardized system of end result reporting of various surgical alternatives after limb salvaging and ablative procedures for musculoskeletal tumors was clearly recognized during the first International Symposium on Limb Salvage (ISOLS) in 1981. During the ensuing four biannual symposia, there has been an ongoing developmental experience with a system extensively field tested in 1989 by the Musculoskeletal Tumor Society (MSTS). This system of functional evaluation has been adopted by the MSTS and ISOLS for their joint studies and program presentation. In brief, the system assigns numerical values (0-5) for each of six categories: pain, and function and emotional acceptance in upper and lower extremities; supports, and walking and gait in the lower extremity; and hand positioning, and dexterity and lifting ability in the upper extremity. Demographic information and a patient satisfaction component is included. A numerical score and percent rating is calculated to allow for comparison of results. The system has been field tested in 220 patients with low (+/-) interobserver variability. It was well accepted by the participants, and its usage is recommended by the MSTS to facilitate valid comparative end result studies of musculoskeletal tumor reconstructions.

Activities of Daily Living↗

A biomechanics-based method for the quantification of muscle selectivity in a musculoskeletal system.

In this paper, we have developed a novel and simple method to quantify the ability to selectively activate our muscles in an effective pattern to achieve a particular task. In the context of this study, we define an effective pattern as that in which muscles whose mechanical contribution to the task is greatest, are mostly active, while the antagonist muscles are mostly silent. This new method uses biomechanical parameters to project the multi-channel EMGs into a three-dimensional artificial torque space, where the EMGs are represented as muscle activation vectors. Using the muscle activation vectors we defined a simple scalar, the muscle selection index, to quantify muscle selectivity. We demonstrate that by using this index we are able to quantify the muscle selectivity during the generation of isometric shoulder or elbow torques in brain-injured and able-bodied subjects. This method can be used during both static and dynamic motor tasks in a multi-articular musculoskeletal system.

Animals↗

Magnetic resonance: new approaches to imaging of the musculoskeletal system.

Recent technical advances in magnetic resonance imaging are reviewed. Purpose designed musculoskeletal magnetic resonance (MR) systems are now available. A great deal of pulse sequence development has been carried out with ultrashort TE (UTE) imaging, blood oxygenation level detection (BOLD) studies, diffusion weighted and other sequences. Image processing and measurement techniques have improved. In hyaline articular cartilage the deep layer can now be identified. Contrast agents are now being used to study the reduction in proteoglycans in cartilage. Enhancement is seen in tendons, ligaments and menisci and can be used to study perfusion. Signal is detected from cortical bone and periosteum and this can be used to monitor perfusion in serial studies. Muscle metabolism can also be studied. Contrast transport into intervertebral discs can be observed as well as effects attributable to iron deposition.

Humans↗

Comparison of tail-suspension and sciatic nerve crush on the musculoskeletal system in young-adult mice.

Musculoskeletal unloading and disuse result in significant muscle and bone loss. These phenomena can be modeled using sciatic nerve crush or tail-suspension. Mature animals eliminate the complication of growth superimposed on bone and muscle loss. In the current study, young-adult (12-week old male) C57BL/6J mice were subjected to sciatic nerve crush (NC; n = 9) or tail-suspension (TS; n = 9) for 14 days, with a normal ambulatory control (n = 10). The soleus, gastrocnemius, and EDL muscles were collected and weighed at sacrifice. Femurs were analyzed in three-point bending for stiffness, elastic force and maximum force. Muscle masses in tail suspended mice were reduced by 41.9% (p < 0.001), 17.5% (p < 0.001), and 9.1% (N.S.) for the soleus, gastrocnemius, and EDL, respectively. In NC mice, muscle masses were reduced by 18.6% (p = 0.004), 37.2% (p < 0.001), and 22.5% (p = 0.003). Femur stiffness, elastic and maximum forces were reduced by 20.9% (p = 0.014), 14.7% (N.S.), and 11.6% (N.S.) in TS, compared to NC where masses were reduced by 15.5% (p = 0.022), 0.2% (N.S.) and 11.2% (N.S.) in the crushed leg compared to the contralateral control. NC resulted in a greater reduction of muscle mass in the gastrocnemius and EDL muscle; whereas tail-suspension had a greater effect on the soleus. Tail-suspension had the greatest effect on bone mechanical properties. When comparing these results to actual spaceflight data, it appears as though TS most closely models muscle loss, and NC most closely models changes in bone mechanical properties. These unloading models have tissue-specific effects that impact their applications for musculoskeletal research.

Adaptation, Physiological↗