PubMed HealthSearch

PubMed · 7280201

Shoulder arthrography.

Abstract

Arthrography of the glenohumeral joint is an important diagnostic tool. The procedure is easy to perform and can be accomplished without significant complications in most individuals. If care is exercised in performing the arthrogram, inadvertent injection of the subacromial (subdeltoid) bursa and soft tissue extravasation of contrast material can be avoided. Mild patient discomfort following the procedure may be diminished if small amounts of xylocaine are added to the injection material. Double-contrast or single-contrast examination can be utilized, depending upon the nature of the suspected underlying process. Arthrography of the glenohumeral joint is most useful in delineating the presence of a complete tear of the rotator cuff. It is also valuable in investigating patients with partial (inner) tears of the cuff, adhesive capsulitis, previous anterior dislocations of the joint, and articular diseases. The procedure can define subtle abnormalities of the bicipital tendon and sheath, and can demonstrate the nature of periarticular soft tissue masses. Although it is expected that additional procedures, such as subacromial bursography and arthrography of the acromioclavicular joint will be advocated in the years to come, arthrography of the glenohumeral joint will remain the most important contrast examination of the abnormal shoulder.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

D Resnick. 1981. Shoulder arthrography.. https://pubmed.ncbi.nlm.nih.gov/7280201/

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related citations

Shoulder pain: a diagnostic dilemma.

The etiology of shoulder pain can usually be placed into one of five categories: fracture and/or contusion, shoulder separation involving the clavicle, instability of the glenohumeral joint, impingement syndrome involving the rotator cuff or biceps tendinitis, and frozen shoulder. Non-shoulder pathology, such as cervical strain, thoracic outlet syndrome and referred pain from phrenic nerve irritation, should be excluded when evaluating patients presenting with shoulder pain. After inflammatory or infectious arthritis has been ruled out, the history should point to either acute trauma or an overuse injury. Physical examination may provide information about neurovascular status, palpable tenderness, range of motion, strength, instability and impingement. Radiographic studies are usually indicated in patients with a history of trauma, but they are often not necessary in the initial evaluation of overuse injuries. Magnetic resonance imaging and arthrograms should be reserved for patients who have not responded to six to eight weeks of conservative treatment and are candidates for surgery.

Acromioclavicular Joint

[Roentgen morphometry of the shoulder in diseased rotator cuff. Value of plain roentgen examination in comparison with arthroscopy].

A comparison between the pathomorphological substrate and the X-ray morphometry of the shoulder joint was made with 482 arthroscopically treated patients. Radiological parameters and indices for the prediction of the development of the impingement-syndrome were developed from this comparison. With these parameters and indices is it possible to predict the pathomorphological substrate and to differentiate between subacromial and coracoidal impingement.

Acromioclavicular Joint

Structure and internal consistency of a shoulder model.

A three-dimensional biomechanical model of the shoulder is developed for force predictions in 46 shoulder structures. The model is directed towards the analysis of static working situations where the load is low or moderate. Arbitrary static arm postures in the natural shoulder range may be considered, as well as different kinds of external loads including different force and moment directions. The model can predict internal forces for the shoulder muscles, for the glenohumeral, the acromioclavicular and the sternoclavicular joint as well as for the coracohumeral ligament. A solution to the statistically indeterminate force system is obtained by minimising an objective function. The default function chosen for this is the sum of the squared muscle stresses, but other objective functions may be used as well. The structure of the model is described and its ingredients discussed. The internal consistency of the model, its structural stability and the compatibility of the elements that go into it, is investigated.

Acromioclavicular Joint