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M J Tuite

Publications and source records attributed to M J Tuite.

24 records · Page 2Linked to original sources

MRI of selected sports injuries: muscle tears, groin pain, and osteochondritis dissecans.

This article discusses three selected areas of sports medicine in which MRI is useful. The first is muscle injuries and includes the MRI findings in muscle tears, contusions, and myositis ossificans. The second section discusses the usefulness of MRI in imaging the athlete with groin pain, which is a difficult clinical problem for the orthopedist. The ability of MRI to differentiate between such causes of groin pain as osteitis pubis, bursitis, and stress fractures is shown. The final section covers plain radiographic and MRI findings in osteochondritis dissecans. Also discussed is the MRI staging of osteochondritis dissecans, which is important in treatment decisions and surgical planning.

Athletic Injuries↗

MR diagnosis of meniscal tears: analysis of causes of errors.

OBJECTIVE: MR imaging of the knee is an accurate method for diagnosing meniscal tears. However, MR findings do not always agree with surgical findings. In a retrospective study, we analyzed the various causes of incorrect MR diagnoses. MATERIALS AND METHODS: We reviewed a series of 400 MR examinations for suspected meniscal tears in which the diagnostic accuracy was 90%. In this group, we found 70 patients in whom the original MR diagnosis did not agree with the surgical findings. Three musculoskeletal radiologists independently reviewed each of the 70 MR examinations without knowledge of the original interpretation or the surgical findings. Their interpretations and the MR images then were correlated with the surgical findings. The original incorrect diagnoses were categorized as being due to unavoidable errors, errors in interpretation, or errors made because of equivocal MR findings of a tear. Unavoidable errors were defined as false-positive and false-negative diagnoses that could not be avoided, even in retrospect. RESULTS: Of the 83 original diagnostic errors made in the MR evaluation of 800 menisci, 33 (40%) were unavoidable errors, 32 (39%) were due to equivocal MR findings, and 18 (21%) were due to interpretation errors. The unavoidable errors consisted of 21 missed meniscal tears and 12 false-positive MR diagnoses. In the false-positive cases, the menisci were interpreted as torn on MR images by all three observers, but no tear was found at arthroscopy. Subtle MR findings that were equivocal for a tear caused both false-positive and false-negative diagnoses. Seven of the 18 interpretation errors occurred when normal variants were mistaken for a tear. CONCLUSION: Using conventional coronal and sagittal spin-echo MR imaging, we could not identify 21 (6%) of the 333 meniscal tears, even in retrospect. In addition, subtle findings that are equivocal for a tear may still make MR diagnosis of every torn meniscus difficult even for experienced radiologists. Unavoidable false-positive diagnoses due to healed tears or tears missed at arthroscopy are an infrequent problem occurring in only 1.5% of the original 800 menisci evaluated with MR imaging.

Diagnostic Errors↗

Opportunistic cerebral vasculopathy and stroke in patients with the acquired immunodeficiency syndrome.

OBJECTIVE: To describe an unusual cause of stroke in patients with the acquired immunodeficiency syndrome. DESIGN: An observational case series of hospitalized patients with subsequent autopsy. MEASURES: Clinical, radiological, and pathological examinations were performed. RESULTS: In three of 14 patients with stroke, the infarctions were secondary to an opportunistic vasculopathy caused by Candida albicans, cytomegalovirus, or lymphoma. CONCLUSION: Opportunistic conditions may lead to vascular abnormalities and subsequent stroke in patients with the acquired immunodeficiency syndrome.

Acquired Immunodeficiency Syndrome↗

Acromial structure and tears of the rotator cuff.

Rotator cuff lesions have been related to the structure of the acromion. We report a clinical review of 56 shoulders and the analysis of their acromial structure as seen on the radiographic arch (outlet) view and magnetic resonance imaging. The shoulders were classified as acromial type I (flat), type II (curved), or type III (hooked). On plain radiographs 89% of type III acromions had tearing of the rotator cuff (p < 0.001). The association between acromial type as determined on magnetic resonance imaging and the presence of rotator cuff tearing was less significant. Magnetic resonance imaging offered no additional benefit over plain radiographs for determining acromial type. In addition, a method of quantitating acromial structure (the "acromial angle") was devised. This angle showed a significant association with acromial types (p < 0.0001) seen on plain radiographs and had good interobserver reproducibility (coefficient of variation, 0.1). With this measurement system a type I acromion had an acromial angle of 0 degrees to 12 degrees; a type II acromion, 13 degrees to 27 degrees; and a type III acromion, greater than 27 degrees.

Acromion↗