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Biomedical subjects

R B Staron

Publications and source records attributed to R B Staron.

4 recordsLinked to original sources

The symptomatic accessory tarsal navicular bone: assessment with MR imaging.

PURPOSE: To determine if a symptomatic accessory navicular bone, a normal variant, displays a pattern of altered signal intensity on magnetic resonance (MR) images indicative of an abnormality that could account for the patient's foot pain. MATERIALS AND METHODS: Both feet were imaged in seven patients with an accessory navicular bone on radiographs and unilateral foot pain. Five patients had focal medial foot pain, and two had vague, diffuse pain. T1-weighted spin-echo and T2-weighted fat-suppressed sequences were used. RESULTS: A bone marrow edema pattern (BMEP) was noted in the accessory navicular bones of the five patients with focal pain and in the adjacent navicular tuberosities of three of them. The two patients with vague pain showed no osseous or soft-tissue abnormalities. Two patients with positive MR images underwent surgical excision of the accessory navicular bone, and histologic examination revealed osteonecrosis in one patient. CONCLUSION: The BMEP in a symptomatic accessory navicular bone is indicative of chronic stress and/or osteonecrosis. This information can furnish an objective basis for surgical or conservative management.

Adult

Magnetic resonance imaging of the foot and ankle.

Beginning with its early success in the hip and knee, magnetic resonance has been universally acknowledged as a major advance in musculoskeletal imaging. Subsequent technical improvements encouraged its rapid adaptation for delineating wrist and shoulder joint pathology. In part because of the small, complex curvilinear structures involved, however, the required technology as well as the potential advantages of magnetic resonance imaging in the ankle and foot were realized only recently. This article illustrates some of the clinical applications of magnetic resonance imaging in foot and ankle pathology.

Ankle

Magnetic resonance imaging of para-articular and ectopic ganglia.

This study was undertaken to evaluate the efficacy of magnetic resonance imaging in (1) improving preoperative identification of soft tissue ganglia and in (2) enhancing management by defining their origins, attachments, and extensions. Magnetic resonance images of 17 ganglia were evaluated for intrinsic signal, internal structure, overall shape, and relationship to joints and tendon sheaths using a Philips 0.5 Tesla superconductive magnet with receiver dedicated surface coils. Magnetic resonance imaging proved particularly well suited to delineating soft tissue ganglia and characterizing several of their distinctive diagnostic features which are not optimally imaged by other modalities such as computed tomography and ultrasound.

Adolescent

Computed tomographic volumetric calculation reproducibility.

Previous studies have described computed tomographic (CT) measurement of the total volume of large organs and tumors. This study examines sources of error in the CT volumetric measurement of small anatomic structures, and has potential application to the volumetric measurement of small extravisceral tumors. Volume is determined by multiplying observer measurement of area by the CT slice thickness. We focused on the measurement of small cross-sectional areas as a major source of error in volumetric calculations. One observer made ten area measurements on each of 12 structures of various sizes. For areas larger than 8 to 10 cm2, any single measurement was within 2 to 4% of the mean of ten values. For areas smaller than 8 to 10 cm2, measurements varied more with respect to the mean, and rose approximately exponentially as the measured cross-sectional area approached zero.

Humans