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D B Sodee

Publications and source records attributed to D B Sodee.

17 recordsLinked to original sources

Prospective comparison of dual-phase technetium-99m-sestamibi scintigraphy and high resolution ultrasonography in the evaluation of abnormal parathyroid glands.

Technetium-99m-sestamibi (MIBI) is a new radionuclide for imaging parathyroid tissue. The purpose of this study was to evaluate parathyroid localization using single radiotracer, dual-phase MIBI scintigraphy and to compare the results to ultrasonography. Twenty-one patients with hyperparathyroidism underwent dual-phase scintigraphy using 25 mCi MIBI and high resolution ultrasonography before parathyroidectomy. Scan results were correlated with size, weight, location, and histopathology of excised parathyroid glands, thyroid abnormalities, and cost. Seventeen patients were female, five had secondary or tertiary hyperparathyroidism, and three had a previous parathyroid exploration. Twenty patients (95%) were cured, 14 with a single and 1 with a double adenoma, and 5 of 6 patients with generalized hyperplasia. There were no false positive MIBI scans and one false positive ultrasound study, despite associated thyroid nodules in 29 per cent of patients. The sensitivity of MIBI and ultrasound in the identification of adenomas was 87 per cent versus 57 per cent (P = 0.046), and the rate of detection of hyperplastic glands was 44 per cent versus 24 per cent (P = 0.19), respectively. There was no correlation between scan results and size, weight, or location of adenomatous glands. The cost of dual-phase MIBI was comparable to that of ultrasound. Dual-phase MIBI is more sensitive than ultrasound in the localization of adenomas and is the preferable modality for preoperative parathyroid localization. Neither MIBI nor ultrasound is effective in localization of hyperplastic glands, underscoring the importance of routine bilateral neck exploration.

Adenoma

Use of Tc-99m sestamibi infusion for detection of hibernating myocardium. A preliminary report.

To evaluate whether a prolonged infusion of Tc-99m sestamibi allows for visualization of viable myocardium in areas of hypoperfused myocardium, 25 patients were prospectively studied. Each patient was imaged four times in two consecutive days in the following manner: day 1:1) immediately after injection of Tl-201 at rest, 2) 1 hour after a bolus injection of Tc-99m sestamibi at rest; and day 2: 1) imaging in the Tl-201 window for 24 hour redistribution, 2) imaging after a 1-hour infusion of Tc-99m sestamibi. The two Tc-99m sestamibi and two Tl-201 studies were evaluated for presence of redistribution. This was present both on the Tl-201 and Tc-99m sestamibi studies (concordant) in 13 cases, and absent on both the Tl-201 and Tc-99m sestamibi studies (concordant) in 9 cases. In two cases redistribution was seen on the Tl-201 images only, and in one case it was seen on the Tc-99m sestamibi images only (discordant). Tc-99m sestamibi infusion may provide information about the presence of viable myocardium which is similar to that provided by Tl-201 24-hour imaging.

Coronary Disease

Diagnostic accuracy of nuclear medicine SPECT imaging.

SPECT imaging was utilized in 1052 liver/spleen and 338 brain imaging evaluations. In a quality assurance retrospective analysis with clinical and tissue diagnoses, SPECT liver images had a higher correlation than CT or ultrasound. In brain imaging, SPECT matched MRI in correlation and was more sensitive than CT in evaluating the posterior fossa. SPECT was positive earlier than CT in the discovery of cerebral infarcts. In several cases, primary brain tumors were initially diagnosed on SPECT images. SPECT imaging is a cost effective modality.

Brain Neoplasms

Pancreatic scanning.

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Evaluation Studies as Topic

Brain scanning.

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Adult