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T Zajic

Publications and source records attributed to T Zajic.

4 recordsLinked to original sources

PET with 18F-DOPA in the imaging of parathyroid adenoma in patients with primary hyperparathyroidism. A pilot study.

UNLABELLED: Preoperative localization of parathyroid adenomas (PA) can shorten operation time and improve curative rate; it becomes especially important in minimally invasive surgical techniques. AIM of this study was to investigate whether positron emission tomography (PET) with 3-,4-dihydroxy-6- (18) F-fluorophenylalanine ( (18) F-DOPA), which showed very promising results in other neuroendocrine tumours, also helps to localize PA. PATIENTS, METHODS: Eight patients with proven primary hyperparathyroidism were studied preoperatively with PET. Seven also underwent scintigraphy with (99m) Tc-MIBI and ultrasonography of the neck. All patients were operated and the histological finding was used as a gold standard. RESULTS: All eight patients had a histologically proven PA. None of the PA showed any detectable uptake of (18) F-DOPA. However, ultrasonography detected 5/7 PA, scintigraphy detected 3/7 PA. CONCLUSION: These results suggest that PET with (18) F-DOPA is not useful in the detection of PA in patients with primary hyperparathyroidism.

Adenoma↗

Guidelines on radioiodine therapy for differentiated thyroid carcinoma: impact on clinical practice.

AIM: For the examination of the impact on clinical practice of the guidelines for differentiated thyroid carcinoma (DTC), treatment data from the ongoing Multicenter Study Differentiated Thyroid Carcinoma (MSDS) were analyzed. PATIENTS, METHODS: Patients were randomized to adjuvant external beam radiotherapy (RTx) or no RTx in addition to standard therapy in TNM stages pT4 pN0/1/x M0/x (UICC, 5th ed. 1997). All patients were to receive the same treatment regimen consisting of thyroidectomy, ablative radioiodine therapy (RIT), and a diagnostic 131I whole-body scintigraphy (WBS) 3-4 months after RIT. RESULTS: Of 339 eligible patients enrolled between January 2000 and March 2004, 273 could be analyzed. Guideline recommendations by the German Society for Nuclear Medicine from 1999 and 1992 were complied with within 28% and 82% with regard to the interval between surgery and RIT (4 vs. 4-6 weeks), in 33% and 84% with regard to 131I activity for RIT (1-3 vs. 1-4 GBq; +/- 10%), and in 16% and 60% with regard to 131I activity for WBS (100-300 vs. 100-400 MBq; +/- 10%). CONCLUSIONS: The 1999 guideline revision appears to have had little impact on clinical practice. Further follow-up will reveal if guideline compliance had an effect on outcomes.

Combined Modality Therapy↗

[Procedure guidelines for dynamic renal scintigraphy].

This procedure guideline describes the procedures for dynamic renal scintigraphy with (99m)Tc-MAG3, (123)I-hippuran and (99m)Tc-DTPA. Common clinical applications as well as a detailed description of the procedure are given. It also includes explanations and hints concerning the analysis, evaluation, interpretation, and presentation of the findings.

Contraindications↗

[Assessment of left ventricular function and volume by myocardial perfusion scintigraphy--comparison of two algorithms].

AIM: Left ventricular volume and function can be computed from gated SPECT myocardial perfusion imaging using Emory Cardiac Toolbox (ECT) or Gated SPECT Quantification (GS-Quant). The aim of this study was to compare both programs with respect to their practical application, stability and precision on heart-models as well as in clinical use. METHODS: The volumes of five cardiac models were calculated by ECT and GS-Quant. 48 patients (13 female, 35 male) underwent a one day stress-rest protocol and gated SPECT. From these 96 gated SPECT images, left ventricular ejection fraction (LVEF), end-diastolic volume (EDV) and end-systolic volume (ESV) were estimated by ECT and GS-Quant. For 42 patients LVEF was also determined by echocardiography. RESULTS: For the cardiac models the computed volumes showed high correlation with the model-volumes as well as high correlation between ECT and GS-Quant (r > or = 0.99). Both programs underestimated the volume by approximately 20-30% independent of the ventricle-size. Calculating LVEF, EDV and ESV, GS-Quant and ECT correlated well to each other and to the LVEF estimated by echocardiography (r > or = 0.86). LVEF values determined with ECT were about 10% higher than values determined with GS-Quant or echocardiography. The incorrect surfaces calculated by the automatic algorithm of GS-Quant for three examinations could not be corrected manually. 34 of the ECT studies were optimized by the operator. CONCLUSION: GS-Quant and ECT are two reliable programs in estimating LVEF. Both seem to underestimate the cardiac volume. In practical application GS-Quant was faster and easier to use. ECT allows the user to define the contour of the ventricle and thus is less susceptible to artifacts.

Algorithms↗