Literature DB >> 8917171

PET and parathyroid L-[carbon-11]methionine accumulation in hyperparathyroidism.

A Sundin1, C Johansson, P Hellman, M Bergström, H Ahlström, G B Jacobson, B Långström, J Rastad.   

Abstract

UNLABELLED: The study was designed to characterize L-[methyl-11 C]methionine accumulation in abnormal parathyroid tissues of hyperparathyroidism (HPT).
METHODS: Thirty-four patients with primary (n = 32) or secondary HPT were investigated with PET before primary or reoperative (n = 25) parathyroid surgery. Parathyroid 11C-methionine accumulation was analyzed for integrated uptake values in defined tissue volumes standardized for the injected dose and body weight (SUV), four contiguous pixels of maximal accumulation (SUVhs), SUV multiplied by area of region of interest (SUVr) and by the excised tissue weight (SUVw). Transport rate constants (slope, slopehs) were calculated according to Patlak's formula using plasma 11C activity corrected for 11C-methionine metabolites.
RESULTS: True-positive localization was achieved in 85% of patients in whom 81% of the excised parathyroid lesions were visualized; no false-positive results were obtained. Corresponding proportions were 59% and 57% for CT and 55% and 52% for ultrasound, respectively. In the true-positive cases, parathyroid SUV, SUVhs and transport rate constants were consistently higher (p < 0.01) than in the thyroid, pharynx-esophagus, neck muscle and apical lung. Parathyroid SUV, SUVhs and SUVr increased with intact serum parathyroid hormone and calcium values (p = 0.0001-0.031), and weight of the excised tissue correlated with SUV and SUVhs (p = 0.024, 0.044). Parathyroid SUVhs varied strongly with the transport rate constants (p = 0.0008), and SUVr as well as s-calcium values differed significantly between parathyroid adenomas (n = 11), chief cell hyperplasias (n = 13), inadvertent implants (n = 3) and parathyroid cancers (n = 3).
CONCLUSION: Carbon-11-methionine PET has potential application in preoperative localization and metabolic characterization of abnormal parathyroid tissues in human HPT.

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Year:  1996        PMID: 8917171

Source DB:  PubMed          Journal:  J Nucl Med        ISSN: 0161-5505            Impact factor:   10.057


  22 in total

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2.  Clinical value and limitations of [11C]-methionine PET for detection and localization of suspected parathyroid adenomas.

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Review 3.  Imaging for primary hyperparathyroidism--an evidence-based analysis.

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4.  The use of positron emission tomography with (11)C-methionine in patients with primary hyperparathyroidism.

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5.  Diagnostic performance of positron emission tomography using ¹¹C-methionine in patients with suspected parathyroid adenoma: a meta-analysis.

Authors:  Carmelo Caldarella; Giorgio Treglia; Maria Antonietta Isgrò; Alessandro Giordano
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Authors:  H Orlefors; A Sundin; L Lu; K Oberg; B Långström; B Eriksson; M Bergström
Journal:  Eur J Nucl Med Mol Imaging       Date:  2005-09-24       Impact factor: 9.236

7.  Evaluation of the biodistribution of 11C-methionine in children and young adults.

Authors:  Sebastian M Harris; James C Davis; Scott E Snyder; Elizabeth R Butch; Amy L Vavere; Mehmet Kocak; Barry L Shulkin
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8.  Pre-operative localisation of hyperfunctional parathyroid tissue with 11C-methionine PET.

Authors:  D Otto; A R Boerner; M Hofmann; T Brunkhorst; G J Meyer; T Petrich; G F Scheumann; W H Knapp
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9.  High success rate of parathyroid reoperation may be achieved with improved localization diagnosis.

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Journal:  World J Surg       Date:  2008-05       Impact factor: 3.352

10.  Masked volume wise Principal Component Analysis of small adrenocortical tumours in dynamic [11C]-metomidate Positron Emission Tomography.

Authors:  Pasha Razifar; Joakim Hennings; Azita Monazzam; Per Hellman; Bengt Långström; Anders Sundin
Journal:  BMC Med Imaging       Date:  2009-04-22       Impact factor: 1.930

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