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Published in: World Journal of Surgery 6/2012

01-06-2012

Parathyroid Four-Dimensional Computed Tomography: Evaluation of Radiation Dose Exposure During Preoperative Localization of Parathyroid Tumors in Primary Hyperparathyroidism

Authors: Amit Mahajan, Lee F. Starker, Monica Ghita, Robert Udelsman, James A. Brink, Tobias Carling

Published in: World Journal of Surgery | Issue 6/2012

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Abstract

Background

Parathyroid four-dimensional computed tomography (4DCT) provides greater sensitivity than sestamibi with single photon emission CT (SPECT, or SeS) for preoperative localization of parathyroid tumors in patients with primary hyperparathyroidism (PHPT). The radiation dose imparted to the patient during preoperative parathyroid imaging, however, has not been analyzed.

Methods

Patients with biochemically unequivocal PHPT referred for minimally invasive parathyroidectomy underwent 4DCT or SeS. 4DCT was performed using a 64 detector row CT scanner, and SeS used a standardized protocol of 20 mCi of technetium-99m followed by planar and SPECT imaging. The CT radiation dose was estimated using the Imaging Performance Assessment of CT Scanners (ImPACT) calculator, and the SeS dose was estimated using the US Nuclear Regulatory Commission Regulation (NUREG) method.

Results

The calculated effective doses of 4DCT and SeS were 10.4 and 7.8 mSv, respectively, in contrast to an estimated annual background radiation exposure of approximately 3 mSv. The dose to the thyroid with 4DCT, however, was about 57 times higher (92.0 vs. 1.6 mGy) than that with SeS. Based on age- and sex-dependent risk factors, the calculated risk of 4DCT-related thyroid cancer developing in a 20 year old woman was 1,040/million (i.e., about 0.1%).

Conclusions

4DCT, a superior preoperative imaging modality for locating parathyroid tumors, imparts a significantly higher thyroid radiation dose than SeS. Given the enhanced risk of thyroid cancer in individuals with radiation exposure at a young age, 4DCT should be used judiciously in young PHPT patients.
Literature
2.
go back to reference Lavely WC, Goetze S, Friedman KP et al (2007) Comparison of SPECT/CT, SPECT, and planar imaging with single- and dual-phase 99mTc-sestamibi parathyroid scintigraphy. J Nucl Med 48:1084–1089PubMedCrossRef Lavely WC, Goetze S, Friedman KP et al (2007) Comparison of SPECT/CT, SPECT, and planar imaging with single- and dual-phase 99mTc-sestamibi parathyroid scintigraphy. J Nucl Med 48:1084–1089PubMedCrossRef
3.
go back to reference Mihai R, Simon D, Hellman P (2009) Imaging for primary hyperparathyroidism: an evidence-based analysis. Langenbecks Arch Surg 394:765–784PubMedCrossRef Mihai R, Simon D, Hellman P (2009) Imaging for primary hyperparathyroidism: an evidence-based analysis. Langenbecks Arch Surg 394:765–784PubMedCrossRef
4.
go back to reference Civelek AC, Ozalp E, Donovan P et al (2002) Prospective evaluation of delayed technetium-99 m sestamibi SPECT scintigraphy for preoperative localization of primary hyperparathyroidism. Surgery 131:149–157PubMedCrossRef Civelek AC, Ozalp E, Donovan P et al (2002) Prospective evaluation of delayed technetium-99 m sestamibi SPECT scintigraphy for preoperative localization of primary hyperparathyroidism. Surgery 131:149–157PubMedCrossRef
5.
go back to reference Kettle AG, O’Doherty MJ (2006) Parathyroid imaging: how good is it and how should it be done? Semin Nucl Med 36:206–211PubMedCrossRef Kettle AG, O’Doherty MJ (2006) Parathyroid imaging: how good is it and how should it be done? Semin Nucl Med 36:206–211PubMedCrossRef
6.
go back to reference Rodgers SE, Hunter GJ, Hamberg LM et al (2006) Improved preoperative planning for directed parathyroidectomy with 4-dimensional computed tomography. Surgery 140:932–940 discussion 940–931PubMedCrossRef Rodgers SE, Hunter GJ, Hamberg LM et al (2006) Improved preoperative planning for directed parathyroidectomy with 4-dimensional computed tomography. Surgery 140:932–940 discussion 940–931PubMedCrossRef
7.
go back to reference Mortenson MM, Evans DB, Lee JE et al (2008) Parathyroid exploration in the reoperative neck: improved preoperative localization with 4D-computed tomography. J Am Coll Surg 206:888–895 discussion 895–886PubMedCrossRef Mortenson MM, Evans DB, Lee JE et al (2008) Parathyroid exploration in the reoperative neck: improved preoperative localization with 4D-computed tomography. J Am Coll Surg 206:888–895 discussion 895–886PubMedCrossRef
8.
go back to reference Starker LF, Mahajan A, Bjorklund P et al (2011) 4D parathyroid CT as the initial localization study for patients with de novo primary hyperparathyroidism. Ann Surg Oncol 18:1723–1728PubMedCrossRef Starker LF, Mahajan A, Bjorklund P et al (2011) 4D parathyroid CT as the initial localization study for patients with de novo primary hyperparathyroidism. Ann Surg Oncol 18:1723–1728PubMedCrossRef
9.
go back to reference Thomas DL, Bartel T, Menda Y et al (2009) Single photon emission computed tomography (SPECT) should be routinely performed for the detection of parathyroid abnormalities utilizing technetium-99 m sestamibi parathyroid scintigraphy. Clin Nucl Med 34:651–655PubMedCrossRef Thomas DL, Bartel T, Menda Y et al (2009) Single photon emission computed tomography (SPECT) should be routinely performed for the detection of parathyroid abnormalities utilizing technetium-99 m sestamibi parathyroid scintigraphy. Clin Nucl Med 34:651–655PubMedCrossRef
11.
go back to reference Anonymous (1996) NUREG/CR-6345 radiation dose estimates for pharmaceuticals Anonymous (1996) NUREG/CR-6345 radiation dose estimates for pharmaceuticals
12.
go back to reference Jones DG, Shrimpton PC (1991) Survey of CT practice in the UK. Part 3. Normalised organ doses calculated using Monte Carlo techniques. National Radiological Protection Board, Chilton, UK Jones DG, Shrimpton PC (1991) Survey of CT practice in the UK. Part 3. Normalised organ doses calculated using Monte Carlo techniques. National Radiological Protection Board, Chilton, UK
13.
go back to reference Anonymous (2007) BEIR Biological Effects of Ionizing Radiation, Report BEIR VII (National Research Council). National Research Council, Washington, DC Anonymous (2007) BEIR Biological Effects of Ionizing Radiation, Report BEIR VII (National Research Council). National Research Council, Washington, DC
15.
go back to reference Udelsman R, Lin Z, Donovan P (2011) The superiority of minimally invasive parathyroidectomy based on 1650 consecutive patients with primary hyperparathyroidism. Ann Surg 253:585–591PubMedCrossRef Udelsman R, Lin Z, Donovan P (2011) The superiority of minimally invasive parathyroidectomy based on 1650 consecutive patients with primary hyperparathyroidism. Ann Surg 253:585–591PubMedCrossRef
16.
go back to reference Coakley AJ, Kettle AG, Wells CP et al (1989) 99mTc sestamibi: a new agent for parathyroid imaging. Nucl Med Commun 10:791–794PubMedCrossRef Coakley AJ, Kettle AG, Wells CP et al (1989) 99mTc sestamibi: a new agent for parathyroid imaging. Nucl Med Commun 10:791–794PubMedCrossRef
17.
go back to reference Arbab AS, Koizumi K, Hemmi A et al (1997) Tc-99m-MIBI scintigraphy for detecting parathyroid adenoma and hyperplasia. Ann Nucl Med 11:45–49PubMedCrossRef Arbab AS, Koizumi K, Hemmi A et al (1997) Tc-99m-MIBI scintigraphy for detecting parathyroid adenoma and hyperplasia. Ann Nucl Med 11:45–49PubMedCrossRef
18.
go back to reference Berber E, Parikh RT, Ballem N et al (2008) Factors contributing to negative parathyroid localization: an analysis of 1,000 patients. Surgery 144:74–79PubMedCrossRef Berber E, Parikh RT, Ballem N et al (2008) Factors contributing to negative parathyroid localization: an analysis of 1,000 patients. Surgery 144:74–79PubMedCrossRef
19.
go back to reference Schneider AB, Sarne DH (2005) Long-term risks for thyroid cancer and other neoplasms after exposure to radiation. Nat Clin Pract Endocrinol Metab 1:82–91PubMedCrossRef Schneider AB, Sarne DH (2005) Long-term risks for thyroid cancer and other neoplasms after exposure to radiation. Nat Clin Pract Endocrinol Metab 1:82–91PubMedCrossRef
20.
go back to reference Mazonakis M, Tzedakis A, Damilakis J et al (2007) Thyroid dose from common head and neck CT examinations in children: is there an excess risk for thyroid cancer induction? Eur Radiol 17:1352–1357PubMedCrossRef Mazonakis M, Tzedakis A, Damilakis J et al (2007) Thyroid dose from common head and neck CT examinations in children: is there an excess risk for thyroid cancer induction? Eur Radiol 17:1352–1357PubMedCrossRef
Metadata
Title
Parathyroid Four-Dimensional Computed Tomography: Evaluation of Radiation Dose Exposure During Preoperative Localization of Parathyroid Tumors in Primary Hyperparathyroidism
Authors
Amit Mahajan
Lee F. Starker
Monica Ghita
Robert Udelsman
James A. Brink
Tobias Carling
Publication date
01-06-2012
Publisher
Springer-Verlag
Published in
World Journal of Surgery / Issue 6/2012
Print ISSN: 0364-2313
Electronic ISSN: 1432-2323
DOI
https://doi.org/10.1007/s00268-011-1365-3

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