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Radiation Exposure of Contrast-Enhanced Spectral Mammography Compared With Full-Field Digital Mammography

Authors :
Joachim E. Wildberger
Robin Theunissen
Marc B. I. Lobbes
Ulrich Lalji
Eduard J. Meijer
Betina Bakija
Cécile R. L. P. N. Jeukens
MUMC+: DA BV Klinisch Fysicus (9)
MUMC+: DA BV Medisch Specialisten Radiologie (9)
Beeldvorming
MUMC+: DA Beeldvorming (5)
Interne Geneeskunde
RS: GROW - Oncology
RS: GROW - R3 - Innovative Cancer Diagnostics & Therapy
Source :
Investigative Radiology, 49(10), 659-665. LIPPINCOTT WILLIAMS & WILKINS
Publication Year :
2014
Publisher :
LIPPINCOTT WILLIAMS & WILKINS, 2014.

Abstract

Objectives Contrast-enhanced spectral mammography (CESM) shows promising initial results but comes at the cost of increased dose as compared with full-field digital mammography (FFDM). We aimed to quantitatively assess the dose increase of CESM in comparison with FFDM. Materials and methods Radiation exposure-related data (such as kilovoltage, compressed breast thickness, glandularity, entrance skin air kerma (ESAK), and average glandular dose (AGD) were retrieved for 47 CESM and 715 FFDM patients. All examinations were performed on 1 mammography unit. Radiation dose values reported by the unit were validated by phantom measurements. Descriptive statistics of the patient data were generated using a statistical software package. Results Dose values reported by the mammography unit were in good qualitative agreement with those of phantom measurements. Mean ESAK was 10.5 mGy for a CESM exposure and 7.46 mGy for an FFDM exposure. Mean AGD for a CESM exposure was 2.80 mGy and 1.55 mGy for an FFDM exposure. Conclusions Compared with our institutional FFDM, the AGD of a single CESM exposure is increased by 1.25 mGy (+81%), whereas ESAK is increased by 3.07 mGy (+41%). Dose values of both techniques meet the recommendations for maximum dose in mammography.

Details

Language :
English
ISSN :
15360210 and 00209996
Volume :
49
Issue :
10
Database :
OpenAIRE
Journal :
Investigative Radiology
Accession number :
edsair.doi.dedup.....6f59d7d6356c1244b53e1a73af216428