Reproducible Surveillance Breast Ultrasound Using an Image Fusion Technique in a Short-Interval Follow-up for BI-RADS 3 Lesions: A Pilot Study

Abstract The aim of our study was to verify the utility of surveillance ultrasound (US) using real-time virtual sonography (RVS) - to coordinate present US images with past US images reconstructed from previously acquired US volume data using an image fusion technique - for short-interval follow-up...

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Veröffentlicht in:Ultrasound in medicine & biology 2014-06, Vol.40 (6), p.1049-1057
Hauptverfasser: Nakano, Shogo, Ando, Takahito, Tetsuka, Rie, Fujii, Kimihito, Yoshida, Miwa, Kousaka, Junko, Shiomi-Mouri, Yukako, Imai, Tsuneo, Fukutomi, Takashi, Ishiguchi, Tsuneo, Arai, Osamu
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Sprache:eng
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Zusammenfassung:Abstract The aim of our study was to verify the utility of surveillance ultrasound (US) using real-time virtual sonography (RVS) - to coordinate present US images with past US images reconstructed from previously acquired US volume data using an image fusion technique - for short-interval follow-up of Breast Imaging-Reporting and Data System (BI-RADS) category 3 mass lesions. We enrolled 20 women (23 lesions) with more than 24 mo of follow-up after classification as BI-RADS category 3 during initial US. US surveillance was scheduled at 6, 12 and 24 mo. Measurement of the target lesion diameter was performed after the probe was adjusted to include the maximum diameter of a past US image at each visit. RVS was technically successful in 100% of patients. All target lesions were detected, including two iso-echoic lesions. The mean target lesion diameters at baseline and at 6, 12 and 24 mo were 8.2 ± 4.2, 8.4 ± 4.5, 8.1 ± 4.5 and 8.3 ± 5.0 mm, respectively ( p  = 0.785). Our results suggest that RVS is a reproducible, operator-independent technique for comparison of US images of BI-RADS category 3 mass lesions obtained at different time points.
ISSN:0301-5629
1879-291X
DOI:10.1016/j.ultrasmedbio.2013.11.028