Comb-push ultrasound shear elastography of breast masses: initial results show promise.

To evaluate the performance of Comb-push Ultrasound Shear Elastography (CUSE) for classification of breast masses.CUSE is an ultrasound-based quantitative two-dimensional shear wave elasticity imaging technique, which utilizes multiple laterally distributed acoustic radiation force (ARF) beams to si...

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Main Authors: Max Denis, Mohammad Mehrmohammadi, Pengfei Song, Duane D Meixner, Robert T Fazzio, Sandhya Pruthi, Dana H Whaley, Shigao Chen, Mostafa Fatemi, Azra Alizad
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2015-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC4361045?pdf=render
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spelling doaj-9d04919cf96643c3b231cff46c4bfe6c2020-11-25T01:24:15ZengPublic Library of Science (PLoS)PLoS ONE1932-62032015-01-01103e011939810.1371/journal.pone.0119398Comb-push ultrasound shear elastography of breast masses: initial results show promise.Max DenisMohammad MehrmohammadiPengfei SongDuane D MeixnerRobert T FazzioSandhya PruthiDana H WhaleyShigao ChenMostafa FatemiAzra AlizadTo evaluate the performance of Comb-push Ultrasound Shear Elastography (CUSE) for classification of breast masses.CUSE is an ultrasound-based quantitative two-dimensional shear wave elasticity imaging technique, which utilizes multiple laterally distributed acoustic radiation force (ARF) beams to simultaneously excite the tissue and induce shear waves. Female patients who were categorized as having suspicious breast masses underwent CUSE evaluations prior to biopsy. An elasticity estimate within the breast mass was obtained from the CUSE shear wave speed map. Elasticity estimates of various types of benign and malignant masses were compared with biopsy results.Fifty-four female patients with suspicious breast masses from our ongoing study are presented. Our cohort included 31 malignant and 23 benign breast masses. Our results indicate that the mean shear wave speed was significantly higher in malignant masses (6 ± 1.58 m/s) in comparison to benign masses (3.65 ± 1.36 m/s). Therefore, the stiffness of the mass quantified by the Young's modulus is significantly higher in malignant masses. According to the receiver operating characteristic curve (ROC), the optimal cut-off value of 83 kPa yields 87.10% sensitivity, 82.61% specificity, and 0.88 for the area under the curve (AUC).CUSE has the potential for clinical utility as a quantitative diagnostic imaging tool adjunct to B-mode ultrasound for differentiation of malignant and benign breast masses.http://europepmc.org/articles/PMC4361045?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Max Denis
Mohammad Mehrmohammadi
Pengfei Song
Duane D Meixner
Robert T Fazzio
Sandhya Pruthi
Dana H Whaley
Shigao Chen
Mostafa Fatemi
Azra Alizad
spellingShingle Max Denis
Mohammad Mehrmohammadi
Pengfei Song
Duane D Meixner
Robert T Fazzio
Sandhya Pruthi
Dana H Whaley
Shigao Chen
Mostafa Fatemi
Azra Alizad
Comb-push ultrasound shear elastography of breast masses: initial results show promise.
PLoS ONE
author_facet Max Denis
Mohammad Mehrmohammadi
Pengfei Song
Duane D Meixner
Robert T Fazzio
Sandhya Pruthi
Dana H Whaley
Shigao Chen
Mostafa Fatemi
Azra Alizad
author_sort Max Denis
title Comb-push ultrasound shear elastography of breast masses: initial results show promise.
title_short Comb-push ultrasound shear elastography of breast masses: initial results show promise.
title_full Comb-push ultrasound shear elastography of breast masses: initial results show promise.
title_fullStr Comb-push ultrasound shear elastography of breast masses: initial results show promise.
title_full_unstemmed Comb-push ultrasound shear elastography of breast masses: initial results show promise.
title_sort comb-push ultrasound shear elastography of breast masses: initial results show promise.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2015-01-01
description To evaluate the performance of Comb-push Ultrasound Shear Elastography (CUSE) for classification of breast masses.CUSE is an ultrasound-based quantitative two-dimensional shear wave elasticity imaging technique, which utilizes multiple laterally distributed acoustic radiation force (ARF) beams to simultaneously excite the tissue and induce shear waves. Female patients who were categorized as having suspicious breast masses underwent CUSE evaluations prior to biopsy. An elasticity estimate within the breast mass was obtained from the CUSE shear wave speed map. Elasticity estimates of various types of benign and malignant masses were compared with biopsy results.Fifty-four female patients with suspicious breast masses from our ongoing study are presented. Our cohort included 31 malignant and 23 benign breast masses. Our results indicate that the mean shear wave speed was significantly higher in malignant masses (6 ± 1.58 m/s) in comparison to benign masses (3.65 ± 1.36 m/s). Therefore, the stiffness of the mass quantified by the Young's modulus is significantly higher in malignant masses. According to the receiver operating characteristic curve (ROC), the optimal cut-off value of 83 kPa yields 87.10% sensitivity, 82.61% specificity, and 0.88 for the area under the curve (AUC).CUSE has the potential for clinical utility as a quantitative diagnostic imaging tool adjunct to B-mode ultrasound for differentiation of malignant and benign breast masses.
url http://europepmc.org/articles/PMC4361045?pdf=render
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