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Mary S Soo

Explore the profile of Mary S Soo including associated specialties, affiliations and a list of published articles. Areas
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Articles 12
Citations 253
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Recent Articles
1.
Bovbjerg D, Keefe F, Soo M, Manculich J, Van Denburg A, Zuley M, et al.
Acta Oncol . 2019 Feb; 58(5):763-768. PMID: 30747014
Persistent breast pain (PBP) is prevalent among breast cancer survivors and has powerful negative psychological consequences. The present study provided a first test of the hypothesis that: (a) pain catastrophizing,...
2.
Saha A, Grimm L, Ghate S, Kim C, Soo M, Yoon S, et al.
J Magn Reson Imaging . 2019 Jan; 50(2):456-464. PMID: 30648316
Background: Preliminary work has demonstrated that background parenchymal enhancement (BPE) assessed by radiologists is predictive of future breast cancer in women undergoing high-risk screening MRI. Algorithmically assessed measures of BPE...
3.
Grimm L, Zhang J, Baker J, Soo M, Johnson K, Mazurowski M
Breast J . 2017 Mar; 23(5):579-582. PMID: 28295860
The aim of this study was to determine the associations between breast MRI findings using the Breast Imaging-Reporting and Data System (BI-RADS) lexicon descriptors and breast cancer molecular subtypes. In...
4.
Edmond S, Shelby R, Keefe F, Fisher H, Schmidt J, Soo M, et al.
Clin J Pain . 2016 Dec; 33(1):51-56. PMID: 27922843
Objectives: This study compared persistent breast pain among women who received breast-conserving surgery for breast cancer and women without a history of breast cancer. Methods: Breast cancer survivors (n=200) were...
5.
Grimm L, Soo M, Yoon S, Kim C, Ghate S, Johnson K
Acad Radiol . 2015 Jul; 22(9):1157-62. PMID: 26152500
Rationale And Objectives: To compare the performance of two shortened breast magnetic resonance imaging (MRI) protocols to a standard MRI protocol for breast cancer screening. Materials And Methods: In this...
6.
Grimm L, Johnson K, Marcom P, Baker J, Soo M
Radiology . 2014 Oct; 274(2):352-8. PMID: 25325325
Purpose: To assess whether breast cancer molecular subtype classified by surrogate markers can be used to predict the extent of clinically relevant disease with preoperative breast magnetic resonance (MR) imaging....
7.
Johnson K, Baker J, Lee S, Soo M
Acad Radiol . 2012 Mar; 19(6):667-74. PMID: 22459645
Rationale And Objectives: To evaluate the imaging features and histological and clinical outcomes of a series of suspicious, mammographically occult breast lesions detected at 3.0 T magnetic resonance imaging (MRI)....
8.
Pollard B, Samei E, Chawla A, Baker J, Ghate S, Kim C, et al.
Acad Radiol . 2009 Feb; 16(3):299-304. PMID: 19201358
Rationale And Objectives: Recent research has provided evidence that in reading rooms equipped with liquid crystal displays (LCDs), a measured increase of ambient lighting may improve clinicians' detection performance. In...
9.
Dahl J, McAleavey S, Pinton G, Soo M, Trahey G
IEEE Trans Ultrason Ferroelectr Freq Control . 2006 Oct; 53(10):1832-43. PMID: 17036791
Constructing an ultrasonic imaging system capable of compensating for phase errors in real-time is a significant challenge in adaptive imaging. We present a versatile adaptive imaging system capable of updating...
10.
Dahl J, Soo M, Trahey G
IEEE Trans Ultrason Ferroelectr Freq Control . 2005 Nov; 52(9):1504-17. PMID: 16285449
Reported real-time adaptive imaging systems use near-field phase correction techniques, which are desired because of their simple implementation and their compatibility with current system architectures. Aberrator stability is important to...