Predictive value of comb-push ultrasound shear elastography for the differentiation of reactive and metastatic axillary lymph nodes: A preliminary investigation
Author:
Funder
National Cancer Institute
Publisher
Public Library of Science (PLoS)
Subject
Multidisciplinary
Reference32 articles.
1. Accuracy of fine‐needle aspiration cytology of axillary lymph nodes in breast cancer patients;E Alkuwari;Cancer Cytopathology,2008
2. Axillary lymph nodes: US-guided fine-needle aspiration for initial staging of breast cancer—correlation with primary tumor size;SL Koelliker;Radiology,2008
3. Sentinel lymph node biopsy for patients with early-stage breast cancer: American Society of Clinical Oncology clinical practice guideline update;GH Lyman;Journal of Clinical Oncology,2014
4. Anatomy and physiology of lymphatic drainage of the breast from the perspective of sentinel node biopsy1;PJ Tanis;Journal of the American College of Surgeons,2001
5. Cortical Morphologic Features of Axillary Lymph Nodes as a Predictor of Metastasis in Breast Cancer: In Vitro Sonographic Study;DG Bedi;American Journal of Roentgenology,2008
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1. Comparison of Quantitative High-definition Microvessel Imaging and Shear Wave Elastography in Preoperative Prediction of Axillary Lymph Node Breast Cancer Metastasis;2024-01-25
2. Diagnostic accuracy of B-mode, Doppler ultrasound, strain elastography, and 2D shear wave elastography in differentiation between benign and malignant lymphadenopathy;Egyptian Journal of Radiology and Nuclear Medicine;2023-08-16
3. Noninvasive prediction of axillary lymph node breast cancer metastasis using morphometric analysis of nodal tumor microvessels in a contrast-free ultrasound approach;Breast Cancer Research;2023-06-09
4. Individualized-thresholding Shear Wave Elastography combined with clinical factors improves specificity in discriminating breast masses;The Breast;2020-12
5. Ultrasound elastography using a regularized modified error in constitutive equations (MECE) approach: a comprehensive phantom study;Physics in Medicine & Biology;2020-11-18
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