Ultrasound high-definition microvasculature imaging with novel quantitative biomarkers improves breast cancer detection accuracy
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Robert T. Fazzio | E. Polley | J. Boughey | J. Carter | R. Fazzio | M. Fatemi | A. Alizad | S. Pruthi | R. Ternifi | Juanjuan Gu | Yinong Wang
[1] Robert T. Fazzio,et al. Quantitative Biomarkers for Cancer Detection Using Contrast-Free Ultrasound High-Definition Microvessel Imaging: Fractal Dimension, Murray’s Deviation, Bifurcation Angle & Spatial Vascularity Pattern , 2021, IEEE Transactions on Medical Imaging.
[2] B. Seo,et al. Breast Ultrasound Microvascular Imaging and Radiogenomics , 2021, Korean journal of radiology.
[3] M. Duran,et al. Effect of Coronary Artery Bifurcation Angle on Atherosclerotic Lesion Localization Distance to the Bifurcation Site , 2020, Journal of the Saudi Heart Association.
[4] Samuel J. Magny,et al. Breast Imaging Reporting and Data System , 2020, Definitions.
[5] Paul A. Dayton,et al. Microvascular Ultrasonic Imaging of Angiogenesis Identifies Tumors in a Murine Spontaneous Breast Cancer Model , 2020, Int. J. Biomed. Imaging.
[6] Siavash Ghavami,et al. Quantification of Morphological Features in Non-Contrast-Enhanced Ultrasound Microvasculature Imaging , 2020, IEEE Access.
[7] Mickael Tanter,et al. Super-resolution Ultrasound Imaging. , 2020, Ultrasound in medicine & biology.
[8] Xiaodong Chen,et al. Vascular branching geometry relating to portal hypertension: a study of liver microvasculature in cirrhotic rats by X-ray phase-contrast computed tomography. , 2020, Quantitative imaging in medicine and surgery.
[9] Duane D. Meixner,et al. Ultrasensitive Ultrasound Microvessel Imaging for Characterizing Benign and Malignant Breast Tumors. , 2019, Ultrasound in medicine & biology.
[10] Xinyan Zhao,et al. Phase-contrast computed tomography: A correlation study between portal pressure and three dimensional microvasculature of ex vivo liver samples from carbon tetrachloride-induced liver fibrosis in rats. , 2019, Microvascular research.
[11] Evangelos Kanoulas,et al. Super-Resolution Contrast-Enhanced Ultrasound Methodology for the Identification of In Vivo Vascular Dynamics in 2D , 2019, Investigative radiology.
[12] Mostafa Fatemi,et al. Background Removal and Vessel Filtering of Noncontrast Ultrasound Images of Microvasculature , 2019, IEEE Transactions on Biomedical Engineering.
[13] S. Groshen,et al. Contrast‐Enhanced Ultrasound Imaging of Breast Masses: Adjunct Tool to Decrease the Number of False‐Positive Biopsy Results , 2018, Journal of ultrasound in medicine : official journal of the American Institute of Ultrasound in Medicine.
[14] Man Chen,et al. Application of contrast-enhanced ultrasound in the diagnosis of small breast lesions. , 2018, Clinical hemorheology and microcirculation.
[15] Massimo Bellomi,et al. Radiomics: the facts and the challenges of image analysis , 2018, European Radiology Experimental.
[16] Tsuyoshi Shiina,et al. Vascular branching point counts using photoacoustic imaging in the superficial layer of the breast: A potential biomarker for breast cancer , 2018, Photoacoustics.
[17] F. Molinari,et al. Quantitative analysis of thyroid tumors vascularity: A comparison between 3‐D contrast‐enhanced ultrasound and 3‐D Power Doppler on benign and malignant thyroid nodules , 2018, Medical physics.
[18] You-hong Cui,et al. Microvascular fractal dimension predicts prognosis and response to chemotherapy in glioblastoma: an automatic image analysis study , 2018, Laboratory Investigation.
[19] S. Delorme,et al. Motion model ultrasound localization microscopy for preclinical and clinical multiparametric tumor characterization , 2018, Nature Communications.
[20] J. Provost,et al. 4D in vivo ultrafast ultrasound imaging using a row-column addressed matrix and coherently-compounded orthogonal plane waves , 2017, Physics in medicine and biology.
[21] B. Luo,et al. Superb microvascular imaging in diagnosis of breast lesions: a comparative study with contrast-enhanced ultrasonographic microvascular imaging. , 2016, The British journal of radiology.
[22] Yongfeng Zhao,et al. Application of a Novel Microvascular Imaging Technique in Breast Lesion Evaluation. , 2016, Ultrasound in medicine & biology.
[23] Charlie Demené,et al. 4D microvascular imaging based on ultrafast Doppler tomography , 2016, NeuroImage.
[24] M. Tanter,et al. Ultrafast ultrasound localization microscopy for deep super-resolution vascular imaging , 2015, Nature.
[25] Paul Kinahan,et al. Radiomics: Images Are More than Pictures, They Are Data , 2015, Radiology.
[26] M. P. Rad,et al. The Role of Doppler Sonography in Distinguishing Malignant from Benign Breast Lesions , 2014 .
[27] Qingli Zhu,et al. Peripheral enhancement of breast cancers on contrast-enhanced ultrasound: correlation with microvessel density and vascular endothelial growth factor expression. , 2014, Ultrasound in medicine & biology.
[28] F. Stuart Foster,et al. Acoustic Angiography: A New Imaging Modality for Assessing Microvasculature Architecture , 2013, Int. J. Biomed. Imaging.
[29] R. Chang,et al. Vascular morphology and tortuosity analysis of breast tumor inside and outside contour by 3-D power Doppler ultrasound. , 2012, Ultrasound in medicine & biology.
[30] Paul A Dayton,et al. Mapping microvasculature with acoustic angiography yields quantifiable differences between healthy and tumor-bearing tissue volumes in a rodent model. , 2012, Radiology.
[31] L. Preda,et al. Has color Doppler a role in the evaluation of mammary lesions? , 2012, Journal of ultrasound.
[32] A. Schoenenberger,et al. Deviation from Murray's law is associated with a higher degree of calcification in coronary bifurcations. , 2012, Atherosclerosis.
[33] Victoria L. Bautch,et al. How Blood Vessel Networks Are Made and Measured , 2011, Cells Tissues Organs.
[34] R. Gelber,et al. Strategies for subtypes—dealing with the diversity of breast cancer: highlights of the St Gallen International Expert Consensus on the Primary Therapy of Early Breast Cancer 2011 , 2011, Annals of oncology : official journal of the European Society for Medical Oncology.
[35] I. Majsterek,et al. Angiogenesis Markers Quantification in Breast Cancer and Their Correlation with Clinicopathological Prognostic Variables , 2011, Pathology & Oncology Research.
[36] F. Schmitt,et al. Angiogenesis and Breast Cancer , 2010, Journal of oncology.
[37] Dai Fukumura,et al. Tumor Microvasculature and Microenvironment: Novel Insights Through Intravital Imaging in Pre‐Clinical Models , 2010, Microcirculation.
[38] Ellen Kao,et al. Breast imaging reporting and data system lexicon for US: interobserver agreement for assessment of breast masses. , 2009, Radiology.
[39] Gregory T. Clement. Superresolution in ultrasound imaging , 2009, 2009 IEEE International Symposium on Biomedical Imaging: From Nano to Macro.
[40] H. Dvorak,et al. Why are tumour blood vessels abnormal and why is it important to know? , 2009, British Journal of Cancer.
[41] Christiana Ruhrberg,et al. Blood vessel maturation and response to vascular-disrupting therapy in single vascular endothelial growth factor-A isoform-producing tumors. , 2008, Cancer research.
[42] J. Blay,et al. [Angiogenesis and breast cancer]. , 2007, Bulletin du cancer.
[43] J. K. Smith,et al. Vessel tortuosity and brain tumor malignancy: a blinded study. , 2005, Academic radiology.
[44] B. Uzzan,et al. Microvessel density as a prognostic factor in women with breast cancer: a systematic review of the literature and meta-analysis. , 2004, Cancer research.
[45] Qifeng Yang,et al. Flt-4-positive vessel density correlates with vascular endothelial growth factor-d expression, nodal status, and prognosis in breast cancer. , 2003, Clinical cancer research : an official journal of the American Association for Cancer Research.
[46] Sheen-Woo Lee,et al. Role of color and power doppler imaging in differentiating between malignant and benign solid breast masses , 2002, Journal of clinical ultrasound : JCU.
[47] K. Kristoffersen,et al. Clutter filter design for ultrasound color flow imaging , 2002, IEEE Transactions on Ultrasonics, Ferroelectrics and Frequency Control.
[48] C. Merritt,et al. Toward a standardized breast ultrasound lexicon, BI-RADS: ultrasound. , 2001, Seminars in roentgenology.
[49] M A Konerding,et al. 3D microvascular architecture of pre-cancerous lesions and invasive carcinomas of the colon , 2001, British Journal of Cancer.
[50] E. Sabo,et al. Microscopic analysis and significance of vascular architectural complexity in renal cell carcinoma. , 2001, Clinical cancer research : an official journal of the American Association for Cancer Research.
[51] K W Ferrara,et al. Evaluation of tumor angiogenesis with US: imaging, Doppler, and contrast agents. , 2000, Academic radiology.
[52] R. Johnson,et al. Isoforms of Vascular Endothelial Growth Factor Act in a Coordinate Fashion To Recruit and Expand Tumor Vasculature , 2000, Molecular and Cellular Biology.
[53] P. Carmeliet,et al. Angiogenesis in cancer and other diseases , 2000, Nature.
[54] S. Raza,et al. Solid breast lesions: evaluation with power Doppler US. , 1997, Radiology.
[55] C. D. Murray. THE PHYSIOLOGICAL PRINCIPLE OF MINIMUM WORK APPLIED TO THE ANGLE OF BRANCHING OF ARTERIES , 1926, The Journal of general physiology.
[56] Axel R. Pries,et al. Structural adaptation of normal and tumour vascular networks. , 2012, Basic & clinical pharmacology & toxicology.
[57] L A Taber,et al. Investigating Murray's law in the chick embryo. , 2001, Journal of biomechanics.