Clinical utility of abbreviated breast MRI based on diffusion tensor imaging in patients underwent breast conservative therapy
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A. Abdel-Khalek | A. Elmokadem | N. Soliman | W. Elnahas | Rasha Karam | M. El-Rakhawy | Nermin Soliman
[1] A. Razek,et al. Utility of diffusion tensor imaging in differentiating benign from malignant hepatic focal lesions , 2022, European Radiology.
[2] A. Elmokadem,et al. DTI of the Olfactory Bulb in COVID-19-Related Anosmia: A Pilot Study , 2022, American Journal of Neuroradiology.
[3] Mi Young Kim,et al. Comparison of Abbreviated Breast MRI vs Digital Breast Tomosynthesis for Breast Cancer Detection among Women with a History of Breast Cancer , 2022, Academic Radiology.
[4] B. Kang,et al. Usefulness of postoperative surveillance MR for women after breast-conservation therapy: Focusing on MR features of early and late recurrent breast cancer , 2021, PloS one.
[5] Amany Abdelbary,et al. Diffusion tensor imaging on 3-T MRI breast: diagnostic performance in comparison to diffusion-weighted imaging , 2021, Egyptian Journal of Radiology and Nuclear Medicine.
[6] R. Brem,et al. Abbreviated Breast MRI for Screening High-risk Women: Comparison with the Full Clinical Protocol , 2020, Journal of Breast Imaging.
[7] F. Podo,et al. Breast MRI for High-risk Screening , 2020 .
[8] Mona M. Zaky,et al. MRI for assessment of pathologic nipple discharge: is it mandatory? , 2019, Egyptian Journal of Radiology and Nuclear Medicine.
[9] L. E,et al. Diagnostic Performance of Diffusion Tensor Imaging for Characterizing Breast Tumors: A Comprehensive Meta-Analysis , 2019, Front. Oncol..
[10] S. Partridge,et al. Diffusion tensor imaging for characterizing tumor microstructure and improving diagnostic performance on breast MRI: a prospective observational study , 2019, Breast Cancer Research.
[11] R. Mann,et al. Breast MRI: State of the Art. , 2019, Radiology.
[12] A. A. Abdel Razek,et al. Diffusion tensor imaging parameters in differentiation recurrent breast cancer from post-operative changes in patients with breast-conserving surgery. , 2019, European journal of radiology.
[13] C. Kuhl. Abbreviated Magnetic Resonance Imaging (MRI) for Breast Cancer Screening: Rationale, Concept, and Transfer to Clinical Practice. , 2019, Annual review of medicine.
[14] C. Kuhl,et al. Contrast‐enhanced MRI for breast cancer screening , 2019, Journal of magnetic resonance imaging : JMRI.
[15] Heather I. Greenwood. Abbreviated protocol breast MRI: The past, present, and future. , 2019, Clinical imaging.
[16] I. Tsougos,et al. Diagnostic performance of quantitative diffusion tensor imaging for the differentiation of breast lesions at 3 T MRI. , 2019, Clinical imaging.
[17] E. Inci,et al. Can 3.0 Tesla diffusion tensor Imaging parameters be prognostic indicators in breast cancer? , 2018, Clinical imaging.
[18] H. Degani,et al. Quantitative evaluation of breast cancer response to neoadjuvant chemotherapy by diffusion tensor imaging: Initial results , 2018, Journal of magnetic resonance imaging : JMRI.
[19] Y. Nakajima,et al. Comparison of detectability of breast cancer by abbreviated breast MRI based on diffusion-weighted images and postcontrast MRI , 2018, Japanese Journal of Radiology.
[20] Agnieszka Sabisz,et al. Understanding the Physiopathology Behind Axial and Radial Diffusivity Changes—What Do We Know? , 2018, Front. Neurol..
[21] G. Botti,et al. Abbreviated breast dynamic contrast-enhanced MR imaging for lesion detection and characterization: the experience of an Italian oncologic center , 2017, Breast Cancer Research and Treatment.
[22] Ryan J Bosca,et al. Novel High Spatiotemporal Resolution Versus Standard-of-Care Dynamic Contrast-Enhanced Breast MRI: Comparison of Image Quality , 2017, Investigative radiology.
[23] M. Uğurlu,et al. Diagnostic performance of diffusion tensor imaging parameters in breast cancer and correlation with the prognostic factors , 2017, Journal of magnetic resonance imaging : JMRI.
[24] Mi Young Kim,et al. Usefulness of abbreviated breast MRI screening for women with a history of breast cancer surgery , 2017, Breast Cancer Research and Treatment.
[25] Noam Nissan,et al. Can diffusion tensor anisotropy indices assist in breast cancer detection? , 2016, Journal of magnetic resonance imaging : JMRI.
[26] Dorothy A. Sippo,et al. An Abbreviated Protocol for High-Risk Screening Breast MRI Saves Time and Resources. , 2016, Journal of the American College of Radiology : JACR.
[27] Hiroyuki Abe,et al. Kinetic Analysis of Benign and Malignant Breast Lesions With Ultrafast Dynamic Contrast-Enhanced MRI: Comparison With Standard Kinetic Assessment. , 2016, AJR. American journal of roentgenology.
[28] R. Nishikawa,et al. Breast MRI contrast enhancement kinetics of normal parenchyma correlate with presence of breast cancer , 2016, Breast Cancer Research.
[29] Xiao Li,et al. Diffusion tensor imaging of breast lesions: evaluation of apparent diffusion coefficient and fractional anisotropy and tissue cellularity. , 2016, The British journal of radiology.
[30] Zhi-jun Ma,et al. Assessing Detection, Discrimination, and Risk of Breast Cancer According to Anisotropy Parameters of Diffusion Tensor Imaging , 2016, Medical science monitor : international medical journal of experimental and clinical research.
[31] J. Babb,et al. Evaluation of a known breast cancer using an abbreviated breast MRI protocol: Correlation of imaging characteristics and pathology with lesion detection and conspicuity. , 2016, European journal of radiology.
[32] Lei Tang,et al. Diffusion-tensor imaging as an adjunct to dynamic contrast-enhanced MRI for improved accuracy of differential diagnosis between breast ductal carcinoma in situ and invasive breast carcinoma. , 2015, Chinese journal of cancer research = Chung-kuo yen cheng yen chiu.
[33] Ozgur Cakir,et al. Comparison of the diagnostic performances of diffusion parameters in diffusion weighted imaging and diffusion tensor imaging of breast lesions. , 2013, European journal of radiology.
[34] Laura Cortesi,et al. Multicenter Surveillance of Women at High Genetic Breast Cancer Risk Using Mammography, Ultrasonography, and Contrast-Enhanced Magnetic Resonance Imaging (the High Breast Cancer Risk Italian 1 Study): Final Results , 2011, Investigative radiology.
[35] Mark Rosen,et al. Breast MR imaging: current indications and advanced imaging techniques. , 2010, Radiologic clinics of North America.
[36] Matthias Dietzel,et al. Diffusion tensor magnetic resonance imaging of the breast: a pilot study , 2010, European Radiology.
[37] Naoki Kagawa,et al. Fractional anisotropy and tumor cell density of the tumor core show positive correlation in diffusion tensor magnetic resonance imaging of malignant brain tumors , 2008, NeuroImage.
[38] C. Boetes,et al. Breast MRI: guidelines from the European Society of Breast Imaging , 2008, European Radiology.
[39] A R Padhani,et al. Screening with magnetic resonance imaging and mammography of a UK population at high familial risk of breast cancer: a prospective multicentre cohort study (MARIBS) , 2005, The Lancet.
[40] Constantine Gatsonis,et al. Screening women at high risk for breast cancer with mammography and magnetic resonance imaging , 2005, Cancer.