Attention e-learning users:
Please be advised that Mammography Education Inc will no longer be able to provide Continuing Medical Education (CME) credits after March 31st.
Important: The lectures you purchased will NEVER expire. They will continue to be available for viewing as before. This message only pertains to the CME credits.
If you have completed an e-learning course with us or purchased lectures, and need the CME credits for your professional development, please be sure to download your certificate(s) before this date.
Thank you for your understanding and we apologize for any inconvenience this may cause.
Sincerely,
László Tabár, M.D. FACR (Hon)
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Starting time: 8:00 AM PDT (California daylight saving time). 10 AM CDT (Chicago). 11:00 AM EDT (New York). 5:00 PM CET (Central European Time, Stockholm).
Topic: In depth microcalcification analysis with no associated tumor mass.
Pathophysiology/histopathologic/imaging correlation. Case demonstrations, teaching points, audience-faculty interaction. Q&A session.
To access this session's Zoom link, please sign in.
Starting time: 8:00 AM PDT (California daylight saving time). 10 AM CDT (Chicago). 11:00 AM EDT (New York). 5:00 PM CET (Central European Time, Stockholm).
Topic: In depth microcalcification analysis with no associated tumor mass.
Pathophysiology/histopathologic/imaging correlation. Case demonstrations, teaching points, audience-faculty interaction. Q&A session.
To access this session's Zoom link, please sign in.
Starting time: 8:00 AM PDT (California daylight saving time). 10 AM CDT (Chicago). 11:00 AM EDT (New York). 5:00 PM CET (Central European Time, Stockholm).
Topic: In depth microcalcification analysis with no associated tumor mass.
Pathophysiology/histopathologic/imaging correlation. Case demonstrations, teaching points, audience-faculty interaction. Q&A session.
To access this session's Zoom link, please sign in.
Starting time: 8:00 AM PDT (California daylight saving time). 10 AM CDT (Chicago). 11:00 AM EDT (New York). 5:00 PM CET (Central European Time, Stockholm).
Topic: In depth microcalcification analysis with no associated tumor mass.
Pathophysiology/histopathologic/imaging correlation. Case demonstrations, teaching points, audience-faculty interaction. Q&A session.
To access this session's Zoom link, please sign in.
Starting time: 8:00 AM PDT (California daylight saving time). 10 AM CDT (Chicago). 11:00 AM EDT (New York). 5:00 PM CET (Central European Time, Stockholm).
Topic: Benign non-calcified asymmetric densities with architectural distortion and without associated microcalcifications: traumatic fat necrosis, granular cell tumor and radial scar.
Pathophysiology/histopathologic/imaging correlation. Case demonstrations, teaching points, audience-faculty interaction. Q&A session.
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Starting time: 8:00 AM PDT (California daylight saving time). 10 AM CDT (Chicago). 11:00 AM EDT (New York). 5:00 PM CET (Central European Time, Stockholm).
Topic: Nonspecific asymmetric density on the mammogram with architectural distortion, with no associated calcifications. Detection and diagnosis of non-calcified DAB and radial scar (sclerosing ductal hyperplasia). Pathophysiology/histopathologic/imaging correlation. Case demonstrations, teaching points, audience-faculty interaction. Q&A session.
To access this session's Zoom link, please sign in.
Starting time: 8:00 AM PDT (California daylight saving time). 10 AM CDT (Chicago). 11:00 AM EDT (New York). 5:00 PM CET (Central European Time, Stockholm).
Topic: Nonspecific asymmetric density on the mammogram with architectural distortion, with no associated calcifications. Detection and diagnosis of non-calcified DAB and radial scar (sclerosing ductal hyperplasia). Pathophysiology/histopathologic/imaging correlation. Case demonstrations, teaching points, audience-faculty interaction. Q&A session.
Starting time: 8:00 AM PDT (California daylight saving time). 10 AM CDT (Chicago). 11:00 AM EDT (New York). 5:00 PM CET (Central European Time, Stockholm).
Topic: Nonspecific asymmetric density on the mammogram with architectural distortion, with no associated calcifications. Detection and diagnosis of non-calcified DAB and radial scar (sclerosing ductal hyperplasia). Pathophysiology/histopathologic/imaging correlation. Case demonstrations, teaching points, audience-faculty interaction. Q&A session.
To access this session's Zoom link, please sign in.
Starting time: 8:00 AM PDT (California daylight saving time). 10 AM CDT (Chicago). 11:00 AM EDT (New York). 5:00 PM CET (Central European Time, Stockholm).
Topic: Nonspecific asymmetric density on the mammogram with architectural distortion, with no associated calcifications. Detection and diagnosis of radial scar (sclerosing ductal hyperplasia). Pathophysiology/histopathologic/imaging correlation. Case demonstrations, teaching points, audience-faculty interaction. Q&A session.
Starting time: 8:00 AM PDT (California daylight saving time). 10 AM CDT (Chicago). 11:00 AM EDT (New York). 5:00 PM CET (Central European Time, Stockholm).
Topic: Nonspecific asymmetric density on the mammogram with architectural distortion, with no associated calcifications. Detection and diagnosis of breast cancer originating in the major lactiferous ducts, duct forming invasive carcinoma (erroneously termed “DCIS”). Pathophysiology/histopathologic/imaging correlation. Case demonstrations, teaching points, audience-faculty interaction. Q&A session.
Starting time: 8:00 AM PDT (California daylight saving time). 10 AM CDT (Chicago). 11:00 AM EDT (New York). 5:00 PM CET (Central European Time, Stockholm).
Topic: Continuation of the nonspecific asymmetric density on the mammogram with architectural distortion, with no associated calcifications. Detection and diagnosis of the diffusely infiltrating breast cancer of mesenchymal origin (aka classic infiltrating lobular carcinoma). PART II. Pathophysiology/histopathologic/imaging correlation. Case demonstrations, teaching points, audience-faculty interaction. Q&A session.
Starting time: 8:00 AM PDT (California daylight saving time). 10 AM CDT (Chicago). 11:00 AM EDT (New York). 5:00 PM CET (Central European Time, Stockholm).
Topic: Nonspecific asymmetric density on the mammogram with architectural distortion, with no associated calcifications. Detection and diagnosis of the diffusely infiltrating breast cancer of mesenchymal origin (aka classic infiltrating lobular carcinoma). PART I. Pathophysiology/histopathologic/imaging correlation. Case demonstrations, teaching points, audience-faculty interaction. Q&A session.
Starting time: 8:00 AM PDT (California daylight saving time). 10 AM CDT (Chicago). 11:00 AM EDT (New York). 5:00 PM CET (Central European Time, Stockholm).
Topic: Detection and didactic workup of malignant non-specific asymmetric densities with architectural distortion: the challenging, often missed, extensive, non-calcified carcinoma of mesenchymal origin (also called diffusely invasive lobular carcinoma). Part I.
Starting time: 8:00 AM PDT (California daylight saving time). 10 AM CDT (Chicago). 11:00 AM EDT (New York). 5:00 PM CET (Central European Time, Stockholm).
Topic: Detection and didactic workup of malignant non-specific asymmetric densities with architectural distortion: the challenging, often missed, extensive, non-calcified carcinoma of mesenchymal origin (also called diffusely invasive lobular carcinoma). Part I.
Starting time: 8:00 AM PDT (California daylight saving time). 10 AM CDT (Chicago). 11:00 AM EDT (New York). 5:00 PM CET (Central European Time, Stockholm).
Topic: Detection and workup of non-specific asymmetric densities without architectural distortion. Part II. Detection and didactic workup of malignant non-specific asymmetric densities with architectural distortion, non-calcified carcinoma of ductal origin (DAB).
Starting time: 8:00 AM PDT (California daylight saving time). 10 AM CDT (Chicago). 11:00 AM EDT (New York). 5:00 PM CET (Central European Time, Stockholm).
Topic: Evaluation of asymmetric densities, specific for normal fibroglandular tissue. Interactive session. How to cut back on unnecessary call-backs. Detection and workup of non-specific asymmetric densities without architectural distortion. Part I.