"T1: fat has moderate-high signal; glandular, ductal and connective tissue has low signal. Normal ducts are usually not visible on MRI unless they are dilated. Accumulation of haemorrhagic or proteinaceous material within obstructed duct will produce high T1-weighted signal 6."
"T2: fat has high signal while fibroglandular tissue has low signal 4"
"T1 C+ (Gd): normal breast tissue is mildy enhancing with progressive, low enhancement overtime. During the first and the fourth week of menstrual cycle, enhancement maybe more rapid, producing a diffuse or focal pattern. Nipple and areolar complex may be intensely enhanced 5."
"T1: fat has moderate-high signal; glandular, ductal and connective tissue has low signal. Normal ducts are usually not visible on MRI unless they are dilated. Accumulation of haemorrhagic or proteinaceous material within obstructed duct will produce high T1-weighted signal 6."
"T1 C+ (Gd): normal breast tissue is mildy enhancing with progressive, low enhancement overtime. During the first and the fourth week of menstrual cycle, enhancement maybe more rapid, producing a diffuse or focal pattern. Nipple and areolar complex may be intensely enhanced 5."
"Development "
"thoracic intercostal nerve T3-T5"
"Cooper's ligaments appear as curved, linear radiopacities"
"Cooper's ligaments appear as hyperechoic, linear structures and may cause acoustic shadowing 2,3"
Expected headings
"Mammography"
"Development "
"There is often an extension of breast tissue into the axilla called the axillary tail."
"See articles: mammography views; breast density."
"T1: fat has moderate-high signal; glandular, ductal and connective tissue has low signal. Normal ducts are usually not visible on MRI unless they are dilated. Accumulation of haemorrhagic or proteinaceous material within obstructed duct will produce high T1-weighted signal 6."
"T1: fat has moderate-high signal; glandular, ductal and connective tissue has low signal. Normal ducts are usually not visible on MRI unless they are dilated. Accumulation of haemorrhagic or proteinaceous material within obstructed duct will produce high T1-weighted signal 6."