1.Radiologic and Clinical Features of Idiopathic Granulomatous Lobular Mastitis Mimicking Advanced Breast Cancer.
Jei Hee LEE ; Ki Keun OH ; Eun Kyung KIM ; Kyu Sung KWACK ; Woo Hee JUNG ; Han Kyung LEE
Yonsei Medical Journal 2006;47(1):78-84
Idiopathic granulomatous lobular mastitis (IGLM), also known as idiopathic granulomatous mastitis, is a rare chronic inflammatory lesion of the breast that can clinically and radiographically mimic breast carcinoma. The aim of this study was to describe the radiological imaging and clinical features of IGLM in order to better differentiate this disorder from breast cancer. We performed a retrospective analysis of the clinical and radiographic features of 11 women with a total of 12 IGLM lesions. The ages of these women ranged between 29 and 42 years, with a mean age of 34.8 years. Ten patients were examined by both mammography and sonography and one by sonography alone. The sites that were the most frequently involved were the peripheral (6/12), diffuse, (3/12), and subareolar (3/12) regions of the breast. The patient mammograms showed irregular ill-defined masses (7/11), diffuse increased densities (3/11), and one oval obscured mass. In addition, patient sonograms showed irregular tubular lesions (7/12) or lobulated masses with minimal parenchymal distortion (2/12), parenchymal distortion without definite mass lesions (2/12), and one oval mass. Subcutaneous fat obliteration (12/12) and skin thickening (11/12) were also observed in these patients. Contrary to previous reports, skin changes and subareolar involvement were not rare occurrences in IGLM. In conclusion, the sonographic features of IGLM show irregular or tubular hypoechoic masses with minimal parenchymal distortion. Both clinical information and the description of radiographic features of IGLM may aid in the differentiation between IGLM and breast cancer, however histological confirmation is still required for the proper diagnosis and treatment of the disorder.
Ultrasonography, Mammary
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Retrospective Studies
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Mastitis/*radiography/ultrasonography
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Mammography
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Humans
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Female
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Diagnosis, Differential
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Carcinoma/radiography/ultrasonography
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Breast Neoplasms/radiography/ultrasonography
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Adult
2.Pregnancy-Associated Breast Disease: Radiologic Features and Diagnostic Dilemmas.
Eun Ju SON ; Ki Keun OH ; Eun Kyung KIM
Yonsei Medical Journal 2006;47(1):34-42
In this paper, we evaluate the radiological features of pregnancy-associated breast lesions and discuss the difficulties in diagnosis by imaging. We selected patients who were diagnosed with pregnancy-associated breast lesions during the previous 5 years. All patients complained of palpable lesions in the breast and underwent ultrasonographic (US) examination, the first choice for examination of pregnancy-related breast lesions. Any suspicious lesions found by the US were recommended for a US-guided core biopsy, US-guided fine needle aspiration (FNA), or surgery. Various breast lesions were detected during pregnancy and lactation, including breast cancer, mastitis and abscesses, lactating adenoma, galactoceles, lobular hyperplasia, and fibroadenomas. The imaging features of pregnancy-associated breast lesions did not differ from the features of non-pregnancy-associated breast lesions; however, some pregnancy-associated benign lesions had suspicious sonographic features. A US-guided core biopsy was necessary for differentiating benign from malignant. In patients with breast cancer, the cancer was often advanced at the time of diagnosis. In conclusion, various pregnancy-related breast lesions were detected and the imaging of these lesions had variable findings. Breast ultrasound could be an excellent imaging modality for diagnosis and differentiation between benign and malignant lesions. However, when the imaging results are suspicious, a biopsy should be performed to obtain a pathologic diagnosis.
Ultrasonography, Mammary
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Pregnancy Complications/diagnosis/*radiography/surgery
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Pregnancy
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*Mammography
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Humans
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Female
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Breast Neoplasms/pathology/radiography/ultrasonography
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Breast Diseases/pathology/*radiography/ultrasonography
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Breast/pathology/surgery
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Biopsy
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Adult
3.Pure and Mixed Tubular Carcinoma of the Breast: Mammographic and Sonographic Differential Features.
Hee Jung SHIN ; Hak Hee KIM ; Sun Mi KIM ; Dae Bong KIM ; Ye Ri LEE ; Mi Jung KIM ; Gyungyub GONG
Korean Journal of Radiology 2007;8(2):103-110
OBJECTIVE: We wanted to evaluate the mammographic and sonographic differential features between pure (PT) and mixed tubular carcinoma (MT) of the breast. MATERIALS AND METHODS: Between January 1998 and May 2004, 17 PTs and 14 MTs were pathologically confirmed at our institution. The preoperative mammography (n = 26) and sonography (n = 28) were analyzed by three radiologists according to BI-RADS. RESULTS: On mammography, a mass was not detected in eight patients with PT and in one patient with MT (57% vs. 8%, respectively, p = 0.021), which was statistically different. The other findings on mammography and sonography showed no statistical differences between the PT and MT, although the numerical values were different. When the lesions were detected mammographically, an irregularly shaped mass with a spiculated margin was more frequently found in the MT than in the PT (100% vs. 83%, respectively, p = 0.353). On sonography, all 28 patients presented with a mass and most lesions showed as not being circumscribed, hypoechoic masses with an echogenic halo. Surrounding tissue changes and posterior shadowing were more frequently found in the MT than in the PT (75% vs. 50%, respectively, p = 0.253, 58% vs. 19%, respectively, p = 1.000). An oval shaped mass was more frequently found in the PT than in the MT (44% vs. 25%, respectively; p = 0.434). CONCLUSION: PT and MT cannot be precisely differentiated on mammography and sonography. However, the absence of a mass on mammography or the presence of an oval shaped mass would favor the diagnosis of PT. An irregularly shaped mass with surrounding tissue change and posterior shadowing on sonography would favor the diagnosis of MT and also a less favorable prognosis.
Adenocarcinoma/pathology/*radiography/*ultrasonography
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Adult
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Aged
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Breast Neoplasms/pathology/*radiography/*ultrasonography
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Diagnosis, Differential
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Female
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Humans
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Mammography
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Middle Aged
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Ultrasonography, Mammary
5.Supplementary Screening Sonography in Mammographically Dense Breast: Pros and Cons.
Korean Journal of Radiology 2010;11(6):589-593
Sonography is an attractive supplement to mammography in breast cancer screening because it is relatively inexpensive, requires no contrast-medium injection, is well tolerated by patients, and is widely available for equipment as compared with MRI. Sonography has been especially valuable for women with mammographically dense breast because it has consistently been able to detect a substantial number of cancers at an early stage. Despite these findings, breast sonography has known limitations as a screening tool; operator-dependence, the shortage of skilled operators, the inability to detect microcalcifications, and substantially higher false-positive rates than mammography. Further study of screening sonography is still ongoing and is expected to help establish the role of screening sonography.
Biopsy
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Breast Neoplasms/pathology/radiography/*ultrasonography
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Diagnosis, Differential
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Female
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Humans
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Mammography
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Mass Screening
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Observer Variation
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Predictive Value of Tests
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*Ultrasonography, Mammary
6.Screening Ultrasound in Women with Negative Mammography: Outcome Analysis.
Ji Young HWANG ; Boo Kyung HAN ; Eun Young KO ; Jung Hee SHIN ; Soo Yeon HAHN ; Mee Young NAM
Yonsei Medical Journal 2015;56(5):1352-1358
PURPOSE: To show the results of an audit of screening breast ultrasound (US) in women with negative mammography in a single institution and to analyze US-detected cancers within a year and interval cancers. MATERIALS AND METHODS: During the year of 2006, 1974 women with negative mammography were screened with US in our screening center, and 1727 among them had pathologic results or any follow up breast examinations more than a year. We analyzed the distribution of Breast Imaging Reporting and Data System (BI-RADS) category and the performance outcome through follow up. RESULTS: Among 1727 women (age, 30-76 years, median 49.5 years), 1349 women (78.1%) showed dense breasts on mammography, 762 (44.1%) had previous breast US, and 25 women (1.4%) had a personal history of breast cancers. Test negatives were 94.2% (1.627/1727) [BI-RADS category 1 in 885 (51.2%), 2 in 742 (43.0%)]. The recall rate (=BI-RADS category 3, 4, 5) was 5.8%. Eight cancers were additionally detected with US (yield, 4.6 per 1000). The sensitivity, specificity, and positive predictive value (PPV1, PPV2) were 88.9%, 94.6%, 8.0%, and 28.0%, respectively. Eight of nine true positive cancers were stage I or in-situ cancers. One interval cancer was stage I cancer from BI-RADS category 2. CONCLUSION: Screening US detected 4.6 additional cancers among 1000. The recall rate was 5.8%, which is in lower bound of acceptable range of mammography (5-12%), according to American College of Radiology standard.
Adult
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Aged
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Breast/pathology
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Breast Neoplasms/*diagnosis/*radiography/*ultrasonography
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Female
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Humans
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Mammography/*methods
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Mass Screening/*methods
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Middle Aged
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Sensitivity and Specificity
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Ultrasonography/methods
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*Ultrasonography, Mammary
7.Primary Large Cell Neuroendocrine Carcinoma of the Breast: Radiologic and Pathologic Findings.
Jin Woo KIM ; Ok Hee WOO ; Kyu Ran CHO ; Bo Kyung SEO ; Hwan Seok YONG ; Aeree KIM ; Eun Young KANG
Journal of Korean Medical Science 2008;23(6):1118-1120
Some breast neoplasms are classified as primary neuroendocrine carcinomas because they are positive for neuroendocrine markers. Although neuroendocrine carcinomas can originate from various organs of the body, primary neuroendocrine carcinomas of the breast are extremely rare. The diagnosis of primary neuroendocrine carcinoma of the breast can only be made if nonmammary sites are confidently excluded or if an in situ component can be found. Here we report a primary large-cell neuroendocrine carcinoma (LCNL) involving the left breast. Breast ultrasonography revealed a lobulated, heterogeneous, low-echoic mass in the left breast, and the lesion ap-peared as a well-defined, highly-enhancing mass on a chest computed tomography scan. Ultrasound-guided core needle biopsy was performed on the mass, and primary LCNC was confirmed by histopathologic examination.
Adult
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Breast Neoplasms/*diagnosis/pathology/ultrasonography
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Carcinoma, Large Cell/*diagnosis/pathology/radiography
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Carcinoma, Neuroendocrine/*diagnosis/pathology/radiography
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Diagnosis, Differential
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Female
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Humans
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Tomography, X-Ray Computed
8.US-Guided Vacuum-Assisted Biopsy of Microcalcifications in Breast Lesions and Long-Term Follow-Up Results.
Hua Sun KIM ; Min Jung KIM ; Eun Kyung KIM ; Jin Young KWAK ; Eun Ju SON ; Ki Keun OH
Korean Journal of Radiology 2008;9(6):503-509
OBJECTIVE: To evaluate the diagnostic accuracy of the use of an ultrasonography (US)-guided vacuum-assisted biopsy for microcalcifications of breast lesions and to evaluate the efficacy of the use of US-guided vacuum-assisted biopsy with long-term follow-up results. MATERIALS AND METHODS: US-guided vacuum-assisted biopsy cases of breast lesions that were performed between 2002 and 2006 for microcalcifications were retrospectively reviewed. A total of 62 breast lesions were identified where further pathological confirmation was obtained or where at least two years of mammography follow-up was obtained. These lesions were divided into the benign and malignant lesions (benign and malignant group) and were divided into underestimated group and not-underestimated lesions (underestimated and not-underestimated group) according to the diagnosis after a vacuum-assisted biopsy. The total number of specimens that contained microcalcifications was analyzed and the total number of microcalcification flecks as depicted on specimen mammography was analyzed to determine if there was any statistical difference between the groups. RESULTS: There were no false negative cases after more than two years of follow-up. Twenty-nine lesions were diagnosed as malignant (two invasive carcinomas and 27 carcinoma in situ lesions). Two of the 27 carcinoma in situ lesions were upgraded to invasive cancers after surgery. Among three patients diagnosed with atypical ductal hyperplasia, the diagnosis was upgraded to a ductal carcinoma in situ after surgery in one patient. There was no statistically significant difference in the number of specimens with microcalcifications and the total number of microcalcification flecks between the benign group and malignant group of patients and between the underestimated group and not-underestimated group of patients. CONCLUSION: US-guided vacuum-assisted biopsy can be an effective alternative to stereotactic-guided vacuum-assisted biopsy in cases where microcalcifications are visible with the use of high-resolution US.
Adult
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Aged
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*Biopsy/methods
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Breast/*pathology
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Breast Neoplasms/*diagnosis/pathology/radiography
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Calcinosis/*pathology
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Female
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Humans
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Mammography
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Middle Aged
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*Ultrasonography, Interventional
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Ultrasonography, Mammary
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Vacuum
9.Imaging Findings of Metastatic Disease to the Breast.
Yonsei Medical Journal 2001;42(5):497-502
The purpose of this study was to evaluate imaging findings of metastatic disease to the breast. We analyzed 15 cases that had been previously examined by radiographic study (comprising a total of 11 mammograms, 13 ultrasounds and 3 chest CT). Primary malignancies included the following: 6 breast cancers, 5 stomach cancers, 2 melanomas, 1 cervical cancer, and 1 lung cancer. Radiologic findings were analyzed and the 15 cases were divided into two groups: hematogeneous and lymphangitic metastasis. Eleven cases were classified as lymphangitic metastasis (73.3%) and 4 cases were hematogeneous metastasis (26.7%). Multiple masses were shown in 13 cases (86.7%), and 12 cases displayed unilateral lesions (80%). There was no evidence of calcification. In the 11 cases with available mammogram, 7 cases (63.6%) revealed multiple masses with well-defined (2 cases, 28.6%) or ill-defined margin (5 cases, 71.4%) and 6 cases (54.5%) showed diffuse increased density and skin thickening. Among the 11 cases that revealed mass lesions on ultrasound, 2 cases showed a well-defined margin (18.2%) and 9 cases showed an ill-defined margin (81.8%). Posterior shadowing of the mass was seen in only 1 case. Four cases (36.3%) showed a minimal echogenic boundary around the mass. Eight cases showed diffuse skin thickening (53.3%). Three cases with chest CT showed multiple masses and/or diffuse skin and trabecular thickening of the breast. In conclusion, the characteristic imaging findings of metastatic disease to the breast are multiple ill-defined masses with a lack of desmoplastic reaction and no calcification, as compared to primary breast carcinoma. The diffuse lesions without evidence of breast mass on mammogram and US could be distinguishable from inflammatory carcinoma of breast origin.
Adult
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Breast Neoplasms/*diagnosis/*secondary
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Female
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Human
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Mammography
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Radiography, Thoracic
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Retrospective Studies
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Tomography, X-Ray Computed
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Ultrasonography
10.Spectrum of Axillary Disorders (Excluding Metastasis from Breast Cancer): Radiological and Pathological Correlation: A Pictorial Essay.
Ho Jun KIM ; Keum Won KIM ; Yong Sung PARK ; Dong Jin CHUNG ; Young Jun CHO ; Cheol Mog HWANG ; Hyeun Mi YOO ; Yoon Mee KIM ; Mee Ran LEE
Journal of the Korean Radiological Society 2007;57(6):583-594
Axillary disorders originate from an axillary lymph node, subcutaneous fat layer, accessory breast, nerve, vessel and muscle. The most common causes of a palpable axillary mass are a lymph node pathology containing a benign axillary lymphadenopathy, and malignant lymph nodes such as a metastatic lymphadenopathy from breast cancer and a malignant lymphoma. For the detection of masses in the axilla, mammography and sonography are the imaging modalities of choice. We present a spectrum of various axillary masses with correlative radiological imaging and pathological findings in this pictorial essay. Knowledge of the radiological findings of various axillary disorders is useful for a differential diagnosis and for preventing unnecessary invasive procedures.
Animals
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Axilla
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Breast Neoplasms
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Breast*
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Diagnosis, Differential
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Lymph Nodes
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Lymphatic Diseases
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Lymphatic Metastasis
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Lymphatic System
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Lymphoma
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Mammary Neoplasms, Animal
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Mammography
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Neoplasm Metastasis*
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Pathology
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Radiography
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Subcutaneous Fat
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Ultrasonography