Breast density analysis for whole breast ultrasound images

被引:14
|
作者
Chen, Jeon-Hor [6 ]
Huang, Chiun-Sheng [7 ]
Chien, Kuang-Che Chang [3 ]
Takada, Etsuo [5 ]
Moon, Woo Kyung [4 ]
Wu, Jeffery H. K.
Cho, Nariya [4 ]
Wang, Yi-Fa [3 ]
Chang, Ruey-Feng [1 ,2 ]
机构
[1] Natl Taiwan Univ, Dept Comp Sci & Informat Engn, Taipei 10617, Taiwan
[2] Natl Taiwan Univ, Grad Inst Biomed Elect & Bioinformat, Taipei 10617, Taiwan
[3] Natl Chung Cheng Univ, Dept Comp Sci & Informat Engn, Chiayi 621, Taiwan
[4] Seoul Natl Univ Hosp, Dept Radiol, Seoul 110799, South Korea
[5] Dokkyo Med Univ, Ctr Med Ultrason, Mibu, Tochigi 3210293, Japan
[6] China Med Univ Hosp, Dept Radiol, Taichung 40402, Taiwan
[7] Natl Taiwan Univ Hosp, Dept Surg, Taipei 100, Taiwan
关键词
breast density; breast cancer; mammogram; mammographic density; ultrasound; whole breast ultrasound; CANCER RISK-FACTORS; MAMMOGRAPHIC DENSITY; PARENCHYMAL PATTERNS; TISSUE DENSITY; WOMEN; ASSOCIATIONS; SONOGRAPHY;
D O I
10.1118/1.3233682
中图分类号
R8 [特种医学]; R445 [影像诊断学];
学科分类号
1002 ; 100207 ; 1009 ;
摘要
Breast density has been established as an independent risk factor associated with the development of breast cancer. The terms mammographic density and breast density are often used interchangeably, since most breast density studies are performed with projection mammography. It is known that increase in mammographic density is associated with an increased cancer risk. A sensitive method that allows for the measurement of small changes in breast density may provide useful information for risk management. Despite the efforts to develop quantitative breast density measurements from projection mammograms, the measurements show large variability as a result of projection imaging, differing body position, differing levels of compression, and variation of the x-ray beam characteristics. This study used two separate computer-aided methods, threshold-based and proportion-based evaluations, to analyze breast density on whole breast ultrasound (US) imaging and to compare with the grading results of three radiologists using projection mammography. Thirty-two female subjects with 252 images per case were included in this study. Whole breast US images were obtained from an Aloka SSD-5500 ultrasound machine with an ASU-1004 transducer (Aloka, Japan). Before analyzing breast density, an adaptive speckle reduction filter was used for removing speckle noise, and a robust thresholding algorithm was used to divide breast tissue into fatty or fibroglandular classifications. Then, the proposed approaches were applied for analysis. In the threshold-based method, a statistical model was employed to determine whether each pixel in the breast region belonged to fibroglandular or fatty tissue. The proportion-based method was based on three-dimensional information to calculate the volumetric proportion of fibroglandular tissue to the total breast tissue. The experimental cases were graded by the proposed analysis methods and compared with the ground standard density classification assigned by a majority voting of three experienced breast radiologists. For the threshold-based method, 28 of 32 US test cases and for the proportion-based density classifier, 27 of 32 US test cases were found to be in agreement with the radiologist "ground standard" mammographic interpretations, resulting in overall accuracies of 87.5% and 84.4%, respectively. Moreover, the concordance values of the proposed methods were between 0.0938 and 0.1563, which were less than the average interobserver concordance of 0.3958. The experiment result showed that the proposed methods could be a reference opinion and offer concordant and reliable quantification of breast density for the radiologist. (C) 2009 American Association of Physicists in Medicine. [DOI: 10.1118/1.3233682]
引用
收藏
页码:4933 / 4943
页数:11
相关论文
共 50 条
  • [11] Rapid Reductions in Breast Density following Tamoxifen Therapy as Evaluated by Whole-Breast Ultrasound Tomography
    Gierach, Gretchen L.
    Sak, Mark
    Fan, Shaoqi
    Pfeiffer, Ruth M.
    Palakal, Maya
    Ramin, Cody
    Bey-Knight, Lisa
    Simon, Michael S.
    Gorski, David
    Ali, Haythem
    Littrup, Peter
    Sherman, Mark E.
    Duric, Nebojsa
    JOURNAL OF CLINICAL MEDICINE, 2022, 11 (03)
  • [12] Comparative study of density analysis using automated whole breast ultrasound and MRI
    Moon, Woo Kyung
    Shen, Yi-Wei
    Huang, Chiun-Sheng
    Luo, Sheng-Chy
    Kuzucan, Aida
    Chen, Jeon-Hor
    Chang, Ruey-Feng
    MEDICAL PHYSICS, 2011, 38 (01) : 382 - 389
  • [13] Breast tissue composition and breast density measurements from ultrasound tomography
    Sak, Mark
    Duric, Neb
    Boyd, Norman
    Littrup, Peter
    West, Erik
    Li, Cuiping
    MEDICAL IMAGING 2012: ULTRASONIC IMAGING, TOMOGRAPHY, AND THERAPY, 2012, 8320
  • [14] Whole Breast Ultrasound: Comparison of the Visibility of Suspicious Lesions with Automated Breast Volumetric Scanning Versus Hand-Held Breast Ultrasound
    Kuzmiak, Cherie M.
    Ko, Eun Y.
    Tuttle, Laura A.
    Steed, Doreen
    Zeng, Donglin
    Yoon, Sora C.
    ACADEMIC RADIOLOGY, 2015, 22 (07) : 870 - 879
  • [15] Breast Density Assessment Using Breast Tomosynthesis Images
    Timberg, Pontus
    Fieselmann, Andreas
    Dustler, Magnus
    Petersson, Hannie
    Sartor, Hanna
    Lang, Kristina
    Fornvik, Daniel
    Zackrisson, Sophia
    BREAST IMAGING, IWDM 2016, 2016, 9699 : 197 - 202
  • [16] Comparison of Subregional Breast Density with Whole Breast Density
    Malkov, Serghei
    Ma, Lin
    Kerlikowske, Karla
    Wang, Jeff
    Cummings, Steve
    Shepherd, John
    DIGITAL MAMMOGRAPHY, 2010, 6136 : 402 - +
  • [17] Breast cancer detection using automated whole breast ultrasound and mammography in radiographically dense breasts
    Kelly, Kevin M.
    Dean, Judy
    Comulada, W. Scott
    Lee, Sung-Jae
    EUROPEAN RADIOLOGY, 2010, 20 (03) : 734 - 742
  • [18] Screening Breast Ultrasound: Past, Present, and Future
    Brem, Rachel F.
    Lenihan, Megan J.
    Lieberman, Jennifer
    Torrente, Jessica
    AMERICAN JOURNAL OF ROENTGENOLOGY, 2015, 204 (02) : 234 - 240
  • [19] Breast density measurements using ultrasound tomography for patients undergoing tamoxifen treatment
    Sak, Mark
    Duric, Neb
    Littrup, Peter
    Li, Cuiping
    Bey-Knight, Lisa
    Sherman, Mark
    Boyd, Norman
    Gierach, Gretchen
    MEDICAL IMAGING 2013: ULTRASONIC IMAGING, TOMOGRAPHY, AND THERAPY, 2013, 8675
  • [20] Staying abreast of imaging - Current status of breast cancer detection in high density breast
    Ghieh, D.
    Saade, C.
    Najem, E.
    El Zeghondi, R.
    Rawashdeh, M. A.
    Berjawi, G.
    RADIOGRAPHY, 2021, 27 (01) : 229 - 235