全部 标题 作者
关键词 摘要

OALib Journal期刊
ISSN: 2333-9721
费用:99美元

查看量下载量

相关文章

更多...
Diagnostics  2013 

Strain Elastography Ultrasound: An Overview with Emphasis on Breast Cancer Diagnosis

DOI: 10.3390/diagnostics3010117

Keywords: strain elastography, ultrasound, breast cancer, diagnostic accuracy

Full-Text   Cite this paper   Add to My Lib

Abstract:

Strain elastography (SE), which estimates tissue strain, is an adjunct to the conventional ultrasound B-mode examination. We present a short introduction to SE and its clinical use. Furthermore, we present an overview of the 10 largest studies performed on the diagnostic accuracy of SE in breast cancer diagnostics. Eight of 10 studies presented data for both SE and B-mode imaging. Seven studies showed better specificity and accuracy for SE than for B-mode imaging in breast cancer diagnosis. Four studies showed an increase in specificity and accuracy when combining B-mode imaging with SE. The ways of combining B-mode imaging with SE in the diagnosis of breast cancer differed between the five studies. We believe that further studies are needed to establish an optimal algorithm for the combination of B-mode ultrasound and SE in breast cancer.

References

[1]  Ophir, J.; Céspedes, I.; Ponnekanti, H.; Yazdi, Y.; Li, X. Elastography: A quantitative method for imaging the elasticity of biological tissues. Ultrason. Imag. 1991, 13, 111–134, doi:10.1016/0161-7346(91)90079-W.
[2]  Garra, B.S.; Cespedes, E.I.; Ophir, J.; Spratt, S.R.; Zuurbier, R.A.; Magnant, C.M.; Pennanen, M.F. Elastography of breast lesions: initial clinical results. Radiology 1997, 202, 79–86.
[3]  Garra, B.S. Elastography. Ultrasound Q 2011, 27, 177–186, doi:10.1097/RUQ.0b013e31822a2138.
[4]  Hoskins, P.R. Principles of ultrasound elastography. Ultrasound 2012, 20, 8–15, doi:10.1258/ult.2011.011005.
[5]  Frey, H. Realtime-elastographie. Der Radiologe 2003, 43, 850–855, doi:10.1007/s00117-003-0943-2.
[6]  Itoh, A.; Ueno, E.; Tohno, E.; Kamma, H.; Takahashi, H.; Shiina, T.; Yamakawa, M.; Matsumura, T. Breast disease: Clinical application of US elastography for diagnosis. Radiology 2006, 239, 341–350, doi:10.1148/radiol.2391041676.
[7]  Park, S.H.; Kim, S.J.; Kim, E.-K.; Kim, M.J.; Son, E.J.; Kwak, J.Y. Interobserver Agreement in assessing the sonographic and elastographic features of malignant thyroid nodules. Am. J. Roentgenol. 2009, 193, W416–W423, doi:10.2214/AJR.09.2541.
[8]  Ragazzoni, F.; Deandrea, M.; Mormile, A.; Ramunni, M.J.; Garino, F.; Magliona, G.; Motta, M.; Torchio, B.; Garberoglio, R.; Limone, P. High diagnostic accuracy and interobserver reliability of real-time elastography in the evaluation of thyroid nodules. Ultrasound Med. Biol. 2012, 38, 1154–1162.
[9]  Bhatia, K.S.S.; Cho, C.C.M.; Yuen, Y.-H.; Rasalkar, D.D.; King, A.D.; Ahuja, A.T. Real-time qualitative ultrasound elastography of cervical lymph nodes in routine clinical practice: Interobserver agreement and correlation with malignancy. Ultrasound Med. Biol. 2010, 36, 1990–1997, doi:10.1016/j.ultrasmedbio.2010.08.016.
[10]  Bhatia, K.S.S.; Rasalkar, D.D.; Lee, Y.-P.; Wong, K.-T.; King, A.D.; Yuen, Y.-H.; Ahuja, A.T. Real-time qualitative ultrasound elastography of miscellaneous non-nodal neck masses: Applications and limitations. Ultrasound Med. Biol. 2010, 36, 1644–1652, doi:10.1016/j.ultrasmedbio.2010.07.010.
[11]  Ying, L.; Hou, Y.; Zheng, H.-M.; Lin, X.; Xie, Z.-L.; Hu, Y.-P. Real-time elastography for the differentiation of benign and malignant superficial lymph nodes: A meta-analysis. Eur. J. Radiol. 2011, 81, 2576–2584.
[12]  Fischer, T.; Peisker, U.; Fiedor, S.; Slowinski, T.; Wedemeyer, P.; Diekmann, F.; Grigoryev, M.; Thomas, A. Significant differentiation of focal breast lesions: Raw data-based calculation of strain ratio. Eur. J. Radiol. 2011, 33, 372–379.
[13]  Thomas, A.; Degenhardt, F.; Farrokh, A.; Wojcinski, S.; Slowinski, T.; Fischer, T. Significant differentiation of focal breast lesions: Calculation of strain ratio in breast sonoelastography. Acad. Radiol. 2010, 17, 558–563, doi:10.1016/j.acra.2009.12.006.
[14]  Havre, R.F.; Elde, E.; Gilja, O.H.; ?degaard, S.; Eide, G.E.; Matre, K.; Nesje, L.B. Freehand real-time elastography: Impact of scanning parameters on image quality and in vitro intra- and interobserver validations. Ultrasound Med. Biol. 2008, 34, 1638–1650.
[15]  Zhi, H.; Xiao, X.-Y.; Ou, B.; Zhong, W.-J.; Zhao, Z.-Z.; Zhao, X.-B.; Yang, H.-Y.; Luo, B.-M. Could ultrasonic elastography help the diagnosis of small (≤2 cm) breast cancer with the usage of sonographic BI-RADS classification? Eur. J. Radiol. 2012, 81, 3216–3221, doi:10.1016/j.ejrad.2012.04.016.
[16]  Lee, J.H.; Kim, S.H.; Kang, B.J.; Choi, J.J.; Jeong, S.H.; Yim, H.W.; Song, B.J. Role and clinical usefulness of elastography in small breast masses. Acad. Radiol. 2011, 18, 74–80, doi:10.1016/j.acra.2010.07.014.
[17]  Fu, L.; Wang, Y.; Wang, Y.; Huang, Y. Value of ultrasound elastography in detecting small breast tumors. Chin. Med. J. 2011, 124, 2384–2386.
[18]  Wojcinski, S.; Farrokh, A.; Weber, S.; Thomas, A.; Fischer, T.; Slowinski, T.; Schmidt, W.; Degenhardt, F. Multicenter study of ultrasound real-time tissue elastography in 779 cases for the assessment of breast lesions: Improved diagnostic performance by combining the BI-RADS?-US classification system with sonoelastography. Ultraschall Der Medizin 2010, 31, 484–491, doi:10.1055/s-0029-1245282.
[19]  Zhi, H.; Xiao, X.-Y.; Yang, H.-Y.; Ou, B.; Wen, Y.-L.; Luo, B.-M. Ultrasonic elastography in breast cancer diagnosis: Strain ratio vs. 5-point scale. Acad. Radiol. 2010, 17, 1227–1233.
[20]  Kumm, T.R.; Szabunio, M.M. Elastography for the characterization of breast lesions: Initial clinical experience. Canc. Contr. J. Moffitt Canc. Center 2010, 17, 156–161.
[21]  Sohn, Y.-M.; Kim, M.J.; Kim, E.-K.; Kwak, J.Y.; Moon, H.J.; Kim, S.J. Sonographic elastography combined with conventional sonography: How much is it helpful for diagnostic performance? J. Ultrasound Med. 2009, 28, 413–420.
[22]  Tan, S.M.; Teh, H.S.; Mancer, J.F.K.; Poh, W.T. Improving B mode ultrasound evaluation of breast lesions with real-time ultrasound elastography—A clinical approach. Breast 2008, 17, 252–257, doi:10.1016/j.breast.2007.10.015.
[23]  Zhi, H.; Ou, B.; Luo, B.-M.; Feng, X.; Wen, Y.-L.; Yang, H.-Y. Comparison of ultrasound elastography, mammography, and sonography in the diagnosis of solid breast lesions. J. Ultrasound Med. 2007, 26, 807–815.
[24]  Yi, A.; Cho, N.; Chang, J.M.; Koo, H.R.; La Yun, B.; Moon, W.K. Sonoelastography for 1,786 non-palpable breast masses: Diagnostic value in the decision to biopsy. Eur. Radiol. 2012, 22, 1033–1040.
[25]  American College of Radiology. Breast Imaging Reporting and Data System? (BI-RADS?). Available online: http://www.birads.at/info.html (accessed on 31 December 2012).
[26]  Gong, X.; Xu, Q.; Xu, Z.; Xiong, P.; Yan, W.; Chen, Y. Real-time elastography for the differentiation of benign and malignant breast lesions: A meta-analysis. Breast Cancer Res. Treat. 2011, 130, 11–18.
[27]  Sadigh, G.; Carlos, R.; Neal, C.; Dwamena, B. Accuracy of quantitative ultrasound elastography for differentiation of malignant and benign breast abnormalities: A meta-analysis. Breast Cancer Res. Treat. 2012, 134, 923–931.

Full-Text

Contact Us

service@oalib.com

QQ:3279437679

WhatsApp +8615387084133