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Breast Sonoelastography

Year 2015, , 309 - 316, 01.09.2015
https://doi.org/10.5505/abantmedj.2015.52244

Abstract

Breast elastography is a new sonographic technique that provides additional information on breast lesions over conventional sonography and mammography. This technique provides information on the strain or hardness of a lesion, similar to a clinical palpation examination. Two techniques are now available for clinical use: strain compression elastography and shear wave elastography. Clinical trials suggests that this technique helps the characterization of breast lesions as benign or malignant. This improvement may substantially reduce the number of benign biopsies performed. This article reviews the basics of this technique, how to perform the examination, image interpretation, artifacts and the results of major clinical studies. Although elastography is easy to perform, technical knowledge is critical in order to obtain adequate images permitting a correct interpretation

References

  • 1-Stavros AT, Thickman D, Rapp CL, Dennis MA, Parker SH, Sisney GA. Solid breast nodules: use of sonography to distinguish between benign and malignant lesions. Radiology 1995; 196:123–134.
  • 2- American College of Radiology.Breast Imaging Reporting and Data System: Ultrasound. 1st ed. Reston, VA: American College of Radiology; 2003.
  • 3- 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;239:341-50.
  • 4- Miyagawa T, Tsutsumi M, Matsumura T, Kawazoe N, Ishikawa S, Shimokama T,Miyanaqa N, Akaza H. Real-time elastography for the diagnosis of prostate cancer: evaluation of elastographic moving images. Jpn J Clin Oncol 2009;39:394-8.
  • 5- Zhi H, Ou B, Luo BM, Feng X, Wen YL, Yang HY. Comparison of ultrasound elastography, mammography, and sonography in the diagnosis of solid breast lesions. J Ultrasound Med 2007;26:807- 15.
  • 6- Lyshchik A, Higashi T, Asato R, Tanaka S, Ito J, Mai JJ, Pellot-Barakat C, Insana MF, Brill AB,Saqa T,Hiraoka M,Toqashi K. Thyroid gland tumor diagnosis at US elastography. Radiology 2005;237:202-11.
  • 7- Lyshchik A, Higashi T, Asato R, Tanaka S, Ito J, Hiraoka M, Insana MF, Brill AB,Saqa T, Toqashi K. Cervical lymph node metastases: diagnosis at sonoelastography e initial experience. Radiology 2007;243:258-67.
  • 8- Goddi A, Sacchi A, Magistretti G, Almolla J, Salvadore M. Real-time tissue elastography for testicular lesion assessment. Eur Radiol 2012;22(4):721-30.
  • 9- Ginat DT, Destounis SV, Barr RG, Castaneda B, Strang JG, Rubens DJ. US elastography of breast and prostate lesions. Radiographics 2009;29:2007-16.
  • 10- Insana MF, Pellot-Barakat C, Sridhar M, Lindfors KK. Viscoelastic imaging of breast tumor microenvironment with ultrasound. J Mammary Gland Biol Neoplasia 2004;9(4):393-404.
  • 11-Barr RG. Real-time ultrasound elasticity of the breast: initial clinical results.Ultrasound Q 2010; 26:61–66.
  • 12-Barr RG, Destounis S, Lackey 2nd LB, Svensson WE, Balleyguier C, Smith C. Evaluation of breast lesions using sonographic elasticity imaging: a multicenter trial. J Ultrasound Med 2012;31:281-7
  • 13-Ueno E, Umemoto T, Bando H, Tohno E, Waki K, Matsumura T. New quantitative method in breast elastography: fat lesion ratio (FLR). Paper presented at: Radiological Society of North America 93rd Scientific Assembly and Annual Meeting; November 25–30, 2007; Chicago, IL.
  • 14-Cho N, Moon WK, Kim HY, Chang JM, Park SH, Lyou CY. Sonoelastographicstrain index for differentiation of benign and malignant nonpalpable breast masses. J Ultrasound Med 2010; 29:1–7.
  • 15-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(5):558-63.
  • 16-Zhi H, Luo B-M, Xiao X-Y, Yang H-Y, Ou B, Wen YY. Strain ratio measurement method: a more objective breast lesion diagnosis method with UE. Vienna, Austria: ECR; 2010.
  • 17-Todd R. Kumm, Alec Chau, Margaret Szabunio. Diagnostic performance of freehand elastography with strain ratio measurement in the characterization of breast lesions referred for ultrasound guided biopsy: initial clinical results at a single cancer referral center. In. 8. international conference on the ultrasonic measurement and imaging of tissue elasticity; 2009, Vlissingen, The Netherlands.
  • 18-Tozaki M, Fukuma E. Pattern classification of shear wave elastography images for differential diagnosis between benign and malignant solid breast masses. Acta Radiol December 2011;52:1069-75.
  • 19- Athanasiou A, Tardivon A, Tanter M,SiqalZafrani B, Bercoff J,Deffieux T, Gennisson JL,Fink M, Neuenschwander S. Breast lesions: quantitative elastography with supersonic shear imaging— preliminary results. Radiology 2010 Jul;256(1):297- 303.
  • 20- Evans A, Whelehan P, Thomson K, McLean D, Brauer K, Purdie C, Jordan L, Baker L Thompson A. Quantitative shear wave ultrasound elastography: initial experience in solid breast masses. Breast Cancer Res 2010;12(6):R104.
  • 21- Barr RG. Shear wave imaging of the breast: still on the learning curve. J Ultrasound Med 2012;31:347-50.
  • 22- Tanter M, Bercoff J, Athanasiou A, Deffieux T, Gennisson JL, Montaldo G, Muller M, Tardivon A, Fink M. Quantitative assessment of breast lesion viscoelasticity: initial clinical results using supersonic shear imaging. Ultrasound Med Biol 2008;34:1373-86.
  • 23-Krouskop TA, Wheeler TM, Kallel F, Garra BS, Hall T. Elastic moduli of breast and prostate tissue under compression. Ultrason Imaging 1998; 20:260–274.
  • 24- Tavassoli FA, Devilee P. Pathology and genetics: tumours of the breast and female genital organs. Lyon, France: IARC;2003.
  • 25- Ginat DT, Destounis SV, Barr RG, Castaneda B, Strang JG, Rubens DJ. US elastography of breast and prostate lesions. Radiographics 2009;29:2007-16.
  • 26- Sharma AC, Soo MS, Trahey GE, Nightingale KR. Acoustic radiation force impulse imaging of in vivo breast masses. Ultrasonics symposium. IEEE 2004;1:728-31.
  • 27- Tozaki M, Isobe S, Yamaguchi M, Ogawa Y, Homma K, Saito M,Joo C,Fukuma E. Ultrasonographic elastography of the breast using acoustic radiation force impulse technology: preliminary study. Jpn J Radiol 2011;29(6):452-6.
  • 28- Giuseppetti GM, Martegani A, Di Cioccio B, Baldassarre S. Elastosonography in the diagnosis of the nodular breast lesions: preliminary report. Radiol Med 2005;110(12):69-76.
  • 29-Ueno E, Iboraki P. Clinical application of US elastography in the diagnosis of breast disease. ECR 5-9 March, Vienna, Austria; 2004.
  • 30-Hall TJ, Zhu Y, Spalding CS. Ultrasound palpation imaging as a tool for improved differentiation among breast abnormalities [abstract]. Radiology 2001; 221(suppl):697.
  • 31-Kumm TR, Szabunio MM. Elastography for the characterization of breast lesions: initial clinical experience. Cancer Control 2010;17(3):156-61.
  • 32-Tozaki M, Isobe S, Fukuma E. Preliminary study of ultrasonographic tissue quantification of the breast using the acoustic radiation force impulse (ARFI) technology. Eur J Radiol 2011;80(2):e182-7.
  • 33-Meng W, Zhang G, Wu C, Wu G, Song Y, Lu. Preliminary results of acoustic radiation force impulse (ARFI) ultrasound imaging of breast lesions. Ultrasound Med Biol 2011;37(9):1436-43.

Meme Ultrason Elastografi

Year 2015, , 309 - 316, 01.09.2015
https://doi.org/10.5505/abantmedj.2015.52244

Abstract

Meme elastografi, meme lezyonlarının karakterizasyonunda mamografi ve ultrasona katkı sağlayan yeni bir tekniktir. Bu teknik, tıpkı klinik palpasyonda olduğu gibi lezyonun gerilimi ve sertliği hakkında bilgi verir. Klinik kullanımında gerilim kompresyon elastografi ve shear wave makaslama dalgası elastografi olarak iki yöntem bulunmaktadır: Klinik çalışmalar bu tekniğin meme lezyonlarının benign- malign ayrımında faydalı olduğunu göstermiştir. Bu gelişme benign lezyonlara daha az biyopsi yapılmasını sağlayacağından önemlidir. Bu derleme, elastografi tekniğinin temellerini, incelemenin nasıl yapıldığını, görüntülerin yorumu, artefaktlar ve majör klinik çalışmaların sonuçlarını içermektedir. Uygulanması kolay bir yöntem olmakla birlikte doğru yoruma izin verecek yeterlilikte görüntülerin alınabilmesi için teknik bilgi çok önemlidir.

References

  • 1-Stavros AT, Thickman D, Rapp CL, Dennis MA, Parker SH, Sisney GA. Solid breast nodules: use of sonography to distinguish between benign and malignant lesions. Radiology 1995; 196:123–134.
  • 2- American College of Radiology.Breast Imaging Reporting and Data System: Ultrasound. 1st ed. Reston, VA: American College of Radiology; 2003.
  • 3- 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;239:341-50.
  • 4- Miyagawa T, Tsutsumi M, Matsumura T, Kawazoe N, Ishikawa S, Shimokama T,Miyanaqa N, Akaza H. Real-time elastography for the diagnosis of prostate cancer: evaluation of elastographic moving images. Jpn J Clin Oncol 2009;39:394-8.
  • 5- Zhi H, Ou B, Luo BM, Feng X, Wen YL, Yang HY. Comparison of ultrasound elastography, mammography, and sonography in the diagnosis of solid breast lesions. J Ultrasound Med 2007;26:807- 15.
  • 6- Lyshchik A, Higashi T, Asato R, Tanaka S, Ito J, Mai JJ, Pellot-Barakat C, Insana MF, Brill AB,Saqa T,Hiraoka M,Toqashi K. Thyroid gland tumor diagnosis at US elastography. Radiology 2005;237:202-11.
  • 7- Lyshchik A, Higashi T, Asato R, Tanaka S, Ito J, Hiraoka M, Insana MF, Brill AB,Saqa T, Toqashi K. Cervical lymph node metastases: diagnosis at sonoelastography e initial experience. Radiology 2007;243:258-67.
  • 8- Goddi A, Sacchi A, Magistretti G, Almolla J, Salvadore M. Real-time tissue elastography for testicular lesion assessment. Eur Radiol 2012;22(4):721-30.
  • 9- Ginat DT, Destounis SV, Barr RG, Castaneda B, Strang JG, Rubens DJ. US elastography of breast and prostate lesions. Radiographics 2009;29:2007-16.
  • 10- Insana MF, Pellot-Barakat C, Sridhar M, Lindfors KK. Viscoelastic imaging of breast tumor microenvironment with ultrasound. J Mammary Gland Biol Neoplasia 2004;9(4):393-404.
  • 11-Barr RG. Real-time ultrasound elasticity of the breast: initial clinical results.Ultrasound Q 2010; 26:61–66.
  • 12-Barr RG, Destounis S, Lackey 2nd LB, Svensson WE, Balleyguier C, Smith C. Evaluation of breast lesions using sonographic elasticity imaging: a multicenter trial. J Ultrasound Med 2012;31:281-7
  • 13-Ueno E, Umemoto T, Bando H, Tohno E, Waki K, Matsumura T. New quantitative method in breast elastography: fat lesion ratio (FLR). Paper presented at: Radiological Society of North America 93rd Scientific Assembly and Annual Meeting; November 25–30, 2007; Chicago, IL.
  • 14-Cho N, Moon WK, Kim HY, Chang JM, Park SH, Lyou CY. Sonoelastographicstrain index for differentiation of benign and malignant nonpalpable breast masses. J Ultrasound Med 2010; 29:1–7.
  • 15-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(5):558-63.
  • 16-Zhi H, Luo B-M, Xiao X-Y, Yang H-Y, Ou B, Wen YY. Strain ratio measurement method: a more objective breast lesion diagnosis method with UE. Vienna, Austria: ECR; 2010.
  • 17-Todd R. Kumm, Alec Chau, Margaret Szabunio. Diagnostic performance of freehand elastography with strain ratio measurement in the characterization of breast lesions referred for ultrasound guided biopsy: initial clinical results at a single cancer referral center. In. 8. international conference on the ultrasonic measurement and imaging of tissue elasticity; 2009, Vlissingen, The Netherlands.
  • 18-Tozaki M, Fukuma E. Pattern classification of shear wave elastography images for differential diagnosis between benign and malignant solid breast masses. Acta Radiol December 2011;52:1069-75.
  • 19- Athanasiou A, Tardivon A, Tanter M,SiqalZafrani B, Bercoff J,Deffieux T, Gennisson JL,Fink M, Neuenschwander S. Breast lesions: quantitative elastography with supersonic shear imaging— preliminary results. Radiology 2010 Jul;256(1):297- 303.
  • 20- Evans A, Whelehan P, Thomson K, McLean D, Brauer K, Purdie C, Jordan L, Baker L Thompson A. Quantitative shear wave ultrasound elastography: initial experience in solid breast masses. Breast Cancer Res 2010;12(6):R104.
  • 21- Barr RG. Shear wave imaging of the breast: still on the learning curve. J Ultrasound Med 2012;31:347-50.
  • 22- Tanter M, Bercoff J, Athanasiou A, Deffieux T, Gennisson JL, Montaldo G, Muller M, Tardivon A, Fink M. Quantitative assessment of breast lesion viscoelasticity: initial clinical results using supersonic shear imaging. Ultrasound Med Biol 2008;34:1373-86.
  • 23-Krouskop TA, Wheeler TM, Kallel F, Garra BS, Hall T. Elastic moduli of breast and prostate tissue under compression. Ultrason Imaging 1998; 20:260–274.
  • 24- Tavassoli FA, Devilee P. Pathology and genetics: tumours of the breast and female genital organs. Lyon, France: IARC;2003.
  • 25- Ginat DT, Destounis SV, Barr RG, Castaneda B, Strang JG, Rubens DJ. US elastography of breast and prostate lesions. Radiographics 2009;29:2007-16.
  • 26- Sharma AC, Soo MS, Trahey GE, Nightingale KR. Acoustic radiation force impulse imaging of in vivo breast masses. Ultrasonics symposium. IEEE 2004;1:728-31.
  • 27- Tozaki M, Isobe S, Yamaguchi M, Ogawa Y, Homma K, Saito M,Joo C,Fukuma E. Ultrasonographic elastography of the breast using acoustic radiation force impulse technology: preliminary study. Jpn J Radiol 2011;29(6):452-6.
  • 28- Giuseppetti GM, Martegani A, Di Cioccio B, Baldassarre S. Elastosonography in the diagnosis of the nodular breast lesions: preliminary report. Radiol Med 2005;110(12):69-76.
  • 29-Ueno E, Iboraki P. Clinical application of US elastography in the diagnosis of breast disease. ECR 5-9 March, Vienna, Austria; 2004.
  • 30-Hall TJ, Zhu Y, Spalding CS. Ultrasound palpation imaging as a tool for improved differentiation among breast abnormalities [abstract]. Radiology 2001; 221(suppl):697.
  • 31-Kumm TR, Szabunio MM. Elastography for the characterization of breast lesions: initial clinical experience. Cancer Control 2010;17(3):156-61.
  • 32-Tozaki M, Isobe S, Fukuma E. Preliminary study of ultrasonographic tissue quantification of the breast using the acoustic radiation force impulse (ARFI) technology. Eur J Radiol 2011;80(2):e182-7.
  • 33-Meng W, Zhang G, Wu C, Wu G, Song Y, Lu. Preliminary results of acoustic radiation force impulse (ARFI) ultrasound imaging of breast lesions. Ultrasound Med Biol 2011;37(9):1436-43.
There are 33 citations in total.

Details

Primary Language Turkish
Journal Section Research Article
Authors

Zeynep İlerisoy Yakut This is me

Aydın Kurt This is me

Leman Günbey Karabekmez This is me

Törel Oğur This is me

Publication Date September 1, 2015
Published in Issue Year 2015

Cite

APA Yakut, Z. İ., Kurt, A., Karabekmez, L. G., Oğur, T. (2015). Meme Ultrason Elastografi. Abant Medical Journal, 4(3), 309-316. https://doi.org/10.5505/abantmedj.2015.52244
AMA Yakut Zİ, Kurt A, Karabekmez LG, Oğur T. Meme Ultrason Elastografi. Abant Med J. September 2015;4(3):309-316. doi:10.5505/abantmedj.2015.52244
Chicago Yakut, Zeynep İlerisoy, Aydın Kurt, Leman Günbey Karabekmez, and Törel Oğur. “Meme Ultrason Elastografi”. Abant Medical Journal 4, no. 3 (September 2015): 309-16. https://doi.org/10.5505/abantmedj.2015.52244.
EndNote Yakut Zİ, Kurt A, Karabekmez LG, Oğur T (September 1, 2015) Meme Ultrason Elastografi. Abant Medical Journal 4 3 309–316.
IEEE Z. İ. Yakut, A. Kurt, L. G. Karabekmez, and T. Oğur, “Meme Ultrason Elastografi”, Abant Med J, vol. 4, no. 3, pp. 309–316, 2015, doi: 10.5505/abantmedj.2015.52244.
ISNAD Yakut, Zeynep İlerisoy et al. “Meme Ultrason Elastografi”. Abant Medical Journal 4/3 (September 2015), 309-316. https://doi.org/10.5505/abantmedj.2015.52244.
JAMA Yakut Zİ, Kurt A, Karabekmez LG, Oğur T. Meme Ultrason Elastografi. Abant Med J. 2015;4:309–316.
MLA Yakut, Zeynep İlerisoy et al. “Meme Ultrason Elastografi”. Abant Medical Journal, vol. 4, no. 3, 2015, pp. 309-16, doi:10.5505/abantmedj.2015.52244.
Vancouver Yakut Zİ, Kurt A, Karabekmez LG, Oğur T. Meme Ultrason Elastografi. Abant Med J. 2015;4(3):309-16.