Literature DB >> 20408116

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.

S Wojcinski1, A Farrokh, S Weber, A Thomas, T Fischer, T Slowinski, W Schmidt, F Degenhardt.   

Abstract

PURPOSE: Hitachi real-time tissue elastography (HI-RTE) is an ultrasound technique that facilitates the estimation of tissue elasticity. Our study evaluates whether sonoelastography improves the differentiation of benign and malignant breast lesions.
MATERIALS AND METHODS: In a multicenter approach sonoelastography of focal breast lesions was carried out in 779 patients with subsequent histological confirmation. We present data from 3 study centers (Berlin, Bielefeld, Homburg/Saar) focusing on the sensitivity (SE), specificity (SP) and the positive (PPV) and negative predictive value (NPV) of sonoelastography. In addition we performed an analysis of the diagnostic performance, expressed by the pretest and posttest probability of disease (POD), in BI-RADS®-US 3 or 4 lesions as these categories can imply both malignant and benign lesions and a more precise prediction would be a preferable aim.
RESULTS: Sonoelastography demonstrated an improved SP (89.5 %) and an excellent PPV (86.8 %) compared to B-mode ultrasound (76.1 % and 77.2 %). Especially in dense breasts ACR III-IV, the SP was even higher (92.8 %). In BI-RADS-US 3 lesions, a suspicious elastogram significantly modified the POD from 8.3 % to a posttest POD of 45.5 %. In BI-RADS-US 4 lesions, we found a pretest POD of 56.6 %. The posttest POD changed significantly to 24.2 % with a normal elastogram and to 81.5 % with a suspicious elastogram.
CONCLUSION: Our data demonstrates that the complementary use of sonoelastography definitely improves the performance in breast diagnostics. Finally we present a protocol of how sonoelastography can be integrated into our daily practice. © Georg Thieme Verlag KG Stuttgart · New York.

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Year:  2010        PMID: 20408116     DOI: 10.1055/s-0029-1245282

Source DB:  PubMed          Journal:  Ultraschall Med        ISSN: 0172-4614            Impact factor:   6.548


  27 in total

1.  Sonoelastography of parotid gland tumours: initial experience and identification of characteristic patterns.

Authors:  Nils Klintworth; Konstantinos Mantsopoulos; Johannes Zenk; Georgios Psychogios; Heinrich Iro; Alessandro Bozzato
Journal:  Eur Radiol       Date:  2012-01-22       Impact factor: 5.315

2.  Characterisation of indeterminate focal breast lesions on grey-scale ultrasound: role of ultrasound elastography.

Authors:  T V Bartolotta; R Ienzi; A Cirino; C Genova; F Ienzi; D Pitarresi; E Safina; M Midiri
Journal:  Radiol Med       Date:  2011-03-07       Impact factor: 3.469

3.  Ultrasonographic elastography of the breast using acoustic radiation force impulse technology: preliminary study.

Authors:  Mitsuhiro Tozaki; Sachiko Isobe; Miki Yamaguchi; Yukari Ogawa; Kanako Homma; Masahiro Saito; Chanwoong Joo; Eisuke Fukuma
Journal:  Jpn J Radiol       Date:  2011-07-24       Impact factor: 2.374

4.  Diagnosis of sub-centimetre breast lesions: combining BI-RADS-US with strain elastography and contrast-enhanced ultrasound-a preliminary study in China.

Authors:  Xiaoyun Xiao; Qiongchao Jiang; Huan Wu; Xiaofeng Guan; Wei Qin; Baoming Luo
Journal:  Eur Radiol       Date:  2016-10-19       Impact factor: 5.315

Review 5.  Sonoelastography techniques in the evaluation and diagnosis of parotid neoplasms.

Authors:  Olwen Westerland; David Howlett
Journal:  Eur Radiol       Date:  2012-02-26       Impact factor: 5.315

6.  Combination of elastography and tissue quantification using the acoustic radiation force impulse (ARFI) technology for differential diagnosis of breast masses.

Authors:  Mitsuhiro Tozaki; Sachiko Isobe; Masaaki Sakamoto
Journal:  Jpn J Radiol       Date:  2012-07-18       Impact factor: 2.374

7.  Training the ACRIN 6666 Investigators and effects of feedback on breast ultrasound interpretive performance and agreement in BI-RADS ultrasound feature analysis.

Authors:  Wendie A Berg; Jeffrey D Blume; Jean B Cormack; Ellen B Mendelson
Journal:  AJR Am J Roentgenol       Date:  2012-07       Impact factor: 3.959

Review 8.  Diagnostic performance of shear wave elastography in the identification of malignant thyroid nodules: a meta-analysis.

Authors:  Peiliang Lin; Minqi Chen; Baoxian Liu; Siwen Wang; Xiaoxi Li
Journal:  Eur Radiol       Date:  2014-08-12       Impact factor: 5.315

9.  Shear wave elastography of tumour growth in a human breast cancer model with pathological correlation.

Authors:  Foucauld Chamming's; H Latorre-Ossa; M A Le Frère-Belda; V Fitoussi; T Quibel; F Assayag; E Marangoni; G Autret; D Balvay; L Pidial; J L Gennisson; M Tanter; C A Cuenod; O Clément; L S Fournier
Journal:  Eur Radiol       Date:  2013-04-04       Impact factor: 5.315

Review 10.  What scans we will read: imaging instrumentation trends in clinical oncology.

Authors:  Thomas Beyer; Luc Bidaut; John Dickson; Marc Kachelriess; Fabian Kiessling; Rainer Leitgeb; Jingfei Ma; Lalith Kumar Shiyam Sundar; Benjamin Theek; Osama Mawlawi
Journal:  Cancer Imaging       Date:  2020-06-09       Impact factor: 3.909

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