Diagnostic value of contrast-enhanced ultrasound and shear-wave elastography for small breast nodules

Author:

Shen Yan1,He Jie1,Liu Miao1,Hu Jiaojiao1,Wan Yonglin1,Zhang Tingting1,Ding Jun2,Dong Jiangnan3,Fu Xiaohong1

Affiliation:

1. Department of Medical Ultrasound, Gongli Hospital, Shanghai, China

2. Department of Pathology, Gongli Hospital, Shanghai, China

3. Department of Surgery, Gongli Hospital, Shanghai, China

Abstract

Background The study aims to evaluate the diagnostic efficacy of contrast-enhanced ultrasound (CEUS) and shear-wave elastography (SWE) in detecting small malignant breast nodules in an effort to inform further refinements of the Breast Imaging Reporting and Data System (BI-RADS) classification system. Methods This study retrospectively analyzed patients with breast nodules who underwent conventional ultrasound, CEUS, and SWE at Gongli Hospital from November 2015 to December 2019. The inclusion criteria were nodules ≤ 2 cm in diameter with pathological outcomes determined by biopsy, no prior treatments, and solid or predominantly solid nodules. The exclusion criteria included pregnancy or lactation and low-quality images. Imaging features were detailed and classified per BI-RADS. Diagnostic accuracy was assessed using receiver operating characteristic curves. Results The study included 302 patients with 305 breast nodules, 113 of which were malignant. The diagnostic accuracy was significantly improved by combining the BI-RADS classification with CEUS and SWE. The combined approach yielded a sensitivity of 88.5%, specificity of 87.0%, positive predictive value of 80.0%, negative predictive value of 92.8%, and accuracy of 87.5% with an area under the curve of 0.877. Notably, 55.8% of BI-RADS 4A nodules were downgraded to BI-RADS 3 and confirmed as benign after pathological examination, suggesting the potential to avoid unnecessary biopsies. Conclusion The integrated use of the BI-RADS classification, CEUS, and SWE enhances the accuracy of differentiating benign and malignant small breast nodule, potentially reducing the need for unnecessary biopsies.

Funder

Surface Project of Shanghai Health and Family Planning Commission

Shanghai Pudong New Area Health System key Specialty Construction

Publisher

PeerJ

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