4.6 Article

Ultrasound super-resolution imaging for differential diagnosis of breast masses

Journal

FRONTIERS IN ONCOLOGY
Volume 12, Issue -, Pages -

Publisher

FRONTIERS MEDIA SA
DOI: 10.3389/fonc.2022.1049991

Keywords

breast mass; super-resolution imaging; ultrasound; contrast-enhanced ultrasound; differential diagnosis

Categories

Funding

  1. Key Research and Development Project of Hubei Province [2020BCB022]
  2. Hubei Provincial Health and Family Planning Commission [WJ2019H197]
  3. Wuhan Municipal Health Commission [WX21C07]

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Ultrasound super-resolution imaging (SRI) has shown the ability to display microvasculature at higher resolution than conventional imaging techniques for breast masses. Micro-vessel density (MVD) has the highest positive correlation with malignancy among the parameters examined, indicating its potential as an important imaging marker for differential diagnosis of breast masses.
ObjectiveUltrasound imaging has been widely used in breast cancer screening. Recently, ultrasound super-resolution imaging (SRI) has shown the capability to break the diffraction limit to display microvasculature. However, the application of SRI on differential diagnosis of breast masses remains unknown. Therefore, this study aims to evaluate the feasibility and clinical value of SRI for visualizing microvasculature and differential diagnosis of breast masses. MethodsB mode, color-Doppler flow imaging (CDFI) and contrast-enhanced ultrasound (CEUS) images of 46 patients were collected respectively. SRI were generated by localizations of each possible contrast signals. Micro-vessel density (MVD) and microvascular flow rate (MFR) were calculated from SRI and time to peak (TTP), peak intensity (PI) and area under the curve (AUC) were obtained by quantitative analysis of CEUS images respectively. Pathological results were considered as the gold standard. Independent chi-square test and multivariate logistic regression analysis were performed using these parameters to examine the correlation. ResultsThe results showed that SRI technique could be successfully applied on breast masses and display microvasculature at a significantly higher resolution than the conventional CDFI and CEUS images. The results showed that the PI, AUC, MVD and MFR of malignant breast masses were significantly higher than those of benign breast masses, while TTP was significantly lower than that of benign breast masses. Among all five parameters, MVD showed the highest positive correlation with the malignancy of breast masses. ConclusionsSRI is able to successfully display the microvasculature of breast masses. Compared with CDFI and CEUS, SRI can provide additional morphological and functional information for breast masses. MVD has a great potential in assisting the differential diagnosis of breast masses as an important imaging marker.

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