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利用一种新的无对比超声技术对乳腺肿瘤血管生成进行容积成像和形态计量分析:一项可行性研究。

Volumetric imaging and morphometric analysis of breast tumor angiogenesis using a new contrast-free ultrasound technique: a feasibility study.

机构信息

Department of Physiology and Biomedical Engineering, Mayo Clinic College of Medicine and Science, Rochester, MN, USA.

Department of Quantitative Health Sciences, Mayo Clinic College of Medicine and Science, Rochester, MN, USA.

出版信息

Breast Cancer Res. 2022 Nov 30;24(1):85. doi: 10.1186/s13058-022-01583-3.

Abstract

BACKGROUND

There is a strong correlation between the morphological features of new tumor vessels and malignancy. However, angiogenic heterogeneity necessitates 3D microvascular data of tumor microvessels for more reliable quantification. To provide more accurate information regarding vessel morphological features and improve breast lesion characterization, we introduced a quantitative 3D high-definition microvasculature imaging (q3D-HDMI) as a new easily applicable and robust tool to morphologically characterize microvasculature networks in breast tumors using a contrast-free ultrasound-based imaging approach.

METHODS

In this prospective study, from January 2020 through December 2021, a newly developed q3D-HDMI technique was evaluated on participants with ultrasound-identified suspicious breast lesions recommended for core needle biopsy. The morphological features of breast tumor microvessels were extracted from the q3D-HDMI. Leave-one-out cross-validation (LOOCV) was applied to test the combined diagnostic performance of multiple morphological parameters of breast tumor microvessels. Receiver operating characteristic (ROC) curves were used to evaluate the prediction performance of the generated pooled model.

RESULTS

Ninety-three participants (mean age 52 ± 17 years, 91 women) with 93 breast lesions were studied. The area under the ROC curve (AUC) generated with q3D-HDMI was 95.8% (95% CI 0.901-1.000), yielding a sensitivity of 91.7% and a specificity of 98.2%, that was significantly higher than the AUC generated with the q2D-HDMI (p = 0.02). When compared to q2D-HDMI, the tumor microvessel morphological parameters obtained from q3D-HDMI provides distinctive information that increases accuracy in differentiating breast tumors.

CONCLUSIONS

The proposed quantitative volumetric imaging technique augments conventional breast ultrasound evaluation by increasing specificity in differentiating malignant from benign breast masses.

摘要

背景

新肿瘤血管的形态特征与恶性程度之间存在很强的相关性。然而,血管生成的异质性需要对肿瘤微血管进行 3D 微血管数据的定量分析,以实现更可靠的定量分析。为了提供更准确的血管形态特征信息,并改善乳腺病变的特征描述,我们引入了一种新的、易于应用的、强大的定量 3D 高清微血管成像(q3D-HDMI)技术,该技术使用无对比超声成像方法,对乳腺肿瘤中的微血管网络进行形态学特征描述。

方法

在这项前瞻性研究中,我们在 2020 年 1 月至 2021 年 12 月期间,评估了一种新开发的 q3D-HDMI 技术在超声识别为可疑的乳腺病变患者中的应用,这些病变建议进行核心针活检。从 q3D-HDMI 中提取乳腺肿瘤微血管的形态特征。采用留一法交叉验证(LOOCV)测试乳腺肿瘤微血管多个形态参数的联合诊断性能。使用受试者工作特征(ROC)曲线评估生成的组合模型的预测性能。

结果

共 93 名患者(平均年龄 52±17 岁,91 名女性)和 93 个乳腺病变参与了研究。q3D-HDMI 生成的 ROC 曲线下面积(AUC)为 95.8%(95%CI 0.901-1.000),其灵敏度为 91.7%,特异性为 98.2%,显著高于 q2D-HDMI 生成的 AUC(p=0.02)。与 q2D-HDMI 相比,q3D-HDMI 获得的肿瘤微血管形态参数提供了更具鉴别力的信息,可提高鉴别乳腺肿瘤良恶性的准确性。

结论

提出的定量容积成像技术通过提高鉴别良恶性乳腺肿块的特异性,增强了常规乳腺超声评估。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ab2e/9710093/5198f7e4175e/13058_2022_1583_Fig1_HTML.jpg

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