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Microcalcification-Based Tumor Malignancy Evaluation in Fresh Breast Biopsies with Hyperspectral Stimulated Raman Scattering

机译:高光谱刺激拉曼散射新鲜乳房活组织检查中的微钙化肿瘤恶性评价

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摘要

Precise evaluation of breast tumor malignancy based on tissue calcifications has important practical value in the disease diagnosis, as well as the understanding of tumor development. Traditional X-ray mammography provides the overall morphologies of the calcifications but lacks intrinsic chemical information. In contrast, spontaneous Raman spectroscopy offers detailed chemical analysis but lacks the spatial profiles. Here, we applied hyperspectral stimulated Raman scattering (SRS) microscopy to extract both the chemical and morphological features of the microcalcifications, based on the spectral and spatial domain analysis. A total of 211 calcification sites from 23 patients were imaged with SRS, and the results were analyzed with a support vector machine (SVM) based classification algorithm. With optimized combinations of chemical and geometrical features of microcalcifications, we were able to reach a precision of 98.21% and recall of 100.00% for classifying benign and malignant cases, significantly improved from the pure spectroscopy or imaging based methods. Our findings may provide a rapid means to accurately evaluate breast tumor malignancy based on fresh tissue biopsies.
机译:基于组织钙化的乳腺肿瘤恶性程度的精确评估在疾病诊断和了解肿瘤发展方面具有重要的实用价值。传统的X射线钼靶摄影提供钙化的整体形态,但缺乏内在的化学信息。相比之下,自发拉曼光谱提供了详细的化学分析,但缺乏空间轮廓。在这里,我们基于光谱和空间域分析,应用高光谱受激拉曼散射(SRS)显微镜来提取微钙化的化学和形态特征。对23例患者的211个钙化点进行SRS成像,并使用基于支持向量机(SVM)的分类算法对结果进行分析。通过优化微钙化的化学和几何特征组合,我们能够达到98.21%的准确率和100.00%的良恶性病例分类召回率,与纯光谱或基于成像的方法相比有了显著改善。我们的发现可能提供一种基于新鲜组织活检准确评估乳腺肿瘤恶性程度的快速方法。

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  • 来源
    《Analytical chemistry》 |2021年第15期|共9页
  • 作者单位

    State Key Laboratory of Surface Physics and Department of Physics Human Phenome Institute Multiscale Research Institute of Complex Systems Academy for Engineering and Technology Key Laboratory of Micro and Nano Photonic Structures Ministry of Educati;

    Department of Breast Surgery Fudan University Shanghai Cancer Center;

    State Key Laboratory of Surface Physics and Department of Physics Human Phenome Institute Multiscale Research Institute of Complex Systems Academy for Engineering and Technology Key Laboratory of Micro and Nano Photonic Structures Ministry of Educati;

    State Key Laboratory of Surface Physics and Department of Physics Human Phenome Institute Multiscale Research Institute of Complex Systems Academy for Engineering and Technology Key Laboratory of Micro and Nano Photonic Structures Ministry of Educati;

    Department of Breast Surgery Fudan University Shanghai Cancer Center;

    Department of Oncology Shanghai Medical College Fudan University;

    Department of Breast Surgery Fudan University Shanghai Cancer Center;

    State Key Laboratory of Surface Physics and Department of Physics Human Phenome Institute Multiscale Research Institute of Complex Systems Academy for Engineering and Technology Key Laboratory of Micro and Nano Photonic Structures Ministry of Educati;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分析化学;
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