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Tumor margin assessment of surgical tissue specimen of cancer patients using label-free hyperspectral imaging

机译:无标记高光谱成像评估癌症患者手术组织标本的肿瘤边缘

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We are developing label-free hyperspectral imaging (HSI) for tumor margin assessment. HSI data, hypercube (x,y,λ), consists of a series of high-resolution images of the same field of view that are acquired at different wavelengths. Every pixel on the HSI image has an optical spectrum. We developed preprocessing and classification methods for HSI data. We used spectral features from HSI data for the classification of cancer and benign tissue. We collected surgical tissue specimens from 16 human patients who underwent head and neck (H&N) cancer surgery. We acquired both HSI, autofluorescence images, and fluorescence images with 2-NBDG and proflavine from the specimens. Digitized histologic slides were examined by an H&N pathologist. The hyperspectral imaging and classification method was able to distinguish between cancer and normal tissue from oral cavity with an average accuracy of 90±8%, sensitivity of 89±9%, and specificity of 91±6%. For tissue specimens from the thyroid, the method achieved an average accuracy of 94±6%, sensitivity of 94±6%, and specificity of 95±6%. Hyperspectral imaging outperformed autofluorescence imaging or fluorescence imaging with vital dye (2-NBDG or proflavine). This study suggests that label-free hyperspectral imaging has great potential for tumor margin assessment in surgical tissue specimens of H&N cancer patients. Further development of the hyperspectral imaging technology is warranted for its application in image-guided surgery.
机译:我们正在开发无标记的高光谱成像(HSI),用于肿瘤边缘评估。 HSI数据超立方体(x,y,λ)由在不同波长下采集的同一视场的一系列高分辨率图像组成。 HSI图像上的每个像素都有一个光谱。我们为HSI数据开发了预处理和分类方法。我们使用来自HSI数据的光谱特征对癌症和良性组织进行分类。我们从16例接受了头颈(H&N)癌症手术的人类患者中收集了手术组织标本。我们从标本中获得了HSI,自发荧光图像以及2-NBDG和黄酮的荧光图像。 H&N病理学家检查了数字化的组织切片。高光谱成像和分类方法能够从口腔中区分出癌症和正常组织,平均准确度为90±8%,灵敏度为89±9%,特异性为91±6%。对于甲状腺组织样本,该方法的平均准确度为94±6%,灵敏度为94±6%,特异性为95±6%。高光谱成像优于自发荧光成像或活体染料(2-NBDG或前黄酮)的荧光成像。这项研究表明,无标记的高光谱成像在H&N癌症患者的手术组织标本中具有巨大的肿瘤边缘评估潜力。高光谱成像技术的进一步发展保证了其在图像引导手术中的应用。

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