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Multispectral reflectance enhancement for breast cancer visualization in the operating room

机译:多光谱反射率增强,可在手术室中可视化乳腺癌

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A color enhancement method to optimize the visualization of breast tumors in cancer pathology is proposed. Light scattering measurements are minimally invasive, and allow the estimation of tissue morphology and composition to guide the surgeon in resection surgeries. The usability of scatter and absorption signatures acquired with a micro-sampling reflectance spectral imaging system was improved employing an empirical approximation to the Mie theory to estimate the scattering power on a per-pixel basis. The proposed methodology generates a new image with blended color and diagnostic purposes coming from the emphasis or highlighting of specific wavelengths or features. These features can be the specific absorbent tissue components (oxygenated and deoxygenated hemoglobin, etc.), additional parameters as scattering power or amplitude or even the combination of both. The goal is to obtain an improved and inherent tissue contrast working only with the local reflectance of tissue. To this aim, it is provided a visual interpretation of what is considered non-malignant (normal epithelia and stroma, benign epithelia and stroma, inflammation), malignant (DCIS, IDC, ILC) and adipose tissue. Consequently, a fast visualization map of the intracavity area can be offered to the surgeon providing relevant diagnostic information. No labeling or extrinsic indicators are required for proposed methodology and therefore the possibility of transferring absorption and scattering features simultaneously into visualization, fusing their effects into a single image, can guide surgeons efficiently.
机译:提出了一种优化癌症病理学中乳腺肿瘤可视化的色彩增强方法。光散射测量是微创的,可以估计组织形态和成分,以指导外科医生进行切除手术。通过对Mie理论进行经验近似以逐像素为基础估计散射功率,改进了使用微采样反射光谱成像系统获取的散射和吸收特征的可用性。所提出的方法可以生成新图像,具有混合的颜色,并且可以通过强调或突出特定波长或特征来达到诊断目的。这些特征可以是特定的吸收性组织成分(氧化的和脱氧的血红蛋白等),其他参数,如散射功率或振幅,甚至是两者的组合。目的是获得仅在组织的局部反射率下起作用的改善的固有组织对比度。为了这个目的,提供了可视为非恶性(正常上皮和间质,良性上皮和间质,炎症),恶性(DCIS,IDC,ILC)和脂肪组织的视觉解释。因此,可以向外科医生提供腔内区域的快速可视化图,从而提供相关的诊断信息。提议的方法不需要标记或外部指标,因此可以将吸收和散射特征同时转移到可视化中,并将其效果融合到单个图像中,从而可以有效地指导外科医生。

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