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Quantitative label-free multimodality nonlinear optical imaging for in situ differentiation of cancerous lesions

机译:用于癌变病变原位分化的定量标记多模非线性光学成像

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The development of real-time, label-free imaging techniques has recently attracted research interest for in situ differentiation of cancerous lesions from normal tissues. Molecule-specific intrinsic contrast can arise from label-free imaging techniques such as Coherent Anti-Stokes Raman Scattering (CARS), Two-Photon Excited AutoFluorescence (TPEAF), and Second Harmonic Generation (SHG), which, in combination, would hold the promise of a powerful label-free tool for cancer diagnosis. Among cancer-related deaths, lung carcinoma is the leading cause for both sexes. Although early treatment can increase the survival rate dramatically, lesion detection and precise diagnosis at an early stage is unusual due to its asymptomatic nature and limitations of current diagnostic techniques that make screening difficult. We investigated the potential of using multimodality nonlinear optical microscopy that incorporates CARS, TPEAF, and SHG techniques for differentiation of lung cancer from normal tissue. Cancerous and non-cancerous lung tissue samples from patients were imaged using CARS, TPEAF, and SHG for comparison. These images showed good pathology correlation with hematoxylin and eosin (H&E) stained sections from the same tissue samples. Ongoing work includes imaging at various penetration depths to show the three-dimensional morphologies of tumor cell nuclei using CARS, elastin using TPEAF, and collagen using SHG and developing classification algorithms for quantitative feature extraction to enable lung cancer diagnosis. Our results indicate that via real-time morphology analyses, a multimodality nonlinear optical imaging platform potentially offers a powerful minimally-invasive way to differentiate cancer lesions from surrounding non-tumor tissues in vivo for clinical applications.
机译:实时开发,无标签的成像技术最近吸引了对来自正常组织的癌变病变的原位分化的研究兴趣。特异性的内在对比度可以由无标签的成像技术出现,例如连贯的防斯托克斯拉曼散射(汽车),双光子激发自荧光(TPEAF)和二次谐波产生(SHG),其组合将保持承诺强大的无标签工具用于癌症诊断。在癌症相关的死亡中,肺癌是两性的主要原因。尽管早期治疗可以显着增加存活率,但由于其无症状的性质和当前诊断技术的无误性质,病变检测和精确诊断是不寻常的。我们研究了使用多层非线性光学显微镜的潜力,其包含汽车,TPEAF和SHG技术用于与正常组织的肺癌分化。使用汽车,TPEAF和SHG对来自患者的癌性和非癌性肺组织样本进行成像。这些图像显示出与来自相同组织样品的苏木精和曙红(H&E)染色部分良好的病理学相关性。正在进行的工作包括在各种渗透深度的成像,以显示肿瘤细胞核的三维形态,使用TPEAF,使用SHG的胶原蛋白和胶原蛋白进行定量特征提取,使肺癌诊断能够实现肺癌诊断。我们的结果表明,通过实时形态学分析,多层性非线性光学成像平台可能提供一种强大的微创方式,以区分癌症病变在体内用于临床应用的癌症病变。

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