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In vivo detection of cervical intraepithelial neoplasia by multimodal colposcopy

机译:多模式阴道镜检查的体内检测宫颈上皮内瘤形成

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Cervical cancer is the leading cause of cancer death for women in developing countries. Colposcopy plays an important role in early screening and detection of cervical intraepithelial neoplasia (CIN). In this paper, we developed a multimodal colposcopy system that combines multispectral reflectance, autofluorescence, and RGB imaging for in vivo detection of CIN, which is capable of dynamically recording multimodal data of the same region of interest (ROI). We studied the optical properties of cervical tissue to determine multi-wavelengths for different imaging modalities. Advanced algorithms based on the second derivative spectrum and the fluorescence intensity were developed to differentiate cervical tissue into two categories: squamous normal (SN) and high grade (HG) dysplasia. In the results, the kinetics of cervical reflectance and autofluorescence characteristics pre and post acetic acid application were observed and analyzed, and the image segmentation revealed good consistency with the gold standard of histopathology. Our pilot study demonstrated the clinical potential of this multimodal colposcopic system for in vivo detection of cervical cancer.
机译:宫颈癌是癌症死亡的妇女在发展中国家的主要原因。阴道镜起着早期筛查和宫颈上皮内瘤变(CIN)的检测具有重要作用。在本文中,我们开发了一种多峰阴道镜系统,结合多光谱反射率,自体荧光,并且用于RGB成像体内检测CIN,其能够动态地记录相同的感兴趣区域(ROI)的多模态数据的。我们研究了宫颈组织的光学性质,以确定多波长为不同的成像模态。基于所述第二导数光谱和荧光强度先进的算法被开发分化宫颈组织分为两类:鳞状正常(SN)和高级别(HG)发育不良。在结果中,颈椎反射率和自发荧光特性的动力学预先与进行观察和分析柱乙酸应用,并且所述图像分割揭示了与组织病理学的黄金标准一致性好。我们的初步研究证实了在体内检测宫颈癌的这种多阴道镜系统的临床应用前景。

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