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In vivo and in vitro hyperspectral imaging of cervical neoplasia

机译:宫颈肿瘤的体内和体外高光谱成像

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Cervical cancer is a prevalent disease in many developing countries. Colposcopy is the most common approach for screening cervical intraepithelial neoplasia (CIN). However, its clinical efficacy heavily relies on the examiner's experience. Spectroscopy is a potentially effective method for noninvasive diagnosis of cervical neoplasia. In this paper, we introduce a hyperspectral imaging technique for noninvasive detection and quantitative analysis of cervical neoplasia. A hyperspectral camera is used to collect the reflectance images of the entire cervix under xenon lamp illumination, followed by standard colposcopy examination and cervical tissue biopsy at both normal and abnormal sites in different quadrants. The collected reflectance data are calibrated and the hyperspectral signals are extracted. Further spectral analysis and image processing works are carried out to classify tissue into different types based on the spectral characteristics at different stages of cervical intraepithelial neoplasia. The hyperspectral camera is also coupled with a lab microscope to acquire the hyperspectral transmittance images of the pathological slides. The in vivo and the in vitro imaging results are compared with clinical findings to assess the accuracy and efficacy of the method.
机译:宫颈癌是许多发展中国家的普遍疾病。阴道镜检查是筛查宫颈上皮内瘤变(CIN)的最常用方法。但是,其临床疗效在很大程度上取决于检查者的经验。光谱法是无创诊断宫颈肿瘤的潜在有效方法。在本文中,我们介绍了一种高光谱成像技术,用于宫颈癌的无创检测和定量分析。使用高光谱照相机在氙气灯照明下收集整个宫颈的反射图像,然后在不同象限的正常和异常部位进行标准阴道镜检查和宫颈组织活检。校准收集的反射率数据并提取高光谱信号。根据宫颈上皮内瘤变不同阶段的光谱特征,进行了进一步的光谱分析和图像处理工作,以将组织分为不同类型。高光谱照相机还与实验室显微镜耦合以获取病理切片的高光谱透射图像。将体内和体外成像结果与临床发现进行比较,以评估该方法的准确性和有效性。

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