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Development of a widefield reflectance and fluorescence imaging device for the detection of skin and oral cancer

机译:用于检测皮肤和口服癌的宽地反射率和荧光成像装置的开发

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Oral and skin cancers constitute a major global health problem that cause great impact in patients. The most common screening method for oral cancer is visual inspection and palpation of the mouth. Visual examination relies heavily on the experience and skills of the physician to identify and delineate early premalignant and cancer changes, which is not simple due to the similar characteristics of early stage cancers and benign lesions. Optical imaging has the potential to address these clinical challenges. Contrast between normal and neoplastic areas may be increased, distinct to the conventional white light, when using illumination and detection conditions. Reflectance imaging can detect local changes in tissue scattering and absorption and fluorescence imaging can probe changes in the biochemical composition. These changes have shown to be indicatives of malignant progression. Widefield optical imaging systems are interesting because they may enhance the screening ability in large regions allowing the discrimination and the delineation of neoplastic and potentially of occult lesions. Digital image processing allows the combination of autofluorescence and reflectance images in order to objectively identify and delineate the peripheral extent of neoplastic lesions in the skin and oral cavity. Combining information from different imaging modalities has the potential of increasing diagnostic performance, due to distinct provided information. A simple widefiled imaging device based on fluorescence and reflectance modes together with a digital image processing was assembled and its performance tested in an animal study.
机译:口腔和皮肤癌症构成了一个主要的全球健康问题,对患者产生了很大的影响。口腔癌的最常见的筛查方法是目视检查和触诊口腔。视觉审查严重依赖于医生的经验和技能来识别和描绘早期血急性和癌症的变化,这是由于早期癌症和良性病变的类似特征,这并不简单。光学成像有可能解决这些临床挑战。当使用照明和检测条件时,可以增加正常和肿瘤区域之间的对比度,与传统的白光不同。反射成像可以检测组织散射和吸收和荧光成像的局部变化可以探测生物化学组合物的变化。这些变化表明是恶性进展的指示。宽场光学成像系统很有趣,因为它们可以增强大区域中的筛选能力,允许歧视和暗示肿瘤和潜在的隐匿性病变的划分。数字图像处理允许自发荧光和反射图像的组合,以便于客观地识别和描绘皮肤和口腔中的肿瘤病变的外围范围。组合来自不同成像模式的信息具有增加诊断性能的潜力,由于截然不同的信息。组装了一种基于荧光和反射模式以及数字图像处理的简单的内部成像装置及其在动物研究中测试的性能。

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