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Noninvasive detection and staging of oral cancer in vivo with confocal optoacoustic tomography

机译:共聚焦光声断层扫描在体内对口腔癌的无创检测和分期

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Abstract: Confocal opto-acoustic transducer (COAT) was developed and applied for detection of early stages of squamous cell carcinoma in hamster model of oral cancer. COAT is a novel imaging modality with optical and acoustic lens utilized for detecting in-depth opto-acoustic front surface transducer is an improved lateral resolution of 60-$mu@m. The bandwidth of the confocal opto-acoustic transducer is more than 100 MHz. Therefore, in-depth axial resolution defined by the laser pulse duration and detection system equals 15-$mu@m. Imaging was performed at the wavelength of the Nd:YAG laser second harmonic, which provided sufficient depth of monitoring and significant tissue contrast. Correlation of the opto- acoustic images with H and E histology sections in control animals and in animals treated with carcinogenic agent, DMBA, confirmed previous findings that early cancer lesions invisible by the naked eye may be detected with the opto- acoustic tomography. Compact design of COAT allows, in principle, application of the opto-acoustic imaging in any organ of the human digestive system. !27
机译:摘要:开发了共焦光声换能器(COAT),用于口腔仓鼠模型早期鳞状细胞癌的检测。 COAT是一种新颖的成像方式,其光学和声学透镜用于检测深度光声前表面换能器,横向分辨率提高了60-μm。共焦光声换能器的带宽大于100 MHz。因此,由激光脉冲持续时间和检测系统定义的深度轴向分辨率等于15-μm。成像是在Nd:YAG激光二次谐波的波长下进行的,可提供足够的监视深度和明显的组织对比度。对照动物和经致癌剂DMBA处理的动物的H和E组织学切片的光声图像的相关性证实了先前的发现,即可以用光波断层摄影术检测到肉眼看不见的早期癌症病变。原则上,紧凑的COAT设计允许将光声成像技术应用于人体消化系统的任何器官。 !27

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