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Fluorescence lifetime imaging microscopy: in vivo application to diagnosis of oral carcinoma

机译:荧光寿命成像显微镜:体内应用在口腔癌的诊断中

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摘要

A compact clinically compatible fluorescence lifetime imaging microscopy (FLIM) system was designed and built for intraoperative disease diagnosis and validated in vivo in a hamster oral carcinogenesis model. This apparatus allows for the remote image collection via a flexible imaging probe consisting of a gradient index objective lens and a fiber bundle. Tissue autofluorescence (337 nm excitation) was imaged using an intensified CCD with a gate width down to 0.2 ns. We demonstrate a significant contrast in fluorescence lifetime between tumor (1.77+-0.26 ns) and normal (2.50+-0.36 ns) tissues at 450 nm and an over 80percent intensity decrease at 390 nm emission in tumor versus normal areas. The time-resolved images were minimally affected by tissue morphology, endogenous absorbers, and illumination. These results demonstrate the potential of FLIM as an intraoperative diagnostic technique.
机译:设计并构建了紧凑的临床兼容荧光寿命成像显微镜(FLIM)系统,用于术中疾病诊断,并在仓鼠口腔致癌模型中进行了体内验证。该设备允许通过由梯度折射率物镜和纤维束组成的柔性成像探头进行远程图像采集。使用栅极宽度低至0.2 ns的增强CCD对组织自发荧光(337 nm激发)成像。我们证明在450 nm处的肿瘤(1.77 + -0.26 ns)与正常组织(2.50 + -0.36 ns)之间的荧光寿命存在显着差异,并且与正常区域相比,在390 nm处的发射强度降低了80%以上。时间分辨图像受组织形态,内源吸收剂和照明的影响最小。这些结果证明了FLIM作为术中诊断技术的潜力。

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