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Detection of early colorectal cancer development in the azoxymethane rat carcinogenesis model with Fourier domain low coherence interferometry

机译:傅里叶域低相干干涉法在乙氧基甲烷大鼠致癌模型中检测大肠癌的早期发展

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摘要

Fourier domain low coherence interferometry (fLCI) is an emerging optical technique used to quantitatively assess cell nuclear morphology in tissue as a means of detecting early cancer development. In this work, we use the azoxymethane rat carcinogenesis model, a well characterized and established model for colon cancer research, to demonstrate the ability of fLCI to distinguish between normal and preneoplastic ex-vivo colon tissue. The results show highly statistically significant differences between the measured cell nuclear diameters of normal and azoxymethane-treated tissues, thus providing strong evidence that fLCI may be a powerful tool for non-invasive, quantitative detection of early changes associated with colorectal cancer development.
机译:傅里叶域低相干干涉术(fLCI)是一种新兴的光学技术,用于定量评估组织中的细胞核形态,作为检测早期癌症发展的一种手段。在这项工作中,我们使用丙氧基甲烷大鼠致癌模型,这是结肠癌研究的一个已充分表征和建立的模型,以证明fLCI区分正常和癌前离体结肠组织的能力。结果表明,正常组织和经乙氧基甲烷处理的组织的细胞核直径之间存在统计学上的显着差异,因此提供了有力的证据表明,fLCI可能是非侵入性,定量检测与大肠癌发展相关的早期变化的有力工具。

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