首页> 外文期刊>Cancer research: The official organ of the American Association for Cancer Research, Inc >Molecular histopathology by spectrally reconstructed nonlinear interferometric vibrational imaging.
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Molecular histopathology by spectrally reconstructed nonlinear interferometric vibrational imaging.

机译:分子组织病理学通过光谱重建的非线性干涉振动成像。

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摘要

Sensitive assays for rapid quantitative analysis of histologic sections, resected tissue specimens, or in situ tissue are highly desired for early disease diagnosis. Stained histopathology is the gold standard but remains a subjective practice on processed tissue taking from hours to days. We describe a microscopy technique that obtains a sensitive and accurate color-coded image from intrinsic molecular markers. Spectrally reconstructed nonlinear interferometric vibrational imaging can differentiate cancer versus normal tissue sections with greater than 99% confidence interval in a preclinical rat breast cancer model and define cancer boundaries to +/- 100 mum with greater than 99% confidence interval, using fresh unstained tissue sections imaged in less than 5 minutes. By optimizing optical sources and beam delivery, this technique can potentially enable real-time point-of-care optical molecular imaging and diagnosis.
机译:快速诊断组织学切片,切除的组织标本或原位组织的灵敏测定法非常适合早期疾病诊断。染色的组织病理学是金标准,但对经过处理的组织要花费数小时至数天仍是一种主观做法。我们描述了一种显微镜技术,可从内在的分子标记物获得灵敏且准确的颜色编码图像。光谱重建的非线性干涉振动成像可以在临床前大鼠乳腺癌模型中以大于99%的置信区间区分癌症和正常组织切片,并使用新鲜的未染色组织切片将癌症边界定义为+/- 100毫米(大于99%的置信区间)。不到5分钟即可成像。通过优化光源和光束传输,该技术可以潜在地实现即时医疗点光学分子成像和诊断。

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