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On the possibility of time-lapse ultrahigh-resolution optical coherence tomography for bladder cancer grading

机译:延时超高分辨率光学相干断层扫描在膀胱癌分级中的可能性

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摘要

It has been recently demonstrated that the cellular details of bladder epithelium embedded in speckle noise can be uncovered with time-lapse ultrahigh-resolution optical coherence tomography (TL-uOCT) by proper time-lapse frame averaging that takes advantage of cellular micromotion in fresh biological tissue ex vivo. Here, spectral-domain 3-D TL-uOCT is reported to further improve the image fidelity, and new experimental evidence is presented to differentiate normal and cancerous nuclei of rodent bladder epithelia. Results of animal cancer study reveal that despite a slight overestimation (e.g., <10%) of nuclear size (DN) to histological evaluation, TL-uOCT is capable of distinguishing normal (DN≈7 μm) and cancerous (e.g., high-grade DN≈13 μm) urothelia, which may potentially be very useful for enhancing the diagnosis of nonpapillary bladder cancer. More animal study is being conducted to examine the utility to differentiate hyperplasia, dysplasia, and carcinoma in situ.
机译:最近已经证明,通过适当的延时帧平均,可以利用时移的超高分辨率光学相干断层扫描(TL-uOCT)来发现嵌入斑点噪声中的膀胱上皮的细胞细节,该过程利用了新鲜生物中的细胞微运动。离体组织。在这里,据报道,光谱域3-D TL-uOCT进一步提高了图像保真度,并提供了新的实验证据来区分啮齿动物膀胱上皮的正常和癌核。动物癌症研究的结果表明,尽管对组织学评估略微高估了核大小(DN)(例如,<10%),但TL-uOCT能够区分正常(DN≈7μm)和癌性(例如高等) DN ''≈13μm)尿路上皮,对增强非乳头状膀胱癌的诊断可能非常有用。正在进行更多的动物研究,以检查区分原位增生,发育异常和癌的效用。

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