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The Status of Advanced Imaging Techniques for Optical Biopsy of Colonic Polyps

机译:结肠息肉光学活检的高级成像技术现状

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摘要

The progressive miniaturization of photonic components presents the opportunity to obtain unprecedented microscopic images of colonic polyps in real time during endoscopy. This information has the potential to act as “optical biopsy” to aid clinical decision-making, including the possibility of adopting new paradigms such as a “resect and discard” approach for low-risk lesions. The technologies discussed in this review include confocal laser endomicroscopy, optical coherence tomography, multiphoton microscopy, Raman spectroscopy, and hyperspectral imaging. These are in different stages of development and clinical readiness, but all show the potential to produce reliable discrimination of different tissue types. A structured literature search of the imaging techniques for colorectal polyps has been conducted. The significant developments in endoscopic imaging were identified for each modality, and the status of current development was discussed. Of the advanced imaging techniques discussed, confocal laser endomicroscopy is in clinical use and, under optimal conditions with an experienced operator, can provide accurate histological assessment of tissue. The remaining techniques show potential for incorporation into endoscopic equipment and practice, although further component development is needed, followed by robust prospective validation of accuracy. Optical coherence tomography illustrates tissue “texture” well and gives good assessment of mucosal thickness and layers. Multiphoton microscopy produces high-resolution images at a subcellular resolution. Raman spectroscopy and hyperspectral imaging are less developed endoscopically but provide a tissue “fingerprint” which can distinguish between tissue types. Molecular imaging may become a powerful adjunct to other techniques, with its ability to precisely label specific molecules within tissue and thereby enhance imaging.
机译:光子组件的逐步小型化为在内窥镜检查中实时获得结肠息肉的空前显微图像提供了机会。该信息有可能充当“光学活检”以帮助临床决策,包括采用新的范例,例如对低风险病变采用“切除并丢弃”的方法。本文中讨论的技术包括共聚焦激光内窥镜检查,光学相干断层扫描,多光子显微镜检查,拉曼光谱和高光谱成像。这些处于发展和临床准备的不同阶段,但是都显示出产生可靠区分不同组织类型的潜力。对结肠息肉的成像技术进行了结构化文献检索。内窥镜成像的重大发展被确定为每种方式,并讨论了目前的发展状况。在讨论的先进成像技术中,共焦激光内窥镜已在临床中使用,并且在经验丰富的操作员的最佳条件下,可以提供组织的准确组织学评估。尽管还需要进一步的组件开发,然后通过可靠的前瞻性准确性验证,但其余技术仍显示出有可能被纳入内窥镜设备和实践中。光学相干断层扫描很好地说明了组织的“质地”,并很好地评估了粘膜厚度和层。多光子显微镜可产生亚细胞分辨率的高分辨率图像。拉曼光谱和高光谱成像在内窥镜下发展较差,但提供了可以区分不同组织类型的组织“指纹”。分子成像可以精确标记组织内的特定分子,从而增强成像能力,因此可能成为其他技术的强大辅助手段。

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