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首页> 外文期刊>Endoscopy: Journal for Clinical Use Biopsy and Technique >In vivo endoscopic optical coherence tomography of the human gastrointestinal tract--toward optical biopsy.
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In vivo endoscopic optical coherence tomography of the human gastrointestinal tract--toward optical biopsy.

机译:人胃肠道的体内内窥镜光学相干断层扫描-走向光学活检。

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BACKGROUND AND STUDY AIMS: Optical coherence tomography (OCT) is a new technique for high-resolution cross-sectional imaging using infrared light. It has over 10 times the resolution of the currently available ultrasonography. Although in vitro studies have suggested its potential for gastrointestinal imaging, in vivo studies have not been possible so far on account of technical limitations. PATIENTS AND METHODS: We describe here the first clinical study of OCT during routine endoscopy obtaining high resolution images of the normal esophageal, gastric, and colonic mucosa. Portable OCT equipment and a fiberoptic-based flexible probe for endoscopic use have been developed by the authors. RESULTS: Differences in the optical properties of epithelium, lamina propria, muscularis mucosae, and submucosa enabled distinction of the mucosal architecture. Owing to the low penetration depth (1 mm) and high resolution (10 microm), OCT images may become comparable to mucosal histological findings. Image acquisition time was 1.5 seconds, and the entire procedure was completed within 5 minutes. Endoscopic OCT images of colonic adenoma and carcinoma were also studied and compared with the corresponding histology. CONCLUSIONS: The newly developed portable OCT equipment and flexible fiberoptic probe makes OCT a promising method for endoscopic "optical biopsy".
机译:背景和研究目的:光学相干断层扫描(OCT)是一种使用红外光进行高分辨率横截面成像的新技术。它的分辨率是当前超声检查的十倍以上。尽管体外研究表明其具有胃肠道成像的潜力,但由于技术局限性,迄今为止尚无法进行体内研究。患者与方法:我们在这里描述了常规内窥镜检查期间进行OCT的第一项临床研究,以获取正常食管,胃和结肠粘膜的高分辨率图像。作者开发了便携式OCT设备和用于内窥镜的基于光纤的柔性探头。结果:上皮,固有层,粘膜肌层和粘膜下层的光学特性差异使得能够区分粘膜结构。由于低穿透深度(1毫米)和高分辨率(10微米),OCT图像可能变得与粘膜组织学表现相当。图像采集时间为1.5秒,整个过程在5分钟内完成。还研究了结肠腺瘤和癌的内镜OCT图像,并将其与相应的组织学进行了比较。结论:新开发的便携式OCT设备和柔性光纤探头使OCT成为内窥镜“光学活检”的有前途的方法。

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