Development of virtual histology and virtual biopsy using laser-scanning confocal microscopy.

H Inoue, J Y Cho, H Satodate, M Sakashita, E Hidaka, S Fukami, T Kazawa, T Yoshida, A Shiokawa, S Kudo
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引用次数: 50

Abstract

The aim of this project is to acquire a direct image of histology from in vivo gastrointestinal mucosa. In other words, the task of 'endo-microscope' is to observe the cellular architecture of tissue in vivo during routine endoscopic examination. As the first step to completing this study, resected fresh specimens from the oesophagus. stomach and colon were examined by laser-scanning confocal microscopy (LCM) (Fluoview, Olympus, Tokyo). Fresh untreated mucosal specimens obtained by endoscopic pinch biopsy, polypectomy or endoscopic mucosal resection were collected and placed in normal saline and examined by LCM, collecting the reflective light of a 488-nm wavelength argon laser beam. As the second step, a probe-type LCM 'endo-microscope' was designed and applied to observe the human oral-cavity mucosa. The probe has 4.5-mm outer diameter and 20-cm length, which enables easy access to oral cavity mucosa. The estimated special resolution of the probe is 1-5 microm. A real-time microscopic image directly from ex vivo fresh specimens was acquired. The acquired LCM images corresponded well with the conventional H-E light microscopic images. Cell wall, nucleus and cytoplasm were simultaneously visualized by LCM scanning. This novel method enables serial imaginary microscopic sections on fresh specimens. In addition, a probe-type LCM 'endo-microscope' was designed and was applied to observe human oral cavity mucosa. Virtual histological images from the living oral squamous cell were successfully obtained. LCM images from ex vivo fresh specimens demonstrated the features of the H-E staining histological image. In the next step to accomplish our project, we developed a LCM probe with 4.5-mm outer diameter to obtain a virtual image of human oral cavity mucosa.

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激光扫描共聚焦显微术的虚拟组织学和虚拟活检的发展。
本项目的目的是获得活体胃肠道黏膜的直接组织学图像。换句话说,“内窥镜”的任务是在常规内窥镜检查中观察体内组织的细胞结构。作为完成本研究的第一步,从食道中切除新鲜标本。胃和结肠用激光扫描共聚焦显微镜(LCM)检查(Fluoview, Olympus, Tokyo)。收集经内镜下夹取活检、息肉切除术或内镜下粘膜切除术获得的新鲜未经处理的粘膜标本,置于生理盐水中,LCM检查,收集波长488 nm氩激光束的反射光。第二步,设计探针型LCM“内镜显微镜”,用于观察人口腔黏膜。探头外径4.5毫米,长度20厘米,可以方便地进入口腔黏膜。估计探头的特殊分辨率为1-5微米。直接从离体新鲜标本获得实时显微图像。所获得的LCM图像与常规H-E光显微图像吻合良好。LCM扫描同时显示细胞壁、细胞核和细胞质。这种新颖的方法可以在新鲜标本上实现连续的假想显微切片。此外,还设计了探针型LCM“内镜显微镜”,用于观察人口腔黏膜。成功地获得了活体口腔鳞状细胞的虚拟组织学图像。离体新鲜标本的LCM图像显示了H-E染色组织学图像的特征。下一步,为了完成我们的项目,我们开发了外径4.5 mm的LCM探针,以获得人类口腔粘膜的虚拟图像。
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Abstract from the 41st Nordic Gastroenterology Congress, 8-11 June 2010, Copenhagen, Denmark. History of Helicobacter infection. Abstracts from the XL Nordic Meeting of Gastroenterology, June 8-11, 2009, Stavanger, Norway. Abstracts of the 39th Nordic Meeting of Gastroenterology, 30th Nordic Meeting of Digestive Endoscopy, 18th Nordic Meeting of Gastrointestinal Motility, and the Annual Endoscopy/Gastroenterology Nurses'/Assistants' Meeting Post-graduate course, 4-6 June 2008, Helsinki, Finland. Abstracts from the XXXVIII Nordic Meeting of Gastroenterology, XXIX Nordic Meeting of Digestive Endoscopy, XVII Nordic Meeting of Gastrointestinal Motility, 6-9 June 2007, Reykjavik, Iceland.
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