Department of Biomedical Engineering, Texas A&M University, 3120 TAMU, College Station, TX 77843, USA.
Ann Biomed Eng. 2012 Feb;40(2):378-97. doi: 10.1007/s10439-011-0426-y. Epub 2011 Oct 13.
Advances in fiber optic technology and miniaturized optics and mechanics have propelled confocal endomicroscopy into the clinical realm. This high resolution, non-invasive imaging technology provides the ability to microscopically evaluate cellular and sub-cellular features in tissue in vivo by optical sectioning. Because many cancers originate in epithelial tissues accessible by endoscopes, confocal endomicroscopy has been explored to detect regions of possible neoplasia at an earlier stage by imaging morphological features in vivo that are significant in histopathologic evaluation. This technique allows real-time assessment of tissue which may improve diagnostic yield by guiding biopsy. Research and development continues to reduce the overall size of the imaging probe, increase the image acquisition speed, and improve resolution and field of view of confocal endomicroscopes. Technical advances will continue to enable application to less accessible organs and more complex systems in the body. Lateral and axial resolutions down to 0.5 and 3 μm, respectively, field of view as large as 800 × 450 μm, and objective lens and total probe outer diameters down to 0.35 and 1.25 mm, respectively, have been achieved. We provide a review of the historical developments of confocal imaging in vivo, the evolution of endomicroscope instrumentation, and the medical applications of confocal endomicroscopy.
光纤技术和微型光学及机械的进步推动了共聚焦内窥技术进入临床领域。这种高分辨率、非侵入式的成像技术通过光学切片提供了在体微观评估组织中细胞和亚细胞特征的能力。由于许多癌症起源于可通过内窥镜进入的上皮组织,因此人们探索共聚焦内窥技术通过对组织进行体内成像来检测可能的早期肿瘤区域,这些成像特征在组织病理学评估中具有重要意义。该技术允许实时评估组织,通过引导活检提高诊断效果。研究和开发工作仍在继续,以减小成像探头的整体尺寸,提高图像采集速度,并提高共聚焦内窥技术的分辨率和视野。技术进步将继续实现对更难以接近的器官和更复杂的体内系统的应用。共聚焦内窥技术已经实现了侧向和轴向分辨率分别达到 0.5 和 3 μm、视野最大达到 800×450 μm、物镜和总探头外径分别达到 0.35 和 1.25 mm。我们回顾了体内共聚焦成像的历史发展、内窥仪器的演变以及共聚焦内窥技术的医学应用。