Benoit a la Guillaume Emilie, Martins Franck, Boccara Claude, Harms Fabrice
LLTech, Pépinière Paris Santé Cochin, 29 rue du Faubourg Saint-Jacques, 75014 Paris, France.
LLTech, Pépinière Paris Santé Cochin, 29 rue du Faubourg Saint-Jacques, 75014 Paris, FrancebESPCI ParisTech, PSL Research University, UMR 7587 CNRS, U979 INSERM, Institut Langevin, 1 rue Jussieu, 75005 Paris, France.
J Biomed Opt. 2016 Feb;21(2):26005. doi: 10.1117/1.JBO.21.2.026005.
Full-field optical coherence tomography (FF-OCT) is a powerful tool for nondestructive assessment of biological tissue, i.e., for the structural examination of tissue in depth at a cellular resolution. Mostly known as a microscopy device for ex vivo analysis, FF-OCT has also been adapted to endoscopy setups since it shows good potential for in situ cancer diagnosis and biopsy guidance. Nevertheless, all the attempts to perform endoscopic FF-OCT imaging did not go beyond lab setups. We describe here, to the best of our knowledge, the first handheld FF-OCT endoscope based on a tandem interferometry assembly using incoherent illumination. A common-path passive imaging interferometer at the tip of an optical probe makes it robust and insensitive to environmental perturbations, and a low finesse Fabry-Perot processing interferometer guarantees a compact system. A good resolution (2.7 μm transverse and 6 μm axial) is maintained through the long distance, small diameter relay optics of the probe, and a good signal-to-noise ratio is achieved in a limited 100 ms acquisition time. High-resolution images and a movie of a rat brain slice have been recorded by moving the contact endoscope over the surface of the sample, allowing for tissue microscopic exploration at 20 m under the surface. These promising ex vivo results open new perspectives for in vivo imaging of biological tissue, in particular, in the field of cancer and surgical margin assessment.
全场光学相干断层扫描(FF - OCT)是一种用于生物组织无损评估的强大工具,即用于以细胞分辨率对组织进行深度结构检查。FF - OCT大多作为一种用于离体分析的显微镜设备为人所知,由于其在原位癌症诊断和活检引导方面显示出良好潜力,它也已被应用于内窥镜检查设置中。然而,所有进行内窥镜FF - OCT成像的尝试都未超出实验室设置。据我们所知,我们在此描述了第一台基于使用非相干照明的串联干涉测量组件的手持式FF - OCT内窥镜。光学探头尖端的共路被动成像干涉仪使其坚固且对环境干扰不敏感,低精细度法布里 - 珀罗处理干涉仪保证了系统的紧凑性。通过探头的长距离、小直径中继光学系统保持了良好的分辨率(横向2.7μm,轴向6μm),并且在有限的100毫秒采集时间内实现了良好的信噪比。通过将接触式内窥镜在样品表面移动,记录了大鼠脑切片的高分辨率图像和视频,从而能够对样品表面以下20μm处的组织进行微观探索。这些有前景的离体结果为生物组织的体内成像,特别是在癌症和手术切缘评估领域,开辟了新的前景。