In vivo imaging through the entire thickness of human cornea by full-field optical coherence tomography

被引:1
|
作者
Mazlin, Viacheslav [1 ]
Xiao, Peng [1 ]
Dalimier, Eugenie [2 ]
Grieve, Kate [3 ,4 ]
Irsch, Kristina [3 ,4 ,5 ]
Sahel, Jose [3 ,4 ,6 ]
Fink, Mathias [1 ]
Boccara, Claude [1 ,2 ]
机构
[1] PSL Res Univ, ESPCI Paris, Inst Langevin, Paris, France
[2] LLTech SAS, Paris, France
[3] UPMC Sorbonne Univ, Vis Inst, CIC 1423, UMR S 968,INSERM,U968,CNRS,UMR 7210, Paris, France
[4] Quinze Vingts Natl Eye Hosp, Paris, France
[5] Johns Hopkins Univ, Sch Med, Wilmer Eye Inst, Lab Ophthalm Instrument Dev, Baltimore, MD 21205 USA
[6] Univ Pittsburgh, Sch Med, Pittsburgh, PA USA
来源
基金
欧洲研究理事会;
关键词
Optical coherence tomography; Imaging systems; Ophthalmic devices; Human eye imaging; Cornea imaging; In vivo imaging; Cornea; Full-field optical coherence tomography; AXIAL RESOLUTION OCT; ULTRAHIGH-RESOLUTION; CONFOCAL MICROSCOPY; ANTERIOR SEGMENT; HIGH-SPEED; EYE;
D O I
10.1117/12.2288947
中图分类号
R77 [眼科学];
学科分类号
100212 ;
摘要
Despite obvious improvements in visualization of the in vivo cornea through the faster imaging speeds and higher axial resolutions, cellular imaging stays unresolvable task for OCT, as en face viewing with a high lateral resolution is required. The latter is possible with FFOCT, a method that relies on a camera, moderate numerical aperture (NA) objectives and an incoherent light source to provide en face images with a micrometer-level resolution. Recently, we for the first time demonstrated the ability of FFOCT to capture images from the in vivo human cornea1. In the current paper we present an extensive study of appearance of healthy in vivo human corneas under FFOCT examination. En face corneal images with a micrometer-level resolution were obtained from the three healthy subjects. For each subject it was possible to acquire images through the entire corneal depth and visualize the epithelium structures, Bowman's layer, sub-basal nerve plexus (SNP) fibers, anterior, middle and posterior stroma, endothelial cells with nuclei. Dimensions and densities of the structures visible with FFOCT, are in agreement with those seen by other cornea imaging methods. Cellular-level details in the images obtained together with the relatively large field-of-view (FOV) and contactless way of imaging make this device a promising candidate for becoming a new tool in ophthalmological diagnostics.
引用
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页数:7
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