Literature DB >> 28966853

In-vivo imaging of the palisades of Vogt and the limbal crypts with sub-micrometer axial resolution optical coherence tomography.

Kostadinka Bizheva1,2,3, Bingyao Tan1, Benjamin MacLellan1, Zohreh Hosseinaee3, Erik Mason1, Denise Hileeto2, Luigina Sorbara2.   

Abstract

A research-grade OCT system was used to image in-vivo and without contact with the tissue, the cellular structure and microvasculature of the healthy human corneo-scleral limbus. The OCT system provided 0.95 µm axial and 4 µm (2 µm) lateral resolution in biological tissue depending on the magnification of the imaging objective. Cross-sectional OCT images acquired tangentially from the inferior limbus showed reflective, loop-like features that correspond to the fibrous folds of the palisades of Vogt (POV). The high OCT resolution allowed for visualization of individual cells inside the limbal crypts, capillaries extending from the inside of the POV's fibrous folds and connecting to a lateral grid of micro-vessels located in the connective tissue directly below the POV, as well as reflections from individual red blood cells inside the capillaries. Difference in the reflective properties of the POV was observed among subjects of various pigmentation levels of the POV. Morphological features observed in the high resolution OCT images correlated well with histology. The ability to visualize the limbal morphology and microvasculature in-vivo at cellular level can aid the diagnostics and treatment of limbal stem cell dysfunction and dystrophies.

Entities:  

Keywords:  (170.0110) Imaging systems; (170.3880) Medical and biological imaging; (170.3890) Medical optics instrumentation; (170.4500) Optical coherence tomography

Year:  2017        PMID: 28966853      PMCID: PMC5611929          DOI: 10.1364/BOE.8.004141

Source DB:  PubMed          Journal:  Biomed Opt Express        ISSN: 2156-7085            Impact factor:   3.732


  38 in total

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4.  Parallel Fourier domain optical coherence tomography for in vivo measurement of the human eye.

Authors:  Branislav Grajciar; Michael Pircher; Adolf Fercher; Rainer Leitgeb
Journal:  Opt Express       Date:  2005-02-21       Impact factor: 3.894

5.  Age-related changes of human limbus on in vivo confocal microscopy.

Authors:  Tianyu Zheng; Jianjiang Xu
Journal:  Cornea       Date:  2008-08       Impact factor: 2.651

6.  In-vivo retinal imaging with off-axis full-field time-domain optical coherence tomography.

Authors:  Helge Sudkamp; Peter Koch; Hendrik Spahr; Dierck Hillmann; Gesa Franke; Michael Münst; Fred Reinholz; Reginald Birngruber; Gereon Hüttmann
Journal:  Opt Lett       Date:  2016-11-01       Impact factor: 3.776

7.  Numerical focusing methods for full field OCT: a comparison based on a common signal model.

Authors:  Abhishek Kumar; Wolfgang Drexler; Rainer A Leitgeb
Journal:  Opt Express       Date:  2014-06-30       Impact factor: 3.894

8.  [Comparative analysis of the value of information provided by anterior segment optical coherence tomography and confocal laser scanning microscopy for identifying the palisades of Vogt in normal limbus].

Authors:  N P Pashtaev; N A Pozdeeva; A A Voskresenskaya; B V Gagloev; A A Shipunov
Journal:  Vestn Oftalmol       Date:  2017

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Journal:  Trans Am Ophthalmol Soc       Date:  1982

10.  In vivo volumetric imaging of the human corneo-scleral limbus with spectral domain OCT.

Authors:  Kostadinka Bizheva; Natalie Hutchings; Luigina Sorbara; Alireza A Moayed; Trefford Simpson
Journal:  Biomed Opt Express       Date:  2011-06-01       Impact factor: 3.732

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  7 in total

1.  In vivo corneal endothelium imaging using ultrahigh resolution OCT.

Authors:  Xinwen Yao; Kavya Devarajan; René M Werkmeister; Valentin Aranha Dos Santos; Marcus Ang; Anthony Kuo; Damon W K Wong; Jacqueline Chua; Bingyao Tan; Veluchamy Amutha Barathi; Leopold Schmetterer
Journal:  Biomed Opt Express       Date:  2019-10-11       Impact factor: 3.732

2.  Accurate tissue interface segmentation via adversarial pre-segmentation of anterior segment OCT images.

Authors:  Jiahong Ouyang; Tejas Sudharshan Mathai; Kira Lathrop; John Galeotti
Journal:  Biomed Opt Express       Date:  2019-09-20       Impact factor: 3.732

3.  Global Consensus on Definition, Classification, Diagnosis, and Staging of Limbal Stem Cell Deficiency.

Authors:  Sophie X Deng; Vincent Borderie; Clara C Chan; Reza Dana; Francisco C Figueiredo; José A P Gomes; Graziella Pellegrini; Shigeto Shimmura; Friedrich E Kruse
Journal:  Cornea       Date:  2019-03       Impact factor: 2.651

4.  250 kHz, 1.5 µm resolution SD-OCT for in-vivo cellular imaging of the human cornea.

Authors:  Bingyao Tan; Zohreh Hosseinaee; Le Han; Olivera Kralj; Luigina Sorbara; Kostadinka Bizheva
Journal:  Biomed Opt Express       Date:  2018-11-29       Impact factor: 3.732

5.  Histological Patterns of Epithelial Alterations in Keratoconus.

Authors:  Sara Crespo Millas; José Carlos López; Elena García-Lagarto; Estibaliz Obregón; Denise Hileeto; Miguel J Maldonado; J Carlos Pastor
Journal:  J Ophthalmol       Date:  2020-07-30       Impact factor: 1.909

6.  Current and Emerging Therapies for Limbal Stem Cell Deficiency.

Authors:  Abdelrahman M Elhusseiny; Mohammad Soleimani; Taher K Eleiwa; Reem H ElSheikh; Charles R Frank; Morteza Naderan; Ghasem Yazdanpanah; Mark I Rosenblatt; Ali R Djalilian
Journal:  Stem Cells Transl Med       Date:  2022-03-31       Impact factor: 6.940

Review 7.  Recent Advances in Stem Cell Therapy for Limbal Stem Cell Deficiency: A Narrative Review.

Authors:  Ali E Ghareeb; Majlinda Lako; Francisco C Figueiredo
Journal:  Ophthalmol Ther       Date:  2020-09-24
  7 in total

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