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Comparison of confocal microscopy and two-photon microscopy in mouse cornea in vivo SCIE SCOPUS

Title
Comparison of confocal microscopy and two-photon microscopy in mouse cornea in vivo
Authors
Lee, JHLee, SGHO, YONG SONGSong, ISTchah, HKim, MJKim, KH
Date Issued
2015-03
Publisher
ACADEMIC PRESS LTD- ELSEVIER SCIENCE LTD
Abstract
High-resolution imaging of the cornea is important for studying corneal diseases at cellular levels. Confocal microscopy (CM) has been widely used in the clinic, and two-photon microscopy (TPM) has recently been introduced in various pre-clinical studies. We compared the performance of CM and TPM in normal mouse corneas and neovascularized mouse corneas induced by suturing. Balb/C mice and C57BL/6 mice expressing green fluorescent protein (GFP) were used to compare modalities based on intrinsic contrast and extrinsic fluorescence contrast. CM based on reflection (CMR), CM based on fluorescence (CMF), and TPM based on intrinsic/extrinsic fluorescence and second harmonic generation (SHG) were compared by imaging the same sections of mouse corneas sequentially in vivo. In normal mouse corneas, CMR visualized corneal cell morphologies with some background noise, and CMF visualized GFP expressing corneal cells clearly. TPM visualized corneal cells and collagen in the stroma based on fluorescence and SHG, respectively. However, in neovascularized mouse corneas, CMR could not resolve cells deep inside the cornea due to high background noise from the effects of increased structural irregularity induced by suturing. CMF and TPM visualized cells and induced vasculature better than CMR because both collect signals from fluorescent cells only. Both CMF and TPM had signal decays with depth due to the structural irregularity, with CMF having faster signal decay than TPM. CMR, CMF, and TPM showed different degrees of image degradation in neovascularized mouse corneas. (C) 2015 Elsevier Ltd. All rights reserved.
URI
https://oasis.postech.ac.kr/handle/2014.oak/26898
DOI
10.1016/J.EXER.2015.01.013
ISSN
0014-4835
Article Type
Article
Citation
EXPERIMENTAL EYE RESEARCH, vol. 132, page. 101 - 108, 2015-03
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김기현KIM, KI HEAN
Dept of Mechanical Enginrg
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