2021
DOI: 10.1016/j.exer.2021.108756
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In vivo imaging of the inner retinal layer structure in mice after eye-opening using visible-light optical coherence tomography

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Cited by 10 publications
(11 citation statements)
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“…The retinal thickness measured in the healthy euglycemic mice matches a number of previous studies that reported cumulative retinal thickness from the inner limiting membrane to the RPE–photoreceptor complex. 39 , 68 , 69 We observed that the hyperglycemic mice have a thinner total retina than the euglycemic mice at all time points, a finding that supports previous reports. 39 , 59 We did not, however, observe a progressive thinning over the postnatal 4- to 20-week interval examined here, indicating that there does not seem to be a change in thickness despite approximately 16 weeks of hyperglycemia.…”
Section: Scientific Advancessupporting
confidence: 91%
“…The retinal thickness measured in the healthy euglycemic mice matches a number of previous studies that reported cumulative retinal thickness from the inner limiting membrane to the RPE–photoreceptor complex. 39 , 68 , 69 We observed that the hyperglycemic mice have a thinner total retina than the euglycemic mice at all time points, a finding that supports previous reports. 39 , 59 We did not, however, observe a progressive thinning over the postnatal 4- to 20-week interval examined here, indicating that there does not seem to be a change in thickness despite approximately 16 weeks of hyperglycemia.…”
Section: Scientific Advancessupporting
confidence: 91%
“…Numerous animal studies have compared OCT against full-field light microscopy (LM) in the same subjects to assess or validate the ability of OCT to image 20 and measure 21 27 retinal layers. OCT has likewise been validated against confocal microscopy 28 , 29 and electron microscopy. 30 , 31 Yet, vigorous debate about the origins of some bands continues.…”
mentioning
confidence: 99%
“… 16 , 18 , 19 , 32 Most validation studies to date have used near-infrared OCT, with a depth resolution of 3.0 µm or coarser in vivo and as fine as 1.4 µm ex vivo, with LM, 20 26 , 33 , 34 with resolution limited by light diffraction. Previously, in vivo visible-light OCT was validated against confocal microscopy, 29 yet only bands that are commonly visualized by near-infrared OCT were assessed. Although valuable, the limited definition of both the in vivo OCT and ex vivo validation images in these prior studies precluded a comparison of OCT reflectivity against subcellular organization and organelle distributions.…”
mentioning
confidence: 99%
“…In addition, vis-OCT has greater contrast between retinal layers due to the higher backscattering properties of biological tissues in the visible light wavelength range [33]. Taking advantage of this improved resolution and increased contrast sensitivity, we developed vis-OCTF to analyze individual RGC axon bundles in vivo [34][35][36]40]. Thus far, we have demonstrated vis-OCTF in the mouse retina to visualize RGC axon bundles in vivo and validated these structures using confocal microscopy ex vivo [34].…”
Section: Rgc Axon Bundle Morphology As a New In Vivo Biomarker For Rg...mentioning
confidence: 99%
“…As a result, vis-OCT provides unique anatomical and functional imaging capabilities that facilitate RGC damage evaluation [33]. Recently, we developed vis-OCT fibergraphy (vis-OCTF) to visualize and quantify changes in individual RGC axon bundles in mice [34][35][36]. In this study, we applied vis-OCTF to track the changes of axon bundles following the ONC injury by quantifying four parameters: (1) lateral bundle width, (2) axial bundle height, (3) cross-sectional area, and (4) bundle shape.…”
Section: Introductionmentioning
confidence: 99%