Eun Ji Lee
Seoul National University · Medicine
About the Lab
Professor Eun Ji Lee's research lab specializes in the application of advanced imaging technologies, particularly optical coherence tomography angiography (OCTA), to investigate microvascular and structural changes in the posterior segment of the eye in primary open-angle glaucoma (POAG). The lab focuses on understanding the microvascular dropout in the parapapillary deep layer and its correlation with retinal nerve fiber layer (RNFL) atrophy and optic nerve head changes. By combining high-resolution OCT and OCTA imaging, the lab explores the pathophysiological mechanisms linking microvascular damage, lamina cribrosa alterations, and glaucomatous neurodegeneration.
Research Overview
Research Output Trend
Figures are computed from collected data and may differ slightly.
Selected Papers
15Decreased parapapillary microvasculature of the retina determined by OCTA was found at the location of RNFL defect in POAG patients. This finding suggests that the decreased retinal microvasculature is likely secondary loss or closure of capillaries at the area of glaucomatous RNFL atrophy.
MvD was identified in the parapapillary deep layer exclusively in POAG eyes at the location of glaucomatous damage using optical coherence tomography angiography. The finding suggests that peripapillary deep-layer circulation is directly related to the glaucomatous optic neuropathy.
Microvasculature dropout enlargement was associated with progressive RNFL thinning in POAG.
The peripheral LC exhibited a recent alteration in eyes with DH. The alteration was correlated spatially with the location of the DH. These findings suggest that DH may result from microvascular damage incurred from alteration of the LC near its insertion.
Within the limits of retest variability, Stratus OCT detects progressive RNFL atrophy with high sensitivity and moderate specificity in cases showing localized progressive loss of retinal nerve fibers in red-free photographs. The specificity can be improved by use of multiple measurements. Stratus OCT is a potentially useful technique for detection of glaucoma progression.
The present study investigated 22 cases of peripapillary retinoschisis in glaucomatous eyes. The retinoschisis was attached to the optic nerve and topographically correlated with RNFL defect. It often resolved spontaneously without causing severe visual disturbance. Care should be taken not to overestimate the RNFL thickness in eyes with retinoschisis, and also not to misinterpret the resolution of retinoschisis as a rapid glaucomatous RNFL deterioration.
Purpose: To characterize the microstructure underlying the parapapillary deep-layer microvasculature dropout (MvD) identified by optical coherence tomography (OCT) angiography (OCTA) in eyes with primary open-angle glaucoma (POAG). Methods: Parapapillary MvD was defined as a focal sectoral capillary dropout without any visible microvascular network identified in deep-layer en face images obtained using swept-source OCTA. The peripapillary microstructure was characterized in 188 POAG patients wit
The rate of OCT RNFL thinning was significantly greater in patients with progressive localized RNFL defects than in those with stable localized defects. The data suggest that trend-based analysis of OCT RNFL thickness may be useful in glaucoma progression analysis and may complement other diagnostic tests.
Research Areas
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