Rhegmatogenous Retinal Detachment Clinical Trial
Official title:
Topographic Changes of Retinal Layers After Resolution of Acute Retinal
Experimental retinal detachment and reattachment models have demonstrated the recovery process of successfully reattached retina. However, optical coherence tomography analysis of each retinal layers following retinal reattachment has not been investigated This study investigated changes in thickness profiles of retinal layers after resolution of recent-onset rhegmatogenous retinal detachment (RRD) using optical coherence tomography images.
Rhegmatogenous retinal detachment is a sight-threatening condition that occurs when the
neurosensory retina separates from the underlying retinal pigment epithelium and fluid
accumulates within this potential space.Surgical reattachment of a detached retina is the
mainstay of treatment.
Experimental retinal detachment and reattachment models have demonstrated the recovery
process of successfully reattached retina, including regrowth and reconfiguration of the
photoreceptor inner and/or outer segments,reorganization of photoreceptor-RPE
interface,increased synaptic terminals in the outer plexiform layer, inhibition of glial
cell proliferation,and recovery of normal distribution of proteins. These microscopic
changes are thought to be the reason for visual function recovery following retinal
reattachment.
Recent development in spectral domain optical coherence tomography, which provides faster
imaging speed and higher resolution, allows more detailed retinal layer evaluation. Previous
studies using spectral domain optical coherence tomography have revealed abnormalities of
retinal microstructure in reattached retina. However, these studies mainly focused on the
photoreceptor layer and/or external limiting membrane, although abnormalities of various
retinal layers have been revealed in previous microscopic studies. In addition, qualitative
rather than quantitative analysis was performed in most of the studies, and most
importantly, all previous studies were observational and comparisons between the affected
and normal control regions were not performed.
The current study involves a series of recent-onset primary rhegmatogenous retinal
detachment that were managed with surgical retinal reattachment. The investigators
quantified the thickness of each retinal layer based on spectral domain optical coherence
tomography images and compared the thicknesses of reattached regions and undetached normal
regions. The primary purpose of this study was to evaluate the changes in thickness profiles
of each retinal layer in reattached retina after acute RRD.
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Observational Model: Case-Only, Time Perspective: Cross-Sectional
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