研究目的
To examine the origins and evolution of the plateau, an OCT signature seen in geographic atrophy, and to propose a histologic correlate.
研究成果
Plateaus evolve from drusenoid PEDs, characterized by RPE loss and persistence of BLamD, with Müller cell processes potentially contributing to internal heterogeneity. This provides insights into AMD pathogenesis and suggests future research directions on Müller cell involvement.
研究不足
Small number of eyes (eight eyes of seven patients); absence of direct correlation between in vivo imaging and postmortem histology for the same eyes; variations in OCT B-scan density between patients may affect volume measurement consistency.
1:Experimental Design and Method Selection:
Retrospective observational study using serial eye-tracked spectral-domain optical coherence tomography (SD-OCT) scans and multimodal imaging to track the progression of drusenoid pigment epithelial detachments (PEDs) into plateau signatures in eyes with geographic atrophy (GA). Histologic review of donor eyes with AMD was conducted for correlation.
2:Sample Selection and Data Sources:
Eight eyes of seven patients with GA and plateau signatures were identified from a tertiary retinal practice. Inclusion criteria included at least 3 years of follow-up with consecutive eye-tracked SD-OCT scans every 6 months. Exclusion criteria included macular neovascularization, other retinal pathology, or media opacity. Histology data came from 13 donor eyes with GA.
3:List of Experimental Equipment and Materials:
SD-OCT systems (Spectralis HRA + OCT by Heidelberg Engineering, RTVue XR Avanti by Optovue), fundus cameras (TRC-50IX by Topcon Medical Systems), Fiji/ImageJ software for image analysis, histology equipment (stereomicroscope, digital camera, staining materials).
4:Experimental Procedures and Operational Workflow:
Acquired multimodal imaging (color fundus photography, red-free photography, fundus autofluorescence, near-infrared reflectance, SD-OCT) at each visit. Extracted and aligned serial B-scans using Fiji software. Measured PED volumes using the Cavalieri principle. Reviewed histologic sections stained with toluidine blue and imaged.
5:Data Analysis Methods:
Qualitative analysis of imaging changes over time. Quantitative volume measurements from OCT data. Correlation of imaging findings with histology.
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Digital camera
XC10
Olympus
Used for photodocumentation in histology.
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Spectralis HRA + OCT
Spectralis HRA + OCT
Heidelberg Engineering
Used for SD-OCT imaging, fundus autofluorescence, and near-infrared reflectance scanning laser ophthalmoscopy.
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TRC-50IX fundus camera
TRC-50IX
Topcon Medical Systems
Used for color fundus photography and red-free photography.
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RTVue XR Avanti
RTVue XR Avanti
Optovue
Used for en face OCT and OCT angiography imaging.
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Fiji/ImageJ software
Fiji distribution
Public domain
Used for image analysis, including stacking and aligning OCT images.
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Heidelberg Eye Explorer software
version 6.3.4.0
Heidelberg Engineering
Used for measuring areas in OCT images.
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ReVUe software
Version 2015.1.0.90
Optovue
Used for displaying flow signals on structural SD-OCT images.
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Stereomicroscope
SMZ-U
Nikon
Used for photographing maculas in histology studies.
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Photoshop CS6
CS6
Adobe
Used for image adjustment in histology.
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