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Updated: May 6, 2026

In vivo Structural Assessments of Ocular Disease in Rodent Models using Optical Coherence Tomography
Published on: July 24, 2020
SUB-INTERNAL LIMITING MEMBRANE FOVEAL HEMORRHAGE UNDER TENSION: Optical Coherence Tomography Biomarkers Predicting
Shoto Miyamoto1,2, Hisashi Fukuyama1, Takashi Araki1,3
1Department of Ophthalmology, Hyogo Medical University, Hyogo, Nishinomiya, Japan.
Purpose:
To identify preoperative clinical characteristics of macular hole (MH) formation after vitrectomy for submacular hemorrhage because of ruptured retinal arterial macroaneurysm.
Methods:
The authors retrospectively analyzed eyes with submacular hemorrhage because of a ruptured retinal arterial macroaneurysm in patients who underwent vitrectomy and had more than 1 month of follow-up. Background factors and imaging findings were compared between groups classified by MH presence. The primary outcomes were best-corrected visual acuity, and fundus and optical coherence tomography findings.
Results:
Submacular hemorrhage because of a retinal arterial macroaneurysm rupture was identified in 48 eyes. Macular holes were identified in 8 eyes (16.3%): four intraoperatively and four postoperatively. Preoperative optical coherence tomography findings revealed that all MH cases exhibited the highest retinal thickness at the foveal lesion with sub-internal limiting membrane hemorrhage preoperatively. This finding was termed the "foveal mountain peak" sign, characterized by sub-internal limiting membrane hemorrhage where the peak of the retinal thickness coincides with the fovea. The incidence of foveal mountain peak sign (+) cases was significantly higher in the MH (+) group compared with the MH (-) group (100% vs. 47.5%, respectively; P = 0.006).
Conclusion:
The presence of the foveal mountain peak sign may indicate an increased risk of submacular hemorrhage-associated MH.
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