Related Experiment Video
Updated: Aug 6, 2026

An Assay to Detect Protection of the Retinal Vasculature from Diabetes-Related Death in Mice
Published on: January 12, 2024
The Stalagmite Sign: A Novel Optical Coherence Tomography-Infrared Biomarker for Peripheral Infectious Retinitis
Andres F Lasave1, Ariel Schlaen2, Daniel N Colombero3
1From the Retina and Vitreous Department (A.F.L.), Clínica Privada de Ojos (CPO), Mar del Plata, Buenos Aires, Argentina.
Purpose:
To define and evaluate the Stalagmite Sign, a multimodal pattern of multifocal, elongated, elevated, hyperreflective preretinal deposits on spectral-domain optical coherence tomography corresponding to discrete nodular paravascular hyporeflective lesions on coregistered near-infrared reflectance imaging, as a diagnostic biomarker for infectious peripheral retinitis in patients with posterior uveitis.
Design:
Multicenter retrospective case series with diagnostic accuracy analysis.
Subjects:
Forty-six eyes (44 patients) with the Stalagmite Sign, evaluated at tertiary uveitis referral centers between January 2024 and December 2025. For diagnostic accuracy analysis, 360 sign-negative comparator eyes were added (148 infectious, 212 noninfectious posterior uveitis), total: 406 eyes.
Methods:
A 2 × 2 contingency table was constructed using confirmed etiology as the reference standard, and diagnostic accuracy metrics were calculated with Wilson score 95% confidence intervals. Clinical features, intraocular polymerase chain reaction (PCR) results, and visual outcomes were assessed.
Main Outcome Measures:
Sensitivity, specificity, positive predictive value, and positive likelihood ratio (LR+) of the Stalagmite Sign for the diagnosis of infectious peripheral retinitis; intraocular PCR positivity rate; deposit resolution following antimicrobial therapy; and best-corrected visual acuity outcomes.
Results:
An infectious etiology was confirmed in 44 (95.7%) of 46 sign-positive eyes: toxoplasmosis (32, 69.6%), herpetic retinitis (7, 15.2%), ocular syphilis (3, 6.5%), and fungal endophthalmitis (2, 4.3%). Peripheral retinitis was identified in 35 (76.1%) eyes; posterior pole retinitis in only 8 (17.4%). Two cases were noninfectious, presenting with deposits following silicone-oil removal, with spontaneous resolution. Specificity was 99.1% (95% CI 96.7%-99.7%), positive predictive value 95.7% (95% CI 85.5%-98.8%), and LR+ 24.5; sensitivity was 22.9% (95% CI 17.5%-29.4%). PCR was positive in all 18 eyes. Deposits resolved within 3 months of antimicrobial therapy. Mean logMAR best-corrected visual acuity improved from 0.64 ± 0.40 to 0.43 ± 0.45 over 9.7 months mean follow-up (Friedman test, P < .001).
Conclusions:
The Stalagmite Sign is a high-specificity OCT-infrared biomarker (99.1%, LR+ 24.5) for infectious peripheral retinitis, whose recognition should prompt comprehensive peripheral retinal evaluation, intraocular PCR, and antimicrobial therapy, while withholding corticosteroid monotherapy to prevent fulminant retinal necrosis. PCR is especially recommended in diagnostically uncertain cases, as a positive result is highly likely in the presence of the Stalagmite Sign.
