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February 26, 2026Graefe s Archive for Clinical and Experimental Ophthalmology0 citationsOpen Access

Retinal ischemia after cardiovascular interventions: Neuroimaging correlates and timing phenotypes in a consecutive series

OGOr GilAHAvner HostovskyNNNehru Nagar

Key Points

  • This research aims to map and analyze retinal ischemic events following cardiovascular procedures and their relationship with cerebral ischemia.
  • Retrospective review of OCT-confirmed retinal ischemia
  • Included patients undergoing cardiovascular interventions within 30 days of symptom onset
  • Analyzed neuroimaging results and clinical features of symptoms
  • 13 patients diagnosed with retinal ischemic events
  • Most common issue was branch retinal artery occlusion (69.2%)
  • 70% of patients showed signs of cerebral ischemia on neuroimaging
  • Symptom onset varied from immediately post-procedure to 28 days later

Abstract

To characterize symptomatic retinal ischemic events following cardiovascular procedures and evaluate their clinical features and association with cerebral ischemia. We conducted a retrospective review of OCT-confirmed acute retinal ischemia at a tertiary center (2015–2024), including patients who had undergone a cardiovascular procedure within 30 days preceding symptom onset. Thirteen patients (mean age 67±8.5 years, 84.6% male) developed retinal ischemic events following cardiac catheterization (n=4), valve replacement (n=3), carotid interventions (n=3), and other procedures (n=3). All had cardiovascular risk factors; 85% were on antithrombotic therapy. Branch retinal artery occlusion was most common (69.2%), followed by paracentral acute middle maculopathy (23.1%) and central retinal artery occlusion (7.7%). Symptom onset ranged from immediately post-procedure to 28 days, with varying clinical characteristics across different timeframes. Neuroimaging revealed cerebral ischemia in 7 of 10 patients (70%). Retinal ischemic events following cardiovascular procedures presented across a spectrum of timing, with varying clinical features that may suggest different pathophysiological mechanisms such as procedural embolization, perioperative hypoperfusion, or delayed complications from evolving embolic sources.The high rate of concurrent cerebral ischemia supports prompt brain imaging. These events, regardless of timing, should prompt comprehensive neurological and cardiological evaluation, as they may indicate systemic or evolving cardioembolic disease even in patients on antithrombotic therapy.

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Cite This Study

Gil et al. (2026) studied this question.

synapsesocial.com/papers/699fe38b95ddcd3a253e7824https://doi.org/10.1007/s00417-026-07143-1
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