Ischemic Core and Hypoperfusion Volumes Correlate With Infarct Size 24 Hours After Randomization in DEFUSE 3

Vaishnavi Rao1, Søren Christensen1, Amarnath Yennu1

  • 1From the Department of Neurology and Neurological Sciences (V.R., S.C., A.Y., M.M., M.G.L., G.W.A.), Stanford University School of Medicine, CA.

Stroke
|February 8, 2019
PubMed

Insights

Predicting future stroke infarct volume is crucial for treatment. The DEFUSE 3 trial found that combining baseline ischemic core and persistent hypoperfusion volumes accurately predicts 24-hour infarct size after stroke interventions.

Area of Science:

  • Neurology
  • Radiology
  • Medical Imaging

Background:

  • Accurate prediction of infarct volume post-stroke is essential for guiding treatment decisions and prognosis.
  • The DEFUSE 3 trial investigated imaging biomarkers for predicting stroke outcomes.

Purpose of the Study:

  • To evaluate the accuracy of baseline ischemic core and hypoperfusion volumes in predicting 24-hour infarct volume.
  • To assess if the union of baseline ischemic core and persistent hypoperfusion predicts infarct volume after stroke.

Main Methods:

  • Analysis of computed tomography perfusion or MRI perfusion/diffusion-weighted imaging data from DEFUSE 3 patients at baseline and 24 hours.
  • Calculation of ischemic core and Tmax >6s hypoperfusion volumes using RAPID software.
  • Comparison of predicted infarct volumes with actual infarct volumes at 24 hours, stratified by reperfusion status.

Main Results:

  • Strong correlation between baseline ischemic core and infarct volume in patients with >90% reperfusion (r=0.83).
  • Strong correlation between baseline Tmax >6s volume and infarct volume in patients with <10% reperfusion (r=0.77).
  • The union of baseline ischemic core and follow-up hypoperfusion volume strongly correlated with 24-hour infarct volume in all patients (r=0.83).

Conclusions:

  • The combination of irreversibly injured ischemic core and persistently hypoperfused tissue volumes accurately predicts 24-hour infarct volume in stroke patients.
  • Imaging biomarkers from CT perfusion or MRI can reliably predict infarct progression in the DEFUSE 3 trial.

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