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Optimized System for Cerebral Perfusion Monitoring in the Rat Stroke Model of Intraluminal Middle Cerebral Artery Occlusion
Published on: February 17, 2013
Detection and localization of posterior circulation large vessel occlusions using perfusion imaging
Ish A Talati1, Maya Schwartz1, Michael Mlynash2
1Department of Radiology, Stanford University School of Medicine, Stanford, California, USA.
Journal of Neurointerventional Surgery
|July 16, 2026
Summary
Perfusion imaging shows moderate accuracy in detecting posterior circulation large vessel occlusions (PC-LVO), outperforming anterior circulation large vessel occlusions (AC-LVO) detection. This technique aids in stroke diagnosis and localization.
Area of Science:
- Neurology
- Radiology
- Medical Imaging
Background:
- Cerebral perfusion imaging is valuable for anterior circulation stroke, but its utility in posterior circulation large vessel occlusion (PC-LVO) requires further definition.
- Accurate localization of PC-LVO is crucial for timely and effective treatment.
Purpose of the Study:
- To evaluate the diagnostic accuracy and inter-reader reliability of CT and MR perfusion imaging.
- To assess the ability of perfusion imaging to classify occlusions and localize vessels within the posterior circulation.
Main Methods:
- A retrospective multicenter diagnostic accuracy study included 184 patients with stroke, enriched for posterior circulation stroke.
- Four blinded readers classified cases into five categories: no occlusion, AC-LVO, basilar, PCA, or vert/PICA occlusion.
- Classification accuracy was assessed for 3-class (LVO(-), AC-LVO, PC-LVO) and 5-class tasks, with posterior circulation localization accuracy also analyzed.
Main Results:
- Perfusion imaging achieved 88.6% accuracy in classifying LVO(-), AC-LVO, and PC-LVO, with 100% sensitivity for LVO(-) and AC-LVO.
- In the posterior circulation subgroup, localization accuracy was 74.8%, with specific accuracies for basilar (76.6%), PCA (83.3%), and vert/PICA (56.3%) occlusions.
- Inter-reader reliability was high for the 3-class task (κ=0.889) and moderate for posterior localization (κ=0.604).
Conclusions:
- Perfusion imaging demonstrates moderate accuracy for detecting and localizing PC-LVO.
- Its performance in PC-LVO detection is less robust compared to AC-LVO detection.
- CT and MR perfusion imaging offer valuable, albeit imperfect, insights into posterior circulation stroke etiology.
