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Simultaneous PET/MRI Imaging During Mouse Cerebral Hypoxia-ischemia
Published on: September 20, 2015
Diagnostic value of perfusion MRI in classifying stroke
1Department of Neurosurgery, Chikushi Hospital, Fukuoka University, Japan.
Abstract:
Our study was designed to determine whether supplementary information obtained with perfusion MRI can enhance accuracy. We used delayed perfusion, as represented by time to peak map on perfusion MRI, to classify strokes in 39 patients. Strokes were classified as hemodynamic if delayed perfusion extended to a whole territory of the occluded arterial trunk; as embolic if delayed perfusion was absent or restricted to infarcts; as arteriosclerotic if infarcts were small, multiple, and located mainly in the basal ganglias; or as unclassified if the pathophysiology was unclear. We compared these findings with vascular lesions on cerebral angiography, neurological signs, infarction on MRI, ischemia on xenon-enhanced CT (Xe/CT) and collateral pathway development. Delayed perfusion clearly indicated the area of arterial occlusion. Strokes were classified as hemodynamic in 13 patients, embolic in 14 patients, arteriosclerotic in 6 patients and unclassified in 6 patients. Hemodynamic infarcts were seen only in deep white-matter areas such as the centrum semiovale or corona radiata, whereas embolic infarcts were in the cortex, cortex and subjacent white matter, and lenticulo-striatum. Embolic and arteriosclerotic infarcts occurred even in hemo-dynamically compromised hemispheres. Our findings indicate that perfusion MRI, in association with a detailed analysis of T2-weighted MRI of cerebral infarcts in the axial and coronal planes, can accurately classify stroke as hemodynamic, embolic or arteriosclerotic.
Insights
Perfusion MRI, using delayed perfusion maps, accurately classifies strokes. This method helps differentiate hemodynamic, embolic, and arteriosclerotic stroke types for better diagnosis.
Area of Science:
- Neurology
- Radiology
- Medical Imaging
Background:
- Accurate stroke classification is crucial for effective treatment.
- Differentiating stroke etiologies (hemodynamic, embolic, arteriosclerotic) aids in patient management.
- Perfusion MRI offers potential supplementary information for stroke assessment.
Purpose of the Study:
- To evaluate the accuracy of perfusion MRI in classifying stroke types.
- To determine if delayed perfusion information enhances stroke classification.
- To correlate perfusion MRI findings with cerebral angiography and other imaging modalities.
Main Methods:
- Utilized delayed perfusion (time to peak map) from perfusion MRI in 39 patients.
- Classified strokes as hemodynamic, embolic, arteriosclerotic, or unclassified based on perfusion patterns.
- Compared perfusion MRI findings with cerebral angiography, MRI infarcts, and xenon-enhanced CT (Xe/CT).
Main Results:
- Delayed perfusion maps accurately indicated arterial occlusion areas.
- Strokes were classified: 13 hemodynamic, 14 embolic, 6 arteriosclerotic, 6 unclassified.
- Distinct infarct locations were observed for hemodynamic (deep white matter) and embolic (cortex, basal ganglia) strokes.
Conclusions:
- Perfusion MRI, particularly delayed perfusion analysis, accurately classifies stroke etiology.
- Combining perfusion MRI with T2-weighted MRI improves stroke classification accuracy.
- This imaging approach aids in differentiating hemodynamic, embolic, and arteriosclerotic strokes.

