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Updated: Jun 13, 2026

Optimized System for Cerebral Perfusion Monitoring in the Rat Stroke Model of Intraluminal Middle Cerebral Artery Occlusion
Published on: February 17, 2013
Cerebral perfusion imaging in hemodynamic stroke: be aware of the pattern
R Siemund1, M Cronqvist, G Andsberg
1Department of Radiology, Section for Neuroradiology, Lund University Hospital; Lund, Sweden - roger.siemund@med.lu.se.
Insights
Reduced cerebral perfusion pressure from vessel issues causes neurological symptoms and infarctions. Advanced imaging reveals characteristic perfusion patterns, aiding diagnosis of hemodynamic stroke and identifying stressed autoregulation.
Area of Science:
- Neurology
- Radiology
- Vascular Imaging
Background:
- Cerebral perfusion pressure reduction due to vessel occlusion or stenosis can lead to neurological symptoms and border-zone infarctions.
- Hemodynamic stroke presents with fluctuating and transient neurological deficits.
Purpose of the Study:
- To describe perfusion patterns in hemodynamic stroke.
- To provide a practical approach for assessing color-encoded CT and MR perfusion maps.
- To demonstrate the clinical utility of comprehensive imaging in evaluating hemodynamic stroke.
Main Methods:
- Case series of five patients with varying hemodynamic stroke characteristics.
- Utilized MR/CT angiography, MR/CT perfusion imaging during the symptomatic phase.
- Employed diffusion-weighted imaging (DWI) for all patients.
Main Results:
- All cases exhibited altered perfusion patterns indicative of hemodynamic insufficiency.
- Observed increased cerebral blood volume (CBV) with maintained or slightly reduced cerebral blood flow (CBF).
- Perfusion disturbances were most evident on Mean Transit Time (MTT) maps; all cases showed border-zone infarctions.
Conclusions:
- Hemodynamic insufficiency is characterized by increased CBV, normal/decreased CBF, and prolonged MTT.
- Increased CBV signifies stressed autoregulation.
- Internal border-zone infarctions serve as a marker for hemodynamic insufficiency, and specific DWI patterns warrant further investigation.
Summary:
Reduction of the cerebral perfusion pressure caused by vessel occlusion or stenosis is a cause of neurological symptoms and border-zone infarctions. The aim of this article is to describe perfusion patterns in hemodynamic stroke, to give a practical approach for the assessment of colour encoded CT- and MR-perfusion maps and to demonstrate the clinical use of comprehensive imaging in the workup of patients with hemodynamic stroke. Five patients with different duration cause and degree of hemodynamic stroke were selected. The patients shared the typical presentation with fluctuating and transient symptoms. All were examined by MR or CT angiography and MR or CT perfusion in the symptomatic phase. All patients were examined with diffusion weighted imaging. All five cases showed the altered perfusion patterns of hemodynamic insufficiency with a slight or marked increase in CBV in the supply area of the affected vessel and only slightly reduced or maintained CBF. The perfusion disturbances were most easily detected on the MTT maps. Border-zone infarctions were seen in all cases. The typical pattern for hemodynamic insufficiency is characterized by increased CBV, normal or decreased CBF and prolonged MTT in the affected areas. The increased CBV is the hallmark of stressed autoregulation. Reading the color-encoded perfusion maps enables a quick and robust assessment of the cerebral perfusion and its characteristic patterns. Internal border-zone infarctions can be regarded as a marker for hemodynamic insufficiency. Finding of the typical rosary-like pattern of DWI lesions should call for further work up.
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