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Assessment of Cerebral Vasodilatory Capacity as Part of Catheter-Based Cerebral Angiography
Adnan I Qureshi1,2, Ahmer Asif1, Muhammad A Waqas1
1Zeenat Qureshi Stroke Institute, St. Cloud, MN and Mercyhealth Rockford Hospital, Rockford, IL.
Insights
Assessing cerebral vasodilatory capacity using a new angiography method helps stratify stroke risk in patients with arterial stenosis. This technique shows a selective vasodilatory response, offering valuable new data for patient management.
Area of Science:
- Neurology
- Vascular Medicine
- Radiology
Background:
- Extracranial arterial stenosis poses a risk for stroke.
- Assessing cerebral vasodilatory capacity is crucial for risk stratification.
- Current methods may not fully capture cerebrovascular reserve.
Purpose of the Study:
- To introduce and evaluate a novel method for assessing cerebral vasodilatory capacity.
- To determine the utility of this method in patients with extracranial arterial stenosis or occlusion.
- To correlate vasodilatory response with arterial stenosis severity.
Main Methods:
- A prospective study involving 25 patients with carotid or vertebral artery stenosis.
- Utilized catheter-based cerebral angiography to assess regional cerebral blood volume (rCBV).
- Measured rCBV before and after intra-arterial nicardipine administration to assess vasodilatory capacity.
Main Results:
- 18 out of 25 patients demonstrated an increase in rCBV after nicardipine administration.
- The mean rCBV change score was 11.98, indicating a vasodilatory response.
- No significant difference in rCBV change was observed between internal carotid and vertebral artery assessments.
Conclusions:
- Selective vasodilatory response during angiography provides new data for risk stratification.
- This novel method may enhance the management of patients with extracranial arterial stenosis.
- Cerebral vasodilatory capacity assessment is a valuable tool in cerebrovascular disease evaluation.
Background And Purpose:
Cerebral vasodilatory capacity assessment for risk stratification in patients with extracranial arterial stenosis or occlusion may be useful. We describe a new method that assesses cerebral vasodilatory capacity as part of catheter-based cerebral angiography.
Methods:
We prospectively assessed regional cerebral blood volume (rCBV) in the arterial distribution of interest using a controlled contrast injection in the common carotid or the subclavian arteries. rCBV maps were created using a predefined algorithm based on contrast distribution in the venous phase (voxel size: .466 mm3 ). rCBV maps were acquired again after selective administration of intra-arterial nicardipine (2.0 mg) distal to the stenosis. Two independent observers graded the change in rCBV in 10 predefined anatomical regions within the tributaries of the artery of interest (0 = reduction, 1 = no change, 2 = increase) and total rCBV change scores were summated.
Results:
Twenty-five patients with internal carotid artery stenosis (n = 18; 0-90% in severity) or extracranial vertebral artery stenosis (n = 7; 0-100% in severity) were assessed. There was an increase in rCBV in a tributary of the artery of interest in 18 of 25 after intra-arterial nicardipine (mean score: 11.98; range 0-19.5). There was no change or decrease in rCBV in 7 of 25 patients. The mean rCBV change score was similar in patients with an assessment of internal carotid artery or vertebral artery distributions (12.2 ± 5.3; 11.4 ± 2.5; P = .68).
Conclusion:
Selective vasodilatory response to intra-arterial nicardipine in the affected arterial distribution during catheter-based cerebral angiography may provide new data for risk stratification.
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