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Measuring Post-Stroke Cerebral Edema, Infarct Zone and Blood-Brain Barrier Breakdown in a Single Set of Rodent Brain Samples
Published on: October 23, 2020
Cerebral hemodynamics and stroke risks in symptomatic intracranial atherosclerotic stenosis with internal versus
Shuang Li1, Xuan Tian1, Bonaventure Ip1
1Department of Medicine & Therapeutics, the Chinese University of Hong Kong, Hong Kong SAR, China.
Insights
Internal and cortical borderzone infarcts in middle cerebral artery stenosis have different causes. Low pressure ratio indicates impaired flow in internal borderzone infarcts, while cortical infarcts suggest embolism. Internal borderzone infarcts have a higher short-term stroke recurrence risk.
Area of Science:
- Neurology
- Vascular Neurology
- Neuroimaging
Background:
- Intracranial atherosclerotic stenosis, particularly of the middle cerebral artery (MCA), can lead to borderzone infarcts.
- Borderzone infarcts are classified as internal (IBZ) or cortical (CBZ), potentially arising from different pathophysiological mechanisms.
Purpose of the Study:
- To investigate the distinct mechanisms underlying internal borderzone infarcts (IBZ) and cortical borderzone infarcts (CBZ) in patients with middle cerebral artery (MCA) atherosclerotic stenosis.
- To correlate infarct patterns with hemodynamic factors and assess subsequent stroke risk.
Main Methods:
- Eighty-four patients with symptomatic 50-99% MCA-M1 atherosclerotic stenosis and acute borderzone infarcts were analyzed.
- Infarct patterns (isolated IBZ, isolated CBZ, IBZ+CBZ) were classified using diffusion-weighted imaging.
- CT angiography and computational fluid dynamics (CFD) models quantified the pressure ratio (PR) across the MCA stenosis.
Main Results:
- Patients with IBZ infarcts were more likely to have a low PR, indicating impaired antegrade flow (p=0.012).
- Patients with CBZ infarcts were more likely to have coexisting small cortical infarcts, suggesting embolism (p=0.004).
- Low PR was independently associated with isolated IBZ infarcts (aOR=4.223; p=0.026).
- Isolated IBZ infarcts showed a higher risk of same-territory ischemic stroke recurrence within 3 months compared to isolated CBZ infarcts (17.9% vs 0.0%; p=0.023).
Conclusions:
- Internal and cortical borderzone infarcts in MCA stenosis likely result from different mechanisms: impaired flow for IBZ and embolism for CBZ.
- Hemodynamic assessment using PR may help differentiate infarct mechanisms.
- Patients with isolated IBZ infarcts face a higher short-term risk of recurrent stroke compared to those with isolated CBZ infarcts.
Abstract:
There may be different mechanisms underlying internal (IBZ) and cortical (CBZ) borderzone infarcts in intracranial atherosclerotic stenosis. In 84 patients with symptomatic, 50-99% atherosclerotic stenosis of M1 middle cerebral artery (MCA-M1) with acute borderzone infarcts in diffusion-weighted imaging, we classified the infarct patterns as isolated IBZ (n = 37), isolated CBZ (n = 31), and IBZ+CBZ (n = 16) infarcts. CT angiography-based computational fluid dynamics models were constructed to quantify translesional, post-stenotic to pre-stenotic pressure ratio (PR) in the MCA-M1 lesion. Those with IBZ infarcts were more likely to have a low PR (indicating impaired antegrade flow across the lesion) than those without (p = 0.012), and those with CBZ infarcts were more likely to have coexisting small cortical infarcts (indicating possible embolism) than those without (p = 0.004). In those with isolated IBZ or CBZ infarcts, low PR was independently associated with isolated IBZ infarcts (adjusted odds ratio = 4.223; p = 0.026). These two groups may also have different trajectories in the stroke risks under current medical treatment regimen, with a higher risk of same-territory ischemic stroke recurrence within 3 months in patients with isolated IBZ infarcts than isolated CBZ infarcts (17.9% versus 0.0%; log-rank p = 0.023), but similar risks later in 1 year.
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