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Arterial and venous flow dynamics are modified by age in the non-human primate
Germain Arribarat1,2, Muriel Mescam1, Franck Desmoulin2
1Univ Toulouse, CNRS, CerCo, Toulouse, France.
Abstract:
Growing evidence suggests that vascular abnormalities contribute to neurodegenerative processes during ageing. With the anticipated rise in the elderly population, we aimed to characterise arterial and venous flow dynamics, which reflect cardio-cerebro-vascular conditions, using a preclinical model: the marmoset monkey. We employed MRI protocols to image brain and intracranial vessel anatomy. We adapted the phase-contrast MRI protocol to measure blood dynamics synchronised with the ECG signal in the carotid arteries, basilar trunk, superior sagittal, and straight sinuses. We imaged both young and old healthy marmosets. Our analysis revealed a similar chronological sequence of maximal blood flow values in the various arteries and sinuses for both young and old marmosets; however, the peaks occurred earlier in the cardiac cycle for the older group. Furthermore, we observed shorter arterio-venous delays in older marmosets, suggesting ageing-related cardiovascular and cerebrovascular changes. We analysed the temporal progression of arterial and venous blood volumes within the cranial system at the cardiac cycle scale, providing valuable insights into the constraints on the craniospinal system. An illustration of the relationships between input flow and output flow revealed a characteristic hysteresis effect, indicating an age-dependent behaviour of the venous system.
Insights
Older marmosets show altered blood flow dynamics in arteries and veins, indicating age-related cardiovascular and cerebrovascular changes. These findings highlight the impact of aging on the cardio-cerebro-vascular system.
Area of Science:
- Neuroscience
- Cardiovascular Science
- Medical Imaging
Background:
- Vascular abnormalities are increasingly linked to neurodegeneration in aging.
- Understanding cardio-cerebro-vascular health is crucial due to the growing elderly population.
Purpose of the Study:
- To characterize arterial and venous flow dynamics in aging using a marmoset model.
- To investigate age-related changes in cardio-cerebro-vascular conditions.
Main Methods:
- Utilized Magnetic Resonance Imaging (MRI) protocols to image brain and intracranial vessels.
- Adapted phase-contrast MRI to measure blood dynamics synchronized with ECG in major arteries and sinuses.
- Compared blood flow dynamics between young and old healthy marmosets.
Main Results:
- Older marmosets exhibited earlier peak blood flow in the cardiac cycle compared to younger ones.
- Shorter arterio-venous delays were observed in older marmosets.
- Age-dependent hysteresis in the venous system's response to input flow was identified.
Conclusions:
- Aging impacts cardiovascular and cerebrovascular dynamics, evidenced by altered blood flow timing and delays.
- The study provides insights into the craniospinal system's constraints and age-dependent venous behavior.
- Marmosets serve as a valuable preclinical model for studying aging-related vascular changes in the brain.
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