Quantitative analysis of systemic perfusion and cerebral blood flow in the modeling of aging and orthostatic hypotension

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Abstract

Introduction: Orthostatic hypotension (OH) is common among the older population. The mechanism hypothesized by OH as a risk factor for cognitive decline and dementia is repeated transient cerebral blood flow deficiency. However, to our knowledge, quantitative evaluation of cardiac output and cerebral blood flow due to acute blood pressure changes resulting from postural changes is rare. Methods: We report a new fluid-structure interaction model to analyze the quantitative relationship of cerebral blood flow during OH episodes. A device was designed to simulate the aging of blood vessels. Results and Discussion: The results showed that OH was associated with decreased transient cerebral blood flow. With the arterial aging, lesions, the reduction in cerebral blood flow is accelerated. These findings suggest that systolic blood pressure regulation is more strongly associated with cerebral blood flow than diastolic blood pressure, and that more severe OH carries a greater risk of dementia. The model containing multiple risk factors could apply to analyze and predict for individual patients. This study could explain the hypothesis that transient cerebral blood flow deficiency in recurrent OH is associated with cognitive decline and dementia.

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Cheng, H., Dai, J., Li, G., Ding, D., Li, J., Zhang, K., … Hou, J. (2024). Quantitative analysis of systemic perfusion and cerebral blood flow in the modeling of aging and orthostatic hypotension. Frontiers in Physiology, 15. https://doi.org/10.3389/fphys.2024.1353768

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