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August 1, 2025International Journal for Numerical Methods in Biomedical Engineering

Quantitative Analyses of Cerebral Hemodynamics and Wave Dynamics in Essential Systemic Hypertension: A Multiscale Computational Modeling Study

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Authors

XZX M Zhang

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Overview

Multiscale computational modeling reveals altered hemodynamics in hypertension, emphasizing impacts on cerebrovascular diseases and cognitive health.

Key Points

  • Hypertension leads to increased wave intensity and power in cerebral arteries, affecting hemodynamic stability in patients.
  • Key findings show altered arrival times and magnitudes of forward and back waves due to hypertension-induced changes.
  • The multiscale computational modeling framework provides new insights into cardiovascular responses under varying hypertensive conditions.
  • Understanding these dynamics is crucial for developing effective treatment strategies for hypertension-related complications.

Cite This Study

X M Zhang (2025) studied this question.

synapsesocial.com/papers/68af31e8cf1dd9ea359e7ec5https://doi.org/10.1002/cnm.70082
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