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Measuring the Carotid to Femoral Pulse Wave Velocity Cf-PWV to Evaluate Arterial Stiffness
Published on: May 3, 2018
Proximal aortic stiffness modifies the relationship between heart rate and backward wave and hence central arterial
Nonhlanhla Mthembu1, Vernice R Peterson1, Gavin R Norton1
1Cardiovascular Pathophysiology and Genomics Research Unit, School of Physiology, Faculty of Health Sciences, University of the Witwatersrand, Johannesburg, South Africa.
Insights
Lower heart rate (HR) increases central blood pressure. Increased aortic stiffness, particularly characteristic impedance (Zc), amplifies this effect, especially in older adults and those with arterial events.
Area of Science:
- Cardiovascular Physiology
- Arterial Hemodynamics
- Geriatric Cardiology
Background:
- Lower heart rate (HR) is associated with increased central blood pressure (BP) due to enhanced backward wave pressures (Pb).
- The influence of aortic stiffness on the relationship between HR and arterial wave morphology is not fully understood.
Purpose of the Study:
- To investigate how aortic stiffness modifies the relationship between heart rate (HR) and central blood pressure (BP) in different age groups and in individuals with arterial events.
Main Methods:
- Non-invasive measurements of central BP, aortic velocity, and diameter were used.
- The study included community participants (<60 years, ≥60 years) and those with arterial events (stroke, critical limb ischemia).
- Aortic stiffness was assessed using characteristic impedance (Zc) and pulse wave velocity (PWV).
Main Results:
- Older participants (≥60 years) and those with arterial events exhibited increased Zc and PWV compared to younger individuals.
- A steeper inverse relationship between HR and Pb was observed in older adults and those with events.
- An interaction between Zc and HR, but not PWV and HR, was significantly associated with Pb in older adults and those with events, indicating Zc amplifies HR's effect on Pb.
Conclusions:
- Increased proximal aortic stiffness, particularly Zc, exacerbates the adverse effects of lower heart rate on backward wave pressures (Pb) and consequently central blood pressure (BP).
- These findings highlight the critical role of aortic stiffness in modulating the hemodynamic consequences of heart rate variations, especially in vulnerable populations.
Aims:
A lower heart rate (HR) increases central blood pressure through enhanced backward wave pressures (Pb). We aimed to determine whether these relationships are modified by increases in aortic stiffness.
Methods:
Using non-invasive central pressure, aortic velocity and diameter measurements in the outflow tract (echocardiography), we assessed the impact of aortic stiffness on relationships between HR and arterial wave morphology in 603 community participants < 60 years of age, 221 ≥ 60 years, and in 287 participants with arterial events [stroke and critical limb ischemia (CLI)].
Results:
As compared to community participants < 60 years, those ≥ 60 years or with events had increased multivariate adjusted proximal aortic characteristic impedance (Zc) and carotid femoral pulse wave velocity (PWV) (p < 0.05 to < 0.0001). Community participants ≥ 60 years and those with events also had a greater slope of the inverse relationship between HR and Pb (p < 0.001 for comparison). While in community participants < 60 years, no interaction between indexes of aortic stiffness and HR occurred, in those ≥ 60 years (p < 0.02) and in those with arterial events (p = 0.001), beyond aortic root diameter, an interaction between Zc and HR, but not between PWV and HR independently associated with Pb. This translated into stepwise increases in the slope of HR-Pb relationships at incremental tertiles of Zc. Although HR was inversely associated with the systemic reflection coefficient in community participants ≥ 60 years (p < 0.0001), adjustments for the reflection coefficient failed to modify HR-Pb relations.
Conclusion:
Beyond the impact on systemic wave reflection, increases in proximal aortic stiffness enhance the adverse effects of HR on Pb and hence central BP.
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