Related Experiment Video
Updated: Aug 23, 2026

Measuring Ascending Aortic Stiffness In Vivo in Mice Using Ultrasound
Published on: December 2, 2014
Arterial stiffness and the systolic hypertension syndrome
1Department of Medicine, State University of New York at Buffalo, Buffalo, New York, USA. Jlzzo@acsu.buffalo.edu
Insights
Systolic hypertension involves complex hemodynamic issues, primarily increased central arterial stiffness. Understanding these factors is key to improving patient management and cardiovascular risk assessment.
Area of Science:
- Cardiovascular Physiology
- Hypertension Pathophysiology
- Arterial Mechanics
Background:
- Systolic hypertension, characterized by wide pulse pressure, is incompletely understood.
- Its hallmark is increased central arterial stiffness, a key factor in hemodynamic maladaptations.
Purpose of the Study:
- To provide a comprehensive hemodynamic overview of systolic hypertension.
- To highlight the role of increased central arterial stiffness in this condition.
Main Methods:
- Review of existing literature on systolic hypertension pathogenesis.
- Analysis of hemodynamic parameters and arterial mechanics.
Main Results:
- Systolic hypertension involves a complex interplay of stiff central arteries, variable peripheral artery function, arteriolar constriction, and microcirculatory changes.
- Standard blood pressure measurements are insufficient; advanced arterial mechanics parameters are limited and pressure-dependent.
- Quantifying central arterial stiffness offers a modest improvement in cardiovascular and renal risk stratification.
Conclusions:
- Improved clinical management requires deeper insight into the syndrome's overall pathophysiology.
- Critical evaluation of current measurement techniques and development of novel approaches are necessary.
Purpose Of Review:
This review is intended to provide the background for a new comprehensive hemodynamic view of the syndrome of systolic or wide pulse pressure hypertension and its hallmark abnormality: increased central arterial stiffness.
Recent Findings:
Studies of the pathogenesis of systolic hypertension have lagged. This review describes the systolic hypertension syndrome as a complex set of hemodynamic maladaptations that include stiff central arteries, normal peripheral arteries with variable pressure amplification characteristics, arteriolar constriction, microcirculatory rarefaction, metabolic abnormalities, cardiac hypertrophy, and increased blood pressure variability. Because the structural and functional properties of arteries of different caliber are highly heterogeneous and vary with aging and disease, simple measurements such as standard brachial artery blood pressure, brachial pulse pressure, or mean arterial pressure are inadequate to provide meaningful insight into the pathophysiology of the syndrome. Additional parameters developed to describe changes in arterial mechanics (arterial compliance or stiffness, elastic modulus, impedance, pulse wave velocity, augmentation index, and pulse pressure amplification) are intrinsically limited and are directly or indirectly pressure-dependent. Quantitation of central arterial stiffness provides a modest increment in cardiovascular and renal risk stratification.
Summary:
Better clinical management of systolic hypertension depends on greater insight into the syndrome as a whole, more critical analysis of existing techniques, and the development of new approaches.
Related Concept Videos
Assessment of blood pressure in brachial artery(two-step method)
Hypertension and Regulation of Blood Pressure
Hypertension I: Introduction
Hypertension II: Pathophysiology
Hypertension III: Clinical Manifestations and Diagnostic Studies
Peripheral Arterial Disease II: Clinical Manifestations and Diagnostic Evaluation

