Cardio-ankle vascular index and subclinical heart disease

Giuseppe Schillaci1, Francesca Battista1, Laura Settimi2

  • 11] Dipartimento di Medicina, Università di Perugia, Perugia, Italy [2] Struttura Complessa di Medicina Interna, Azienda Ospedaliero-Universitaria di Terni, Terni, Italy.

Insights

Cardio-ankle vascular index (CAVI) better reflects arterial stiffness and left ventricular mass than pulse wave velocity (PWV). High CAVI is linked to increased left ventricular mass and reduced systolic function, independent of blood pressure.

Area of Science:

  • Cardiovascular Medicine
  • Vascular Biology
  • Cardiac Physiology

Background:

  • Arterial stiffness measurements like pulse wave velocity (PWV) are often confounded by blood pressure.
  • Understanding the relationship between arterial stiffness and left ventricular (LV) structure/function is crucial for cardiovascular risk assessment.

Purpose of the Study:

  • To evaluate the relationship between carotid-femoral PWV and cardio-ankle vascular index (CAVI) with LV structure and systolic function.
  • To determine if CAVI, a less pressure-dependent measure of arterial stiffness, offers insights independent of blood pressure.

Main Methods:

  • Carotid-femoral PWV, CAVI, and echocardiographic LV mass and systolic function were measured in 133 subjects with hypertension or high-normal blood pressure.
  • Multivariate regression analysis was used to assess independent associations.

Main Results:

  • Carotid-femoral PWV correlated with blood pressure, while CAVI did not.
  • Both CAVI and PWV correlated with LV mass index.
  • Higher CAVI, but not PWV, was associated with inappropriately high LV mass for cardiac workload.
  • CAVI was independently associated with inappropriate LV mass and negatively with LV midwall fractional shortening.

Conclusions:

  • Cardio-ankle vascular index (CAVI) is associated with inappropriately high left ventricular mass and reduced systolic function.
  • CAVI may reflect arterial stiffening's impact on LV structure and function independently of blood pressure levels.

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