Beat-to-beat variability of aortic pulse wave velocity: implications for aortic stiffness measurements

Alessandro Giudici1,2, Andrea Grillo3, Filippo Scalise4

  • 1Department of Biomedical Engineering, Cardiovascular Research Institute Maastricht (CARIM).

Journal of Hypertension
|December 3, 2024
PubMed

Insights

Beat-to-beat variability in aortic pulse wave velocity (aPWV) is manageable. Averaging at least ten heartbeats reduces variability, ensuring reliable aPWV measurements for cardiovascular risk assessment.

Area of Science:

  • Cardiovascular Physiology
  • Biomedical Engineering
  • Clinical Measurement

Background:

  • Aortic pulse wave velocity (aPWV) is a key predictor of cardiovascular risk and a standard for evaluating aortic stiffness.
  • Invasive aPWV measurement is the reference standard for validating noninvasive devices.
  • Beat-to-beat variability in aPWV arises from hemodynamic fluctuations and data processing challenges.

Purpose of the Study:

  • To quantify the beat-to-beat variability of invasive aPWV.
  • To assess the impact of different acquisition protocols and data processing methods on aPWV variability.
  • To determine the implications of this variability for using aPWV in clinical studies and device validation.

Main Methods:

  • Invasive pressure data were collected from 84 patients using simultaneous ascending aorta and iliac catheter acquisitions.
  • Sequential acquisition protocols were compared to simultaneous ones to evaluate variability.
  • Three distinct pressure waveform foot identification methods were analyzed to assess processing effects.
  • The impact of averaging consecutive heartbeats on aPWV variability was estimated.

Main Results:

  • Simultaneously acquired invasive aPWV exhibited a 5% beat-to-beat standard deviation (SD).
  • Sequential acquisition protocols increased aPWV variability compared to simultaneous acquisition.
  • Averaging 10 consecutive heartbeats significantly reduced variability, yielding comparable results (2-3% SD) for both acquisition methods.

Conclusions:

  • The intrinsic beat-to-beat variability of aPWV is clinically manageable.
  • Averaging aPWV measurements over at least ten heartbeats ensures reliable and consistent results.
  • This finding supports the robust use of aPWV in both clinical applications and device validation studies.
Abstract

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