Pressure-Corrected Carotid Stiffness and Young's Modulus: Evaluation in an Outpatient Clinic Setting

Myrthe van der Bruggen1, Bart Spronck1,2,3, Siske Bos1

  • 1Department of Biomedical Engineering, CARIM School for Cardiovascular Diseases, Maastricht University Medical Centre (MUMC+), Maastricht, The Netherlands.

Insights

New carotid stiffness measures are pressure-independent, ideal for individual patient risk assessment. These novel metrics avoid statistical correction, unlike conventional methods that are affected by blood pressure changes.

Area of Science:

  • Cardiovascular physiology
  • Biomedical engineering
  • Arterial biomechanics

Background:

  • Conventional arterial stiffness assessments are pressure-dependent, limiting individual patient evaluation.
  • Statistical pressure adjustment in populations cannot differentiate acute pressure effects from long-term hypertension-induced arterial remodeling.
  • Existing methods struggle to isolate intrinsic arterial properties from blood pressure influences.

Purpose of the Study:

  • To derive and validate theoretically pressure-independent carotid stiffness measures for individual patient assessment.
  • To introduce novel metrics: stiffness index β0, pressure-corrected carotid pulse wave velocity (cPWVcorr), and pressure-corrected Young's modulus (Ecorr).
  • To evaluate the performance of these new measures against conventional stiffness indices in a longitudinal study.

Main Methods:

  • Development of three pressure-independent carotid stiffness measures based on a single-exponential pressure-diameter relationship.
  • Utilized linear regression analysis in the CATOD study cohort to assess changes in mean arterial pressure (ΔMAP) and stiffness measures over time.
  • Compared changes in novel measures (Δβ0, ΔcPWVcorr, ΔEcorr) with conventional measures (ΔcPWV, ΔE).

Main Results:

  • No significant association was found between changes in mean arterial pressure (ΔMAP) and the novel pressure-independent stiffness measures (Δβ0, ΔcPWVcorr, ΔEcorr).
  • A significant association was observed between ΔMAP and conventional stiffness measures (ΔcPWV, ΔE).
  • These associations remained consistent after adjustments for biomechanical confounders and traditional risk factors.

Conclusions:

  • The newly developed pressure-independent carotid stiffness measures (β0, cPWVcorr, Ecorr) eliminate the need for statistical pressure correction.
  • These novel metrics are suitable for clinical application in patient-specific risk stratification.
  • They enable the investigation of blood pressure's remodeling effects on intrinsic arterial stiffness, distinguishing it from acute pressure dependency.
Abstract

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