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Updated: May 30, 2026

Pulse Wave Velocity Testing in the Baltimore Longitudinal Study of Aging
Published on: February 7, 2014
Measurement of pulse wave velocity in children and young adults: a comparative study using three different devices
Eva Kis1, Orsolya Cseprekál, Andrea Kerti
1First Department of Pediatrics, Semmelweis University, Budapest, Hungary.
Insights
Pulse wave velocity (PWV) measurement in children using oscillometry (Vicorder) and applanation tonometry (PulsePen, Sphygmocor) showed comparable results after path length correction. This allows for better assessment of pediatric cardiovascular disease risk.
Area of Science:
- Cardiovascular Research
- Pediatric Cardiology
- Biomedical Engineering
Background:
- Accurate pulse wave velocity (PWV) measurement is crucial for assessing pediatric cardiovascular disease risk.
- Various devices exist, necessitating validation for pediatric use.
- Comparability of oscillometry (Vicorder) and applanation tonometry (PulsePen, Sphygmocor) in children requires investigation.
Purpose of the Study:
- To compare PWV measurements between oscillometry (Vicorder) and applanation tonometry (PulsePen, Sphygmocor) in pediatric populations.
- To evaluate the accuracy and concordance of these devices for pediatric cardiovascular assessment.
- To determine if path length correction improves comparability.
Main Methods:
- Prospective study involving 98 children and young adults.
- Simultaneous PWV measurements using Vicorder, PulsePen, and Sphygmocor under standardized conditions.
- Statistical analysis including correlation and Bland-Altman analysis, with and without path length correction for Vicorder.
Main Results:
- Mean PWV by Vicorder was initially lower than PulsePen and Sphygmocor.
- After path length correction, Vicorder showed comparable PWV values to PulsePen and Sphygmocor (approx. 6.0 m/s).
- High correlations and excellent concordance were observed, but Vicorder exhibited a proportional error at higher PWV values.
Conclusions:
- Vicorder, when path length corrected, provides comparable PWV results to gold-standard applanation tonometry in children and young adults.
- These findings enable better extrapolation of PWV data for pediatric cardiovascular risk assessment.
- Further technical development of Vicorder is recommended to address the observed proportional error.
Abstract:
To estimate the value of pulse wave velocity (PWV) in pediatric cardiovascular disease, prospective studies are needed. Various instruments based on different measurement principles are proposed for use in children, hence the need to test the comparability of these devices in this younger population. The objective of this study was to compare PWV measured by oscillometry (Vicorder (VIC)) with the gold standard of applanation tonometry (PulsePen (PP), Sphygmocor (SC)). PWV was measured in 98 children and young adults (age: 16.7(6.3-26.6) years (median(range)) with the above three devices at the same visit under standardized conditions. Mean PWV measured by VIC was significantly lower than that measured by SC and PP. There was no difference following path length correction of the VIC measurement (using the distance between the jugular notch and the center of the femoral cuff), (PP: 6.12(1.00), SC: 5.94(0.91), VIC: 6.14(0.75) m s(-1)). Velocities measured by the three devices showed highly significant correlations. Bland-Altman analysis revealed excellent concordance between all three devices, however, there was a small but significant proportional error in the VIC measurements showing a trend toward lower PWV measured by VIC at higher PWV values. Our study provides data on the three most frequently used instruments in pediatrics. Following path length correction of the VIC, all three devices provided comparable results. Thus, our work allows extrapolating data between previously established normal PWV values for children and forthcoming studies using these instruments to assess children at long-term risk of cardiovascular disease. The small proportional error of VIC needs additional technical development to improve the accuracy of the measurements.
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