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Simplified pulse wave velocity measurement in children: Is the pOpmètre valid?
Saïd Bichali1, Alexandra Bruel2, Marion Boivin3
1Pediatric Cardiology Unit, Nantes University Hospital, Nantes, France.
Insights
A new algorithm validates the pOpmètre® device for measuring aortic stiffness in children. This device offers a practical alternative to traditional methods for assessing cardiovascular risk in pediatric populations.
Area of Science:
- Pediatric Cardiology
- Biomedical Engineering
- Vascular Physiology
Background:
- Aortic stiffness, measured by carotid-to-femoral pulse wave velocity (PWV), is a key cardiovascular risk marker.
- Current methods like SphygmoCor® for pediatric PWV are limited by cooperation and operator skill.
- The pOpmètre® offers a faster, alternative PWV measurement using simpler sensors.
Purpose of the Study:
- To validate the pOpmètre® device for measuring PWV in children aged 4-8 years.
- To develop and validate a correction algorithm for pOpmètre® measurements in this age group.
Main Methods:
- Simultaneous PWV measurements using SphygmoCor® and pOpmètre® in a training group of 26 children.
- Development of a correction algorithm for pOpmètre® PWV (PWVpop) based on transit time and height.
- Validation of the corrected PWVpop using the Bland-Altman method in a separate validation group of 24 children.
Main Results:
- Initial pOpmètre® measurements showed a mean difference of -0.362 m/s compared to SphygmoCor®.
- The developed algorithm corrected PWVpop measurements.
- In the validation group, corrected PWVpop agreed with SphygmoCor® PWV, with a mean difference of 0.023 m/s (less than 10% difference).
Conclusions:
- The pOpmètre® device, with the developed algorithm, provides accurate PWV measurements in children aged 4-8 years.
- This validated method allows for easier clinical and research assessment of aortic stiffness in young children.
- The pOpmètre® presents a promising tool for monitoring cardiovascular risk in pediatric populations.
Abstract:
In population exposed to cardiovascular risk, aortic stiffness is an important marker which is assessed by carotid-to-femoral pulse wave velocity (PWV). In childhood, the validated applanation tonometer SphygmoCor® can be used to measure PWV, but is limited in routine practice by the child's cooperation and operator's experience. An alternative device, the pOpmètre® is validated in adults and rapidly measures finger-to-toe PWV using 2 oxymeter-like sensors. The aim of this study is to validate the pOpmètre® device in children aged between 4 and 8 years. We compared simultaneous PWV measurements of the two devices, SphygmoCor® and pOpmètre®, in a training group, using the Bland-Altman method. Then we proposed an algorithm to correct pOpmètre® PWV (PWVpop). Finally, we validated this new algorithm in a validation group of children using the Bland-Altman method. This prospective study enrolled 26 children in the training group. Mean PWVpop was 3.919 ± 0.587 m/s and mean SphygmoCor® PWV was 4.280 ± 0.383 m/s, with a difference of -0.362(CI95%(-0.546;-0.178)) m/s. A new algorithm was defined using transit time (TTpop): corrected PWVpop (m/s) = 0.150/TTpop(s) + 1.381*Height(m) + 1.148. We enrolled 24 children in the validation group. Mean corrected PWVpop was 4.231 ± 0.189 m/s and mean SphygmoCor® PWV was 4.208 ± 0.296 m/s with a corrected difference of 0.023(CI95%(-0.086;0.131)) m/s. With this algorithm correction, we found an agreement between PWV measured by the SphygmoCor® and the pOpmètre®, with a difference of less than 10%. Using this algorithm, the pOpmètre® could be used in clinical or research practice in young children exposed to cardiovascular risk. (This study was registered as NCT02991703).
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