PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
December 1, 2004Journal of Hypertension292 citations

Validation of a new non-invasive portable tonometer for determining arterial pressure wave and pulse wave velocity

View Full Paper
PSPaolo SalviGLGiuseppe LioCLCarlos Labat

Structured PICO

Does the PulsePen tonometer accurately measure arterial pressure waves and pulse wave velocity compared to invasive measurements and Millar tonometers?

P
Population
Study 1: 10 patients undergoing cardiac catheterization. Study 2: 68 subjects (32 men, 36 women).
I
Intervention
PulsePen (a new, small portable tonometer)
C
Comparator
Study 1: intra-arterial simultaneous measurements. Study 2: simultaneous carotid and femoral measurements with two Millar tonometers.
O
Outcome
Arterial pressure values, pulse wave contours, and pulse wave velocity (PWV)surrogate

The PulsePen is a reliable non-invasive device for evaluating central arterial pressure and stiffness in clinical practice.

Abstract

OBJECTIVE: To validate a new, small portable tonometer (PulsePen) that is able to assess carotid artery pressure and to measure pulse wave velocity (PWV) non-invasively. Its software provides absolute arterial pressure values, an assessment of arterial pulse wave contours, an estimation of reflection waves and measurements of PWV. DESIGN AND METHODS: Two validation studies were carried out. The aim of the first study was to compare arterial pressure values and pulse wave contours recorded in the carotid artery using the PulsePen versus intra-arterial simultaneous measurements in 10 patients undergoing cardiac catheterization. The pulse wave contour was assessed using Fourier analysis. The comparison between the two methods showed no difference in arterial pressure wave spectral moduli from harmonics 1 to 6. The second study compared PWV measurements taken with the PulsePen (one tonometer) and measurements performed with two Millar tonometers in 68 subjects (32 men, 36 women). PulsePen measurements were realized as two consecutive measurements in the carotid and femoral arteries, both synchronized by electrocardiogram. The pulse wave transit time was calculated as the difference between the time delay of the femoral pulse wave and the carotid pulse wave in relation to the R wave of the electrocardiogram. These measurements were compared with PWV obtained by simultaneous carotid and femoral measurements with the two Millar tonometers. No difference between the two methods was found, with a variation coefficient of 7.7%. The variation coefficients of the inter-observer and intra-observer reproducibility for the PulsePen were 7.9 and 7.2%, respectively. CONCLUSIONS: These results show that the PulsePen enables an easy and reliable evaluation of central arterial pressure and stiffness in clinical ambulatory practice, especially in high-risk patients in whom arterial stiffness has been shown to be a significant indicator of morbidity and mortality.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Salvi et al. (2004) studied this question.

synapsesocial.com/papers/69f29d4a1b51e2fbf0187510https://doi.org/10.1097/00004872-200412000-00010
Ask AI
Helpful
Bookmark
Share
View Full Paper