Key result
Velocity vector imaging is a feasible and reproducible method (intraclass correlation coefficient > 0.85) to assess changes in longitudinal common carotid artery wall mechanical properties.
Why the study?
The study aimed to assess longitudinal wall motion of the common carotid artery using velocity vector imaging.
Can velocity vector imaging (VVI) assess longitudinal wall motion of the common carotid artery in adult volunteers?
Cross-Sectional (n=102)
Can velocity vector imaging (VVI) assess longitudinal wall motion of the common carotid artery in adult volunteers?
Velocity vector imaging is a feasible and reproducible method to assess longitudinal common carotid artery wall mechanical properties and synchrony associated with aging, atherosclerosis, and hypertension.
Supports VVI for carotid mechanics research; leaves open clinical adoption pending outcome studies.
OBJECTIVE: We aimed to assess longitudinal wall motion of the common carotid artery (CCA) using velocity vector imaging (VVI). METHODS: From October 2018 to July 2019, we prospectively performed VVI of 204 CCAs (102 adult volunteers, 57 men, 45 women) in young (n = 40, 20-44 y), mid-age (n = 30, 45-64 y), and senior (n = 32, ≥65 y) groups. VVI parameters of CCA included longitudinal motion pattern, motion parameters (strain, strain rate, displacement), and time-to-peak motion parameters (time-to-peak strain, time-to-peak strain rate, time-to-peak displacement). Statistical analyses included one-way ANOVA post-hoc testing to examine the difference in VVI parameters among the 3 age groups and in paired groups; unpaired t tests to examine the difference in VVI parameters between CCAs with and without atherosclerotic plaque, between hypertensive and normotensive subjects without atherosclerotic plaque; linear regression to analyze correlations of VVI parameters to age, carotid intima-media thickness; and intraclass correlation coefficient to test inter- and intra-observer reliability in performing VVI of the CCA. RESULTS: = 0.29-0.22). CCA wall motion dyssynchrony was remarkable in seniors. The repeatability and reproducibility for performing carotid artery VVI were good (intraclass correlation coefficient > 0.85). CONCLUSIONS: VVI is feasible to assess changes in longitudinal CCA wall mechanical properties and synchrony with aging, atherosclerosis, and hypertension.
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Gao et al. (2020) conducted a cross-sectional in Adult volunteers (n=102). Velocity vector imaging (VVI) was evaluated on Longitudinal wall motion parameters and synchrony. Velocity vector imaging is a feasible and reproducible method (intraclass correlation coefficient > 0.85) to assess changes in longitudinal common carotid artery wall mechanical properties.
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