Key result
Higher cfPWV and baPWV are linked to carotid plaque, with cfPWV increasing odds ~11%.
Why the study?
PWV is widely used to measure arterial stiffness, but the comparative relationships of cfPWV and baPWV with the presence of carotid plaque required evaluation.
Are carotid-femoral pulse wave velocity (cfPWV) and brachial-ankle PWV (baPWV) associated with the presence of carotid plaque in a Chinese community-based population?
Cross-Sectional (n=6,027)
Are carotid-femoral pulse wave velocity (cfPWV) and brachial-ankle PWV (baPWV) associated with the presence of carotid plaque in a Chinese community-based population?
Effect estimate: OR 1.11 (95% CI 1.07-1.16)
p-value: p=<0.001
Both cfPWV and baPWV are independently associated with carotid plaque in a Chinese community-based population, though cfPWV is a stronger correlate when baPWV is elevated.
Hypothesis-generating for PWV in plaque risk models; leaves open incremental value and causality in prospective cohorts.
Pulse wave velocity (PWV) is the most widely used measurement of arterial stiffness in clinical practice. This study aimed to evaluate and compare the relationships between carotid-femoral pulse wave velocity (cfPWV) and brachial-ankle PWV (baPWV) and the presence of carotid plaque. This study was designed cross-sectionally and included 6027 participants from a community-based cohort in Beijing. Logistic regression analyses were performed to evaluate and compare the associations of cfPWV and baPWV with the presence of carotid plaque. The mean (SD) cfPWV and baPWV were 8.55 ± 1.83 and 16.79 ± 3.36, respectively. The prevalence of carotid plaque was 45.26% (n = 2728). Both cfPWV (per 1 m/s increase: OR = 1.11, 95% CI: 1.07-1.16) and baPWV (OR = 1.04, 95% CI: 1.02-1.06) were independently associated with carotid plaque after adjusting for various confounders. Compared with bottom quartile (cfPWV ≤7.31 m/s and baPWV ≤14.44 m/s), the top quartile of cfPWV and baPWV had a significantly higher prevalence of carotid plaque (for cfPWV: OR = 1.59, 95% CI: 1.32-1.92; for baPWV: OR = 1.53, 95% CI: 1.26-1.86). However, the relationship of baPWV and carotid plaque was nonlinear, with a positive trend only when baPWV < 16.85 m/s. When comparing relationships between PWV indices and carotid plaque in one model, both cfPWV and baPWV were significantly associated with carotid plaque in participants with baPWV < 16.85 m/s; however, only cfPWV was independently associated with carotid plaque in participants with baPWV ≥16.85 m/s. Both cfPWV and baPWV were significantly associated with carotid plaque in the Chinese community-based population. Furthermore, cfPWV was more strongly correlated with carotid plaque than baPWV in participants with baseline baPWV ≥16.85 m/s.
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Liu et al. (2022) conducted a cross-sectional in Carotid plaque (n=6,027). Carotid-femoral pulse wave velocity (cfPWV) and brachial-ankle pulse wave velocity (baPWV) was evaluated on Presence of carotid plaque (association per 1 m/s increase in cfPWV) (OR 1.11, 95% CI 1.07-1.16, p=<0.001). Both carotid-femoral pulse wave velocity (OR 1.11) and brachial-ankle pulse wave velocity (OR 1.04) were independently associated with the presence of carotid plaque.
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