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Published on: February 7, 2014
Blood Pressure Complexity Discriminates Pathological Beat-to-Beat Variability as a Marker of Vascular Aging
Yun-Kai Lee1, Sara Mazzucco2, Peter M Rothwell2
1Institute of Biomedical Engineering Department of Engineering Science University of Oxford UK.
Insights
Reduced blood pressure (BP) complexity may identify pathological BP variability (BPV) linked to stroke risk. This measure, unlike standard BPV, reflects impaired compensatory mechanisms and could be a key modifiable risk factor.
Area of Science:
- Cardiovascular Physiology
- Neurology
- Biomedical Engineering
Background:
- Beat-to-beat blood pressure variability (BPV) is linked to increased stroke risk.
- BPV can stem from healthy physiological processes or the failure of compensatory mechanisms.
- Blood pressure (BP) complexity, measuring structured variations, may identify pathological BPV when reduced.
Purpose of the Study:
- To investigate whether reduced BP complexity can discriminate pathological BPV.
- To explore the association of BP complexity with autonomic function and arterial stiffness in patients with transient ischemic attack or minor stroke.
Main Methods:
- Prospective, population-based cohort study (OXVASC) of 908 patients.
- Beat-to-beat BP and ECG monitoring to derive BPV (coefficient of variation) and BP complexity (modified multiscale entropy).
- Analysis of heart rate variability, baroreflex sensitivity (BRS), and arterial stiffness (pulse wave velocity).
Main Results:
- BP complexity was inversely correlated with BPV (P<0.001) and reduced in hypertension/diabetes (P<0.001).
- BP complexity decreased with age and correlated with autonomic dysfunction markers (HRV, BRS) and arterial stiffness (PWV) (P<0.001).
- These correlations remained significant after adjusting for clinical variables (P<0.05).
Conclusions:
- Loss of BP complexity effectively distinguishes pathological BPV from healthy variations.
- Reduced BP complexity may serve as a less confounded and potentially modifiable risk factor for stroke.
- This finding highlights the clinical relevance of BP complexity in cardiovascular risk assessment.
Abstract:
Background Beat-to-beat blood pressure variability (BPV) is associated with an increased risk of stroke but can be driven by both healthy physiological processes and failure of compensatory mechanisms. Blood pressure (BP) complexity measures structured, organized variations in BP, as opposed to random fluctuations, and its reduction may therefore identify pathological beat-to-beat BPV. Methods and Results In the prospective, population-based OXVASC (Oxford Vascular Study) Phenotyped Cohort with transient ischemic attack or minor stroke, patients underwent at least 5 minutes of noninvasive beat-to-beat monitoring of BP (Finometer) and ECG to derive the following: BPV (coefficient of variation) and complexity (modified multiscale entropy) of systolic BP and diastolic BP, heart rate variability (SD of R-R intervals), and baroreflex sensitivity (BRS; Welch's method), in low- (0.04-0.15 Hz) and high-frequency (0.15-0.4 Hz) bands. Associations between BPV or BP complexity with autonomic indexes and arterial stiffness were determined (linear regression), unadjusted, and adjusted for age, sex, and cardiovascular risk factors. In 908 consecutive, consenting patients, BP complexity was inversely correlated with BPV coefficient of variation (P<0.001) and was similarly reduced in patients with hypertension or diabetes (P<0.001). However, although BPV coefficient of variation had a U-shaped relationship with age, BP complexity fell systematically across age quintiles (quintile 1: 15.1 [14.0-16.1] versus quintile 5: 13.8 [12.4-15.1]) and was correlated with markers of autonomic dysfunction (heart rate variability SD of R-R intervals: r = 0.20; BRS low frequency: 0.19; BRS high frequency: 0.26) and arterial stiffness (pulse wave velocity: -0.21; all P<0.001), even after adjustment for clinical variables (heart rate variability SD of R-R intervals: 0.12; BRS low frequency and BRS high frequency: 0.13 and 0.17; and pulse wave velocity: -0.07; all P<0.05). Conclusions Loss of BP complexity discriminates BPV because of pathological failure of compensatory mechanisms and may represent a less confounded and potentially modifiable risk factor for stroke.
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