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Association of Psychosocial Factors With Short-Term Resting Heart Rate Variability: The Atherosclerosis Risk in Communities Study

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Date 2021 Feb 26
PMID 33631952
Citations 9
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Abstract

Background Psychosocial factors predict heart disease risk, but our understanding of underlying mechanisms is limited. We sought to evaluate the physiologic correlates of psychosocial factors by measuring their relationships with heart rate variability (HRV), a measure of autonomic health, in the ARIC (Atherosclerosis Risk in Communities) study. We hypothesize that increased psychosocial stress associates with lower HRV. Methods and Results We studied 9331 participants in ARIC with short-term HRV data at visits 2 and 4. The mean (SD) age was 54.4 (5.7) years, 55% were women, and 25% were Black. Psychosocial factors included: (1) vital exhaustion (VE), (2) anger proneness, a personality trait, and (3) perceived social support. Linear models adjusted for sociodemographic and cardiovascular risk factors. Low frequency HRV (ln ms) was significantly lower in the highest versus lowest quartiles of VE (B=-0.14, 95% CI, -0.24 to -0.05). When comparing this effect to age (B=-0.04, 95% CI, -0.05 to -0.04), the difference was equivalent to 3.8 years of accelerated aging. Perceived social support associated with lower time-domain HRV. High VE (versus low VE) also associated with greater decreases in low frequency over time, and both anger and VE associated with greater increases in resting heart rate over time. Survival analyses were performed with Cox models, and no evidence was found that HRV explains the excess risk found with high VE and low perceived social support. Conclusions Vital exhaustion, and to a lesser extent anger and social support, were associated with worse autonomic function and greater adverse changes over time.

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References
1.
Heitzmann C, Kaplan R . Assessment of methods for measuring social support. Health Psychol. 1988; 7(1):75-109. DOI: 10.1037//0278-6133.7.1.75. View

2.
Shah A, Lampert R, Goldberg J, Veledar E, Douglas Bremner J, Vaccarino V . Posttraumatic stress disorder and impaired autonomic modulation in male twins. Biol Psychiatry. 2013; 73(11):1103-10. PMC: 3648627. DOI: 10.1016/j.biopsych.2013.01.019. View

3.
Stein P, Domitrovich P, Huikuri H, Kleiger R . Traditional and nonlinear heart rate variability are each independently associated with mortality after myocardial infarction. J Cardiovasc Electrophysiol. 2005; 16(1):13-20. DOI: 10.1046/j.1540-8167.2005.04358.x. View

4.
Kogler L, Muller V, Chang A, Eickhoff S, Fox P, Gur R . Psychosocial versus physiological stress - Meta-analyses on deactivations and activations of the neural correlates of stress reactions. Neuroimage. 2015; 119:235-51. PMC: 4564342. DOI: 10.1016/j.neuroimage.2015.06.059. View

5.
Ozbay F, Johnson D, Dimoulas E, Morgan C, Charney D, Southwick S . Social support and resilience to stress: from neurobiology to clinical practice. Psychiatry (Edgmont). 2010; 4(5):35-40. PMC: 2921311. View