Key result
Correlation dimension (D2) decreased during acute mental stress and independently predicted heart rate reactivity, adjusting for respiration and cardiac autonomic activity.
Why the study?
Does correlation dimension (D2) independently predict heart rate reactivity during acute mental stress?
Observational (n=187)
Does correlation dimension (D2) independently predict heart rate reactivity during acute mental stress?
Correlation dimension (D2) provides independent information regarding cardiac stress reactivity beyond traditional measures of autonomic function.
D2 may refine mental stress reactivity assessment beyond autonomic measures; hypothesis-generating and requires prospective validation before clinical use.
Correlation dimension (D2), a measure of heart rate (HR) complexity, has been shown to decrease in response to acute mental stress and relate to adverse cardiovascular health. However, the relationship between stress-induced changes in D2 and HR has yet to be established. The present studies aimed to assess this relationship systematically while controlling for changes in respiration and autonomic activity. In Study 1 (N = 25) D2 decreased during stress and predicted HR reactivity even after adjusting for changes in respiration rate, and cardiac vagal tone. This result was replicated in Study 2 (N = 162) and extended by including a measure of cardiac sympathetic activity; correlation dimension remained an independent predictor of HR reactivity in a hierarchical linear model containing measures of cardiac parasympathetic and sympathetic activity and their interaction. These results suggest that correlation dimension may provide additional information regarding cardiac stress reactivity above that provided by traditional measures of cardiac autonomic function.
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Brindle et al. (2015) reported an observational. Acute mental stress was evaluated on Heart rate reactivity. Correlation dimension (D2) decreased during acute mental stress and independently predicted heart rate reactivity, adjusting for respiration and cardiac autonomic activity.
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