Abstract 4340786: Autonomic inflexibility in Response to Mental Stress in Women with Coronary Microvascular Dysfunction: A Pilot Study
Abstract
Background: Many women with chest pain suspected of having myocardial ischemia have no obstructive coronary artery disease (oCAD) but instead demonstrated coronary microvascular dysfunction (CMD). One mechanism proposed for CMD-related ischemia is autonomic nervous system (ANS) dysfunction, triggering abnormal microvascular reactivity. Hypothesis: Women with CMD have abnormal autonomic reactivity with sympathetic predominance in response to mental stress. Methods: This prospective study enrolled post-menopausal women with angina and CMD (n=10) or oCAD (n=12), and asymptomatic healthy controls with a normal exercise treadmill test (n=27). CMD was diagnosed by coronary flow reserve ≤ 2.5 by coronary function testing or cardiac Positron Emission Tomography. Women with oCAD had coronary revascularization for significant epicardial stenosis. Women with heart failure and arrhythmias were excluded. All subjects underwent standardized laboratory-induced mental stress with 4 minutes of anger recall and 4 minutes of counterbalanced arithmetic stress. During the stress protocol, synchronized ECG and ICG signals were recorded using BIOPAC®. Autonomic reactivity was assessed via heart rate variability (HRV) and impedance cardiography (ICG). HRV parameters in time, nonlinear, and frequency domains were analyzed using BIOPAC®. ICG parameters were computed via open-source Physionet toolbox. HRV and ICG percent changes were calculated as (stress−baseline)/stress, and group differences were analyzed using Kruskal-Wallis tests. For significant findings ( P < 0.05), post-hoc Wilcoxon rank-sum tests with Bonferroni correction were conducted. Results: The mean age was 63 ±9 years. Cardiovascular risk factors were comparable among 3 groups. There were no differences in autonomic function at baseline among the groups. The CMD group had significantly attenuated time and nonlinear domains and increased frequency domains on HRV, suggesting impaired autonomic flexibility with stress. ICG results showed that CMD group demonstrated enhanced sympathetic activation with mental stress compared to oCAD and control groups. No significant HRV or ICG differences were found between oCAD and control participants (Figure). Conclusion: Mental stress-induced ANS dysfunction is suggested in CMD, with greater autonomic inflexibility responses than controls and oCAD groups. These findings support further investigation of neurobiological pathways and autonomic modulation as a treatment target in CMD.
Article Details
Authors (19)
Jingwen Huang
Shafa-at Sheikh
Emory University, Duluth, Georgia, United States
Esha Dave
Emory University, Duluth, Georgia, United States
Vishrut Thaker
Emory University School of Medicine, Atlanta, Georgia, United States
Taha Ahmed
Emory University School of Medicine, Morrow, Georgia, United States
Kristen Harris
Emory University, Duluth, Georgia, United States
Jose Medina-Inojosa
Emory University, Atlanta , Georgia, United States
Hania Hashmi
Emory University School of Medicine, Atlanta, Georgia, United States
Bernard Evenhuis
Emory University School of Medicine, Morrow, Georgia, United States
Olivia McClellan
Emory University, Duluth, Georgia, United States
Rand Ibrahim
Emory University, Atlanta, Georgia, United States
Trevor Sterling
Emory University, Duluth, Georgia, United States
Fauzia Rashid
Emory University, Atlanta, Georgia, United States
Amit Shah
Abdulkareem Murtala
Emory University, Atlanta, Georgia, United States
James Douglas Bremner
Emory University, Atlanta, Georgia, United States
Viola Vaccarino
EMORY UNIV ROLLINS SCHL PUBLIC HLTH, Atlanta, Georgia, United States
Arshed Quyyumi
EMORY UNIVERSITY, Atlanta, Georgia, United States
Puja Mehta
EMORY UNIVERSITY, Atlanta, Georgia, United States