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Published on: December 2, 2015
The influence of major depression and its treatment on heart rate variability and pupillary light reflex parameters
Karl-Jürgen Bär1, Wolf Greiner, Thomas Jochum
1Departments of Psychiatry, Friedrich-Schiller-University of Jena, Philosophenweg 3, 07743 Jena, Germany. Karl-Juergen.Baer@med.uni-jena.de
Insights
Antidepressant treatment significantly altered autonomic function in depressed patients, more so than the disease itself. Further research is needed to understand these changes and their impact on cardiovascular health.
Area of Science:
- Psychiatry
- Cardiology
- Autonomic Neuroscience
Background:
- Major depression is linked to increased cardiovascular risk, suggesting autonomic dysfunction.
- Previous studies on autonomic dysfunction in depression yielded inconsistent findings.
Purpose of the Study:
- To investigate the impact of depression and antidepressant medication on autonomic function.
- To assess autonomic parameters in depressed patients and controls, both medicated and unmedicated.
Main Methods:
- Cardiac autonomic function assessed using heart rate variability (HRV) parameters.
- Central autonomic tone evaluated via pupillary light reflex (PLR) parameters.
Main Results:
- Acutely depressed, unmedicated patients showed no significant differences in HRV or PLR compared to controls.
- Two days of antidepressant treatment (SSRI/NaSSRI) led to significant changes in HRV and PLR parameters.
- These treatment-induced changes persisted even after clinical recovery from depression.
Conclusions:
- Depression itself did not significantly alter autonomic parameters; treatment had a more profound effect.
- Further investigation with larger cohorts and long-term studies is recommended.
- Exploring other autonomic nervous system branches and novel techniques may clarify the role of disease versus treatment in cardiovascular outcomes.
Background:
The link between depression and autonomic dysfunction has attracted more attention since epidemiological studies have revealed that depressed patients have an augmented risk of cardiovascular morbidity and mortality. Former studies of autonomic dysfunction in major depression have shown inconclusive results.
Aims:
To further elucidate the effect of depression and medication on autonomic function, 18 patients and 18 matched control subjects were comprehensively assessed once medicated and once non-medicated as well as after full clinical recovery.
Methods:
Cardiac autonomic function was evaluated by measuring heart rate variability (HRV) parameters, and central autonomic tone was investigated by obtaining parameters of the pupillary light reflex (PLR).
Results:
Acutely depressed patients who had not taken antidepressant medication for 8 weeks prior to the investigation differed significantly neither in heart rate parameters nor in parameters of the PLR from their controls. However, after 2 days of antidepressant treatment (SSRI and NaSSRI), parameters of heart rate analysis and PLR (except relative amplitude) changed significantly and remained significantly different after clinical recovery.
Limitations:
The study needs to be repeated using larger patient groups. Long-term studies are absolutely essential.
Conclusion:
The state of depression did not influence autonomic parameters significantly. In fact, treatment influenced autonomic function far more than the disease itself. Other branches of the autonomic nervous system (ANS), as well as new techniques should be applied to elucidate whether small changes in autonomic function exist. This might clarify whether disease or treatment might influence cardiac mortality in depression.
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