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Impaired heart rate variability in patients with chronic Chagas' disease
1Istituto Ricerche Cardiovascolari, Consiglio Nazionale delle Ricerche, Milano, Italia.
Insights
Heart rate variability analysis reveals impaired sympathovagal control in Chagas' disease patients. Even without heart failure, autonomic nervous system abnormalities are evident in individuals with Chagas' disease.
Area of Science:
- Cardiology
- Autonomic Neuroscience
- Infectious Diseases
Background:
- Chagas' disease, caused by *Trypanosoma cruzi*, can affect the autonomic nervous system.
- Heart rate variability (HRV) analysis is a non-invasive tool to assess sympathovagal balance.
Purpose of the Study:
- To investigate alterations in sympathovagal control of heart rate in patients with Chagas' disease using spectral analysis of HRV.
- To compare autonomic function in controls, Chagas' 1 (seropositive only), and Chagas' 2 (seropositive with ECG abnormalities) groups.
Main Methods:
- Spectral analysis of R-R interval variability during rest, standing, and handgrip exercise.
- Low frequency (LF) component as a marker of sympathetic activity, high frequency (HF) component as a marker of vagal activity.
Main Results:
- Significant differences in LF component response to postural changes (standing) among groups.
- Control subjects showed increased LF during standing and handgrip, unlike Chagas' 1 and Chagas' 2 patients.
- Abnormalities in neural control of HRV were observed even in the absence of heart failure.
Conclusions:
- Chronic Chagas' disease is associated with quantitative and assessable abnormalities in heart rate autonomic control.
- Impaired sympathetic response to stimuli is present in Chagas' disease patients, even in early stages.
Abstract:
Spectral analysis of heart rate variability was used to investigate the possible alteration in sympathovagal control of heart rate in patients with Chagas' disease. The study included 31 subjects, divided into three groups: controls, Chagas' 1 (subjects with only positive serology for Chagas' disease) and Chagas' 2 (subjects with positive serology and electrocardiographic abnormalities that are usually found in this disease). The subjects were studied during rest, while standing, and during handgrip exercise. With this approach, the low frequency (approximately 0.1 Hz) spectral component of R-R interval variability is considered to be a marker primarily of sympathetic activity, whereas the high frequency (approximately 0.25 Hz) component, which is related to respiration, seems mainly to reflect vagal activity. We observed significant (p less than 0.05) differences among the three groups during standing: although in the control subjects the low-frequency component increased (delta = 30 +/- 5 normalized units, nu), there was no increase in Chagas' 1 (delta = -1 +/- 8 nu) and Chagas' 2 (delta = -2 +/- 8 nu) patients. During handgrip exercise, another test that is capable of exciting sympathetic outflow, there was an increase of low frequency only in control subjects. These results confirm the occurrence of quantitative and assessable abnormalities in the neural control of heart rate variability in Argentinian patients with chronic Chagas' disease, even in the absence of heart failure.
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