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1.
Hypertens Res ; 35(1): 82-7, 2012 Jan.
Article in English | MEDLINE | ID: mdl-21956728

ABSTRACT

We investigated the influence of angiotensin-converting enzyme inhibitor (ACEi) treatment and physical exercise on arterial pressure (AP) and heart rate variability (HRV) in volunteer patients with hypertension. A total of 54 sedentary volunteers were divided into three groups: normotensive (NT Group), hypertensive (HT Group) and HT volunteers treated with ACEi (ACEi Group). All volunteers underwent an aerobic physical-training protocol for 15 weeks. HRV was investigated using a spectral analysis of a time series of R-R interval (RRi) that was obtained in a supine position and during a tilt test. Physical training promoted a significant reduction in the mean arterial pressure of the HT group (113±3 vs. 106±1 mm Hg) and the ACEi group (104±2 vs. 98±2 mm Hg). Spectral analysis of RRi in the supine position before physical training demonstrated that the NT and ACEi groups had similar values at low frequency (LF; 0.04-0.15 Hz) and high frequency (HF; 0.15-0.5 Hz) oscillations. The HT group had an increase in LF oscillations in absolute and normalized units and a decrease in HF oscillations in normalized units compared with the other groups. The HT group had the lowest responses to the tilt test during LF oscillations in normalized units. Physical training improved the autonomic modulation of the heart rate in the supine position only in the HT group. Physical training promoted a similar increase in autonomic modulation responses in the tilt test in all groups. Our findings show that aerobic physical training improves cardiac autonomic modulation in HT volunteers independently of ACEi treatment.


Subject(s)
Autonomic Nervous System/physiopathology , Blood Pressure/physiology , Exercise/physiology , Heart Rate/physiology , Hypertension/physiopathology , Adult , Angiotensin-Converting Enzyme Inhibitors/pharmacology , Angiotensin-Converting Enzyme Inhibitors/therapeutic use , Autonomic Nervous System/drug effects , Blood Pressure/drug effects , Enalapril/pharmacology , Enalapril/therapeutic use , Female , Heart Rate/drug effects , Humans , Hypertension/drug therapy , Male , Middle Aged , Sedentary Behavior , Tilt-Table Test
2.
Menopause ; 16(1): 110-6, 2009.
Article in English | MEDLINE | ID: mdl-18978639

ABSTRACT

OBJECTIVE: To investigate the effect of aerobic physical training on cardiovascular autonomic control in ovariectomized rats using different approaches. DESIGN: Female Wistar rats were divided into four groups: sedentary sham rats (group SSR), trained sham rats(group TSR), sedentary ovariectomized rats (group SOR), and trained ovariectomized rats (group TOR). Animals from the trained groups were submitted to a physical training protocol (swimming) for 12 weeks. RESULTS: Pharmacological evaluation showed that animals from group TSR had an increase in their cardiac vagal tonus compared with the animals from groups SSR and SOR. The analysis of heart rate variability (HRV) showed that groups TSR and SOR had fewer low-frequency oscillations (0.20-0.75 Hz) compared with groups SSR and TOR.When groups TSR and SOR were compared, the former was found to have fewer oscillations. With regard to high frequency oscillations (0.75-2.5 Hz), group SSR had a reduction compared with the other groups, whereas group TSR had the greatest oscillation compared with groups SOR and TOR, with all values expressed in normalized units.Analysis of HRV was performed after pharmacological blockade, and low-frequency oscillations were found to be predominantly sympathetic in sedentary animals, whereas there was no predominance in trained animals. CONCLUSION: Ovariectomy did not change the tonic autonomic control of the heart and, in addition, reduced the participation of sympathetic component in cardiac modulation. Physical training, on the other hand, increased the participation of parasympathetic modulation on the HRV, including ovariectomized rats.


Subject(s)
Autonomic Nervous System/physiology , Heart/innervation , Ovariectomy , Physical Conditioning, Animal/physiology , Adrenergic beta-Antagonists/pharmacology , Aerobiosis , Animals , Atropine Derivatives/pharmacology , Blood Pressure/physiology , Female , Heart Rate/physiology , Parasympatholytics/pharmacology , Propranolol/pharmacology , Rats , Rats, Wistar , Vagus Nerve/physiology
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