Key result
Long-term exposure to moderate hypobaric hypoxia moderated the decrease in heart rate variability induced by acute hypoxic stress in female Wistar rats.
Why the study?
Does preadaptation to hypoxia modulate heart rate variability responses to acute hypoxic stress in rats?
Does preadaptation to hypoxia modulate heart rate variability responses to acute hypoxic stress in rats?
Long-term mild hypoxia preadaptation in rats moderates sympathetic activation induced by acute hypoxic stress, independent of right ventricular hypertrophy.
No clinical implications from rat data; leaves open translation of hypoxic preadaptation effects on autonomic responses to humans.
The aims of this study were to relate heart morphology and functions changes to heart rate variability (HRV) components after acclimatization to high altitude and to define whether preadaptation to hypoxia could modulate HRV responses to acute hypoxic stress. Doppler-echocardiographic studies of the left ventricle were performed in female Wistar rats before, during, and after a 10-week exposure to moderate hypobaric hypoxia (CH rats, approximately 4000 m simulated) or normoxia (N rats, approximately 55 m). Right ventricular morphology and function and pulmonary artery pressure were evaluated using heart catheterization. Spectral analysis of HRV was studied after exposure in conscious unrestrained rats in normoxia and during acute hypoxic stress. Necropsy right ventricular hypertrophy and intraventricular and pulmonary artery hypertension were found in CH rats compared with N rats. Echocardiographic left ventricular morphology and functions were similar between the groups after exposures. Compared to the control group, CH rats had similar heart rates and HRV components when measured in normoxia. During acute hypoxic stress, HRV decreased in all rats, but less in CH rats. These results support the hypothesis that long-term mild hypoxia may moderate sympathetic activation induced by acute hypoxia and that right ventricular hypertrophy cannot be the direct cause of such a shift in sympathovagal nerve interaction during acute hypoxic stress.
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Melin et al. (2003) studied Hypoxia acclimatization. Moderate hypobaric hypoxia (~4000 m simulated) vs. Normoxia (~55 m) was evaluated on Heart rate variability (HRV) components and heart morphology/function. Long-term exposure to moderate hypobaric hypoxia moderated the decrease in heart rate variability induced by acute hypoxic stress in female Wistar rats.
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