Why the study?
The comparative effect of high-intensity interval training versus moderate-intensity continuous exercise training on hemodynamic and functional variables in individuals with Parkinson's disease was unknown.
Does high-intensity interval training improve hemodynamic and functional variables compared to moderate-intensity continuous exercise training in individuals with Parkinson's disease?
Does high-intensity interval training improve hemodynamic and functional variables compared to moderate-intensity continuous exercise training in individuals with Parkinson's disease?
In individuals with Parkinson's disease, 12 weeks of high-intensity interval training improved endothelial reactivity and aerobic capacity more than moderate-intensity continuous training.
HIIT may be prioritized over MICE to enhance endothelial reactivity and walking capacity in Parkinson's disease; extends RCT evidence on exercise intensity.
PURPOSE: To investigate the effect of high-intensity interval training (HIIT) versus moderate-intensity continuous exercise training (MICE) on hemodynamic and functional variables in individuals with Parkinson's disease. METHODS: Twenty participants (13 men) were randomly assigned to a thrice-weekly HIIT (n = 12) or MICE (n = 8) for 12 weeks. Hemodynamic (resting heart rate and blood pressure, carotid femoral pulse wave velocity, endothelial reactivity, and heart rate variability) and functional variables (5-time sit-to-stand, timed up and go, and 6-min walking tests) assessed before and after training. RESULTS: Demographic, hemodynamic and functional variables were similar between groups at baseline. Endothelial reactivity tended to increase after HIIT, but not after MICE, resulting in improved level (∼8%, P < .01) of this variable in HIIT versus MICE during follow-up. Six-minute walking test improved after HIIT (10.4 ± 3.8%, P < .05), but did not change after MICE. Sit to stand improved similarly after HIIT (27.2 ± 6.1%, P < .05) and MICE (21.5 ± 5.4%, P < .05). No significant changes were found after HIIT or MICE in any other variable assessed. CONCLUSION: These results suggest that exercise intensity may influence training-induced adaptation on endothelial reactivity and aerobic capacity in individuals with Parkinson's disease.
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Fernandes et al. (2019) studied this question.
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