Key result
Eight weeks of Fitness-Dance training decreased heart rate (Δ = -7 to -9 bpm, p<0.001) and increased HRV in older adults with MCI, but these benefits reversed after four weeks of detraining.
Why the study?
Lockdown measures during COVID-19 limited regular exercise, but the cardiac and performance effects of fitness-dance training followed by detraining in older adults with mild cognitive impairment were uncharacterized.
Does 8 weeks of Fitness-Dance training followed by 4 weeks of detraining affect cardiac adaptations and physical performance in older adults with mild cognitive impairment?
Does 8 weeks of Fitness-Dance training followed by 4 weeks of detraining affect cardiac adaptations and physical performance in older adults with mild cognitive impairment?
Effect estimate: ES = 0.5-0.6 for HR decrease; ES = 0.4 for HRV increase
p-value: p=<0.001
Eight weeks of fitness-dance training improves cardiac parameters in older adults with mild cognitive impairment, but these cardioprotective benefits are completely lost after just four weeks of detraining.
May inform exercise strategies for older adults during lockdowns; leaves open durability of cardiac adaptations after detraining.
Physical training is considered as a low-cost intervention to generate cardioprotective benefits and to promote physical and mental health, while reducing the severity of acute respiratory infection symptoms in older adults. However, lockdown measures during COVID-19 have limited people’s opportunity to exercise regularly. The aim of this study was to investigate the effect of eight weeks of Fitness and Dance training, followed by four weeks of COVID-19-induced detraining, on cardiac adaptations and physical performance indicators in older adults with mild cognitive impairment (MCI). Twelve older adults (6 males and 6 females) with MCI (age, 73 ± 4.4 y; body mass, 75.3 ± 6.4 kg; height, 172 ± 8 cm; MMSE score: 24–27) participated in eight weeks of a combined Fitness-Dance training intervention (two sessions/week) followed by four weeks of training cessation induced by COVID-19 lockdowns. Wireless Polar Team Pro and Polar heart rate sensors (H10) were used to monitor covered distance, speed, heart rate (HR min, avg and max), time in HR zone 1 to 5, strenuousness (load score), beat-to-beat interval (max RR and avg RR) and heart rate variability (HRV-RMSSD). One-way ANOVA was used to analyze the data of the three test sessions (T1: first training session, T2: last training session of the eight-week training program, and T3: first training session after the four-week training cessation). Statistical analysis showed that eight weeks of combined Fitness-Dance training induced beneficial cardiac adaptations by decreasing HR (HR min, HR avg and HR max) with p < 0.001, ES = 0.5–0.6 and Δ = −7 to−9 bpm, and increasing HRV related responses (max and avg RR and RMSSD), with p < 0.01 and ES = 0.4. Consequently, participants spent more time in comfortable HR zones (e.g., p < 0.0005; ES = 0.7; Δ = 25% for HR zone 1) and showed reduced strenuousness (p = 0.02, Δ = −15% for load score), despite the higher covered total distance and average speed (p < 0.01; ES = 0.4). However, these changes were reversed after only four weeks of COVID-19 induced detraining, with values of all parameters returning to their baseline levels. In conclusion, eight weeks of combined Fitness-Dance training seems to be an efficient strategy to promote cardioprotective benefits in older adults with MCI. Importantly, to maintain these health benefits, training has to be continued and detraining periods should be reduced. During a pandemic, home-based exercise programs may provide an effective and efficient alternative of physical training.
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Ammar et al. (2021) studied Mild cognitive impairment (MCI) (n=12). Combined Fitness-Dance training vs. Baseline (pre-training) and detraining periods was evaluated on Cardiac adaptations (HR min, avg, max) and HRV related responses (ES = 0.5-0.6 for HR decrease; ES = 0.4 for HRV increase, p=<0.001). Eight weeks of Fitness-Dance training decreased heart rate (Δ = -7 to -9 bpm, p<0.001) and increased HRV in older adults with MCI, but these benefits reversed after four weeks of detraining.
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