Fluid ingestion before, during, and after exercise attenuated exercise-induced increases in heart rate (-6.20 bpm; 95% CI -8.69 to -3.71) compared to no liquid ingestion.
Meta-Analysis
Does fluid ingestion attenuate heart rate increases and improve autonomic recovery in adults during and after physical exercise?
Hydration during exercise attenuates exercise-induced heart rate increases and improves autonomic recovery via accelerated cardiac vagal modulation.
Effect estimate: Difference -6.20 bpm (95% CI -8.69 to -3.71)
A systematic review was undertaken to investigate the involvement of hydration in heart rate (HR), HR variability (HRV) and diastolic (DBP) and systolic (SBP) blood pressure in response to exercise. Data synthesis: The EMBASE, MEDLINE, Cochrane Library, CINAHL, LILACS and Web of Science databases were searched. In total, 977 studies were recognized, but only 36 were included after final screening (33 studies in meta-analysis). This study includes randomized controlled trials (RCTs) and non-RCTs with subjects > 18 years old. The hydration group consumed water or isotonic drinks, while the control group did not ingest liquids. For the hydration protocol (before, during and after exercise), the HR values during the exercise were lower compared to the controls (−6.20 bpm, 95%CI: −8.69; −3.71). In the subgroup analysis, “water ingested before and during exercise” showed lower increases in HR during exercise (−6.20, 95%CI: 11.70 to −0.71), as did “water was ingested only during exercise” (−6.12, 95%CI: −9.35 to −2.89). Water intake during exercise only revealed a trend of avoiding greater increases in HR during exercise (−4,60, 95%CI: −9.41 to 0.22), although these values were not significantly different (p = 0.06) from those of the control. “Isotonic intake during exercise” showed lower HRs than the control (−7.23 bpm, 95% CI: −11.68 to −2.79). The HRV values following the exercise were higher in the hydration protocol (SMD = 0.48, 95%CI: 0.30 to 0.67). The values of the SBP were higher than those of the controls (2.25 mmHg, 95%CI: 0.08 to 4.42). Conclusions: Hydration-attenuated exercise-induced increases in HR during exercise, improved autonomic recovery via the acceleration of cardiac vagal modulation in response to exercise and caused a modest increase in SBP values, but did not exert effects on DBP following exercise.
Porto et al. (Thu,) conducted a meta-analysis in Physical exercise. Hydration (water or isotonic drinks) vs. No liquid ingestion was evaluated on Heart rate during exercise (Difference -6.20 bpm, 95% CI -8.69 to -3.71). Fluid ingestion before, during, and after exercise attenuated exercise-induced increases in heart rate (-6.20 bpm; 95% CI -8.69 to -3.71) compared to no liquid ingestion.
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