Study2017Open access

Passive Heating Attenuates Post-exercise Cardiac Autonomic Recovery in Healthy Young Males

Peçanha T, Forjaz CLM, Low DA

Frontiers in neuroscience · 14 citations

How it was studied

Design
Controlled clinical trial (classified by our AI screen)
Studied in
People
Main outcome
Health markers and function

Who paid for it

Funding
Independent funding
Government
Fundação de Amparo à Pesquisa do Estado de São Paulo
Government
Coordenação de Aperfeiçoamento de Pessoal de Nível Superior
Government
Conselho Nacional de Desenvolvimento Científico e Tecnológico
Grants
Fundação de Amparo à Pesquisa do Estado de São Paulo (2015/15466‐0); Fundação de Amparo à Pesquisa do Estado de São Paulo (2013/05519‐4); Fundação de Amparo à Pesquisa do Estado de São Paulo (2015/); Fundação de Amparo à Pesquisa do Estado de São Paulo (15/13800-0); Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP 2015/15466-0)

Based on 3 listed funder(s) and full-text disclosure statement.

Publication

Published
2017-12-21 · Front Neurosci · vol. 11 · p. 727
Publisher
Frontiers Media
Cited
21 citations · more than 86% of similar papers · 1.7× the field average
References
47 works
Access
Open access (journal) · CC-BY
Research areas
Heart Rate Variability and Autonomic Control · Thermoregulation and physiological responses · Non-Invasive Vital Sign Monitoring
Keywords
Heart rate, Medicine, Heart rate variability, Thermoregulation, Cardiology, Hemodynamics, Internal medicine, Mean arterial pressure, Aerobic exercise, Autonomic nervous system, Core temperature, Heat stress, Skin temperature, Blood pressure, Anesthesia, Animal science, Biomedical engineering

3 authors

From BR, GB

  • Tiago PeçanhaUniversidade de São Paulo
  • C. L. M. ForjazUniversidade de São Paulo
  • David A. Low · correspondingLiverpool John Moores University

Abstract

Post-exercise heart rate (HR) recovery (HRR) presents a biphasic pattern, which is mediated by parasympathetic reactivation and sympathetic withdrawal. Several mechanisms regulate these post-exercise autonomic responses and thermoregulation has been proposed to play an important role. The aim of this study was to test the effects of heat stress on HRR and HR variability (HRV) after aerobic exercise in healthy subjects. Twelve healthy males (25 ± 1 years, 23.8 ± 0.5 kg/m2) performed 14 min of moderate-intensity cycling exercise (40-60% HRreserve) followed by 5 min of loadless active recovery in two conditions: heat stress (HS) and normothermia (NT). In HS, subjects dressed in a whole-body water-perfused tube-lined suit to increase internal temperature (Tc) by ~1°C. In NT, subjects did not wear the suit. HR, core and skin temperatures (Tc and Tsk), mean arterial pressure (MAP) skin blood flow (SKBF), and cutaneous vascular conductance (CVC) were measured throughout and analyzed during post-exercise recovery. HRR was assessed through calculations of HR decay after 60 and 300 s of recovery (HRR60s and HRR300s), and the short- and long-term time constants of HRR (T30 and HRRt). Post-exercise HRV was examined via calculations of RMSSD (root mean square of successive RR intervals) and RMS (root mean square residual of RR intervals). The HS protocol promoted significant thermal stress and hemodynamic adjustments during the recovery (HS-NT differences: Tc = +0.7 ± 0.3°C; Tsk = +3.2 ± 1.5°C; MAP = -12 ± 14 mmHg; SKBF = +90 ± 80 a.u; CVC = +1.5 ± 1.3 a.u./mmHg). HRR and post-exercise HRV were significantly delayed in HS (e.g., HRR60s = 27 ± 9 vs. 44 ± 12 bpm, P P < 0.01). The effects of heat stress (e.g., the HS-NT differences) on HRR were associated with its effects on thermal and hemodynamic responses. In conclusion, heat stress delays HRR, and this effect seems to be mediated by an attenuated parasympathetic reactivation and sympathetic withdrawal after exercise. In addition, the impact of heat stress on HRR is related to the magnitude of the heat stress-induced thermal stress and hemodynamic changes.

Abstract via Europe PMC. Copyright remains with the authors or publisher (CC BY).

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