Relationship between aerobic fitness and lower limb skin temperature during cycling exercise testing among well-trained athletes and nonathletes: a cross-sectional study.

Autor: Kapoor, Monika, Vasdev, V., Singh, Rupak Kumar, Jaipurkar, Raksha, Sikri, Gaurav
Předmět:
Zdroj: Medical Journal Armed Forces India; 2023 Supplement 1, Vol. 79, pS165-S174, 10p
Abstrakt: During prolonged physical exercise, the skin plays an important role in thermoregulation by dissipating heat to maintain core temperature. Moreover, thermal variation may be influenced by the physical fitness level of an individual. The aim of the present study was to determine the relationship between aerobic fitness and lower limb skin temperature during graded cycling exercise testing in well-trained athletes and nonathletes. Twelve trained athletes (mean ± SD maximal oxygen consumption [VO 2 max], 52.44 ± 4.5 ml/kg/min) and 12 nonathletes (VO 2 max, 36.95 ± 4.9 ml/kg/min) participated in this study. The regional skin temperature over the lower limbs was monitored continuously during incremental exercise testing using a thermal camera, and cardio-respiratory parameters were assessed and recorded using a metabolic analyzer (K5, COSMED, Rome, Italy). The mean skin temperature of athletes at a high intensity of exercise was 27.23 ± 0.3 °C while that of nonathletes was 29.03 ± 0.44 °C, a difference that was statistically significant (p < 0.05). A negative correlation was observed between skin temperature and cardiovascular parameters (VO 2 max and heart rate) in athletes, while no such correlation was found among nonathletes. The present study demonstrated a negative correlation between oxygen consumption and lower limb skin temperature in athletes, while the correlation was poor in nonathletes. This suggests that physical fitness level may influence the pattern of alterations in lower limb skin temperature, which supports the hypothesis that athletes exhibit better heat dissipation mechanisms than nonathletes. [ABSTRACT FROM AUTHOR]
Databáze: Supplemental Index