TY - JOUR
T1 - Far-infrared sauna exposure at 65°C elevates core temperature
AU - Jenkins, Elliott J.
AU - Killick, Joseph A.
AU - Grimm, Sally R.
AU - Davies, Sam R.
AU - Benson, Jemima A.
AU - Tremblay, Joshua C.
AU - Stembridge, Mike
N1 - © 2026 The Author(s). Experimental Physiology published by John Wiley & Sons Ltd on behalf of The Physiological Society.
PY - 2026/7/31
Y1 - 2026/7/31
N2 - Far-infrared (FIR) saunas are increasingly used as a passive heating and ‘wellness’ modality, yet their capacity to elevate core temperature remains unclear, particularly given prior work at lower temperatures (∼45°C) reports limited net heat storage. We therefore examined whether FIR sauna exposure at an ambient temperature more typical of traditional sauna bathing (65°C) increases core (rectal) temperature and evokes thermoregulatory, cardiovascular, haematological and perceptual responses associated with heat strain. Twelve healthy adults (6 female) completed a single 45-min FIR sauna exposure. Rectal temperature, skin temperature, heart rate, blood pressure, plasma volume changes and perceptual measures were assessed throughout. Rectal temperature increased by 1.4°C (95% CI: 0.9, 1.8; P < 0.001), with elevations evident from ∼20 min. Skin temperature rose rapidly (+7.4°C [95% CI: 5.4, 9.5] at 5 min; P < 0.001) and remained elevated thereafter. Heart rate increased from 74 ± 15 to 153 ± 20 bpm (P < 0.001), while mean arterial pressure decreased immediately post-exposure (−9 mmHg [95% CI: −2, −16]; P = 0.012), driven by reductions in diastolic pressure. Plasma volume contracted by −11.6% (95% CI: −15.9, −7.2; P < 0.001), with a sweat rate of 1.4 ± 0.5 L h−1. Thermal sensation and discomfort increased to ‘extremely hot’ and ‘extremely uncomfortable’, respectively (P < 0.001). In summary, FIR sauna exposure at 65°C elicits substantial increases in rectal temperature and systemic physiological strain comparable to values previously reported in the passive heating literature. These findings indicate that the effectiveness of FIR sauna to increase core temperature is governed by the thermal load imposed, supporting its potential as a heat-based intervention when applied at sufficiently high temperatures.
AB - Far-infrared (FIR) saunas are increasingly used as a passive heating and ‘wellness’ modality, yet their capacity to elevate core temperature remains unclear, particularly given prior work at lower temperatures (∼45°C) reports limited net heat storage. We therefore examined whether FIR sauna exposure at an ambient temperature more typical of traditional sauna bathing (65°C) increases core (rectal) temperature and evokes thermoregulatory, cardiovascular, haematological and perceptual responses associated with heat strain. Twelve healthy adults (6 female) completed a single 45-min FIR sauna exposure. Rectal temperature, skin temperature, heart rate, blood pressure, plasma volume changes and perceptual measures were assessed throughout. Rectal temperature increased by 1.4°C (95% CI: 0.9, 1.8; P < 0.001), with elevations evident from ∼20 min. Skin temperature rose rapidly (+7.4°C [95% CI: 5.4, 9.5] at 5 min; P < 0.001) and remained elevated thereafter. Heart rate increased from 74 ± 15 to 153 ± 20 bpm (P < 0.001), while mean arterial pressure decreased immediately post-exposure (−9 mmHg [95% CI: −2, −16]; P = 0.012), driven by reductions in diastolic pressure. Plasma volume contracted by −11.6% (95% CI: −15.9, −7.2; P < 0.001), with a sweat rate of 1.4 ± 0.5 L h−1. Thermal sensation and discomfort increased to ‘extremely hot’ and ‘extremely uncomfortable’, respectively (P < 0.001). In summary, FIR sauna exposure at 65°C elicits substantial increases in rectal temperature and systemic physiological strain comparable to values previously reported in the passive heating literature. These findings indicate that the effectiveness of FIR sauna to increase core temperature is governed by the thermal load imposed, supporting its potential as a heat-based intervention when applied at sufficiently high temperatures.
KW - core temperature
KW - heat stress
KW - sauna
UR - https://www.scopus.com/pages/publications/105046271988
U2 - 10.1113/EP094028
DO - 10.1113/EP094028
M3 - Article
C2 - 42533687
AN - SCOPUS:105046271988
SN - 0958-0670
JO - Experimental Physiology
JF - Experimental Physiology
ER -