Study2026Industry fundedOpen access

Funded in part by Toyota Motor Corporation

Temperature and humidity independently influence thermoregulatory responses during Finnish sauna bathing

Laatikainen-Raussi I, Mikkola T, Ihalainen JK, Ahokas E

Temperature (Austin, Tex.) · 0 citations

Review labels

Industry funded

Neutral facts our review recorded about how this study was done. They describe method, never whether we like the result.

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
Industry funded
Company
Toyota Motor Corporation

Based on 1 listed funder(s) and full-text disclosure statement.

Publication

Published
2026-07-03 · Temperature (Austin) · vol. 13 · issue 3 · pp. 289–299
Publisher
Taylor & Francis
Cited
0 citations · more than 62% of similar papers · 0.0× the field average
References
24 works
Access
Open access (hybrid journal) · CC-BY
Research areas
Thermoregulation and physiological responses · Textile materials and evaluations · Urban Heat Island Mitigation
Keywords
Humidity, Thermoregulation, Relative humidity, Air temperature, Skin temperature

4 authors

From FI

  • Iida Laatikainen‐Raussi · correspondingUniversity of Jyväskylä
  • Tom Mikkola
  • Johanna Kaarina IhalainenUniversity of Jyväskylä
  • Essi K. AhokasUniversity of Jyväskylä

Abstract

This study examined the effects of sauna air temperature and relative humidity (RH) on acute cardiovascular and thermoregulatory responses under typical Finnish sauna conditions, where participants were free to throw water onto the heated stones (löyly). Fifty recreationally active healthy adults (32 males, 18 females, 35.4 ± 10.4 years, 174 ± 9.9 cm, 77 ± 17 kg) completed four 10-minute sauna sessions, each separated by 30-minute recovery. Core temperature (Tcore), skin temperature, heart rate (HR), body mass, and perceptual responses were measured, alongside detailed multi-point environmental monitoring of temperature and relative humidity (RH) monitoring. Generalized estimating equations assessed associations between environmental factors and physiological responses. HR increased markedly during sauna exposure (mean +41.6 bpm), while Tcore rose moderately (+0.4°C). Temperature and RH were independently associated with increases in HR (β = 1.40 bpm/°C; β = 0.37 bpm/%RH) and Tcore (β = 0.032°C/°C; β = 0.0079°C/%RH). These associations remained significant after adjustment for sex, physical activity, body fat percentage, and skin surface area. The difference between dew point and skin temperature, used as an index of condensation potential, showed weak associations with HR and no significant relationship with Tcore. Repeated sauna sessions did not meaningfully influence HR responses, and only minor differences were observed in Tcore between sessions. Perceptual responses were primarily driven by temperature, with smaller contributions from humidity. These findings demonstrate that humidity, beyond temperature, appears to independently contribute to physiological strain during sauna exposure. The results highlight the importance of characterizing environmental conditions and suggest that humidity should be considered when optimizing sauna use for potential health benefits.

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

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