Heated Resistance Exercise Recommendations, Rewards, and Risks

ABSTRACT Adding heat stress to resistance exercise or heated resistance exercise (HRE) was historically believed to be counterproductive as the additional thermal strain would induce excessive physiologic strain hindering training quality and the overall adaptive impulse. Emerging data from cell, animal, and now human models indicate that heat stress synergistically stimulates several molecular processes that favor skeletal muscle protein synthesis and muscular performance prompting reconsideration of the relationship between heat stress and resistance exercise. While mechanistic targets are becoming clearer, implementation of HRE remains ambiguous as there is a lack of discussion regarding the recommendations to promote adaptations and muscular performance enhancements. Resistance exercise with heat stress is not without risk. Within this brief review, we discuss the risks and rewards of HRE and highlight the preparatory and exercise programming aspects of this novel training approach.

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Publication Details

Journal
Strength and conditioning journal
Published
2026-10-09
DOI
https://doi.org/10.1519/ssc.0000000000001004
Primary Topic
Thermoregulation and physiological responses
Type
article
Field-Weighted Citation Impact
0.00
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article

Heated Resistance Exercise Recommendations, Rewards, and Risks

Lesley W. Vandermark, Riana R. Pryor, David P. Looney, Daniel K. Sweet et al.
Strength and conditioning journal
Thermoregulation and physiological responses
article

Heated Resistance Exercise Recommendations, Rewards, and Risks

Lesley W. Vandermark, Riana R. Pryor, David P. Looney, Daniel K. Sweet, David Hostler, J. Luke Pryor, Adam W. Potter, Paul Rosbrook
article en

Abstract

ABSTRACT Adding heat stress to resistance exercise or heated resistance exercise (HRE) was historically believed to be counterproductive as the additional thermal strain would induce excessive physiologic strain hindering training quality and the overall adaptive impulse. Emerging data from cell, animal, and now human models indicate that heat stress synergistically stimulates several molecular processes that favor skeletal muscle protein synthesis and muscular performance prompting reconsideration of the relationship between heat stress and resistance exercise. While mechanistic targets are becoming clearer, implementation of HRE remains ambiguous as there is a lack of discussion regarding the recommendations to promote adaptations and muscular performance enhancements. Resistance exercise with heat stress is not without risk. Within this brief review, we discuss the risks and rewards of HRE and highlight the preparatory and exercise programming aspects of this novel training approach.

Strength and conditioning journal
U.S. Army Research Institute of Environmental Medicine (US), Madigan Army Medical Center (US), United States Army (US), University at Buffalo, State University of New York (US)
Openalex Percentile: Top 13%
Thermoregulation and physiological responses
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Heated Resistance Exercise Recommendations, Rewards, and Risks — Lesley W. Vandermark, Riana R. Pryor, et al. · Strength and conditioning journal (2026) | TGRS Research Map | TGRS