Substantive hemodynamic and thermal strain upon completing lower-limb hot-water immersion; comparisons with treadmill running
Thomas KN, van Rij AM, Lucas SJ, Gray AR, Cotter JD
Temperature (Austin, Tex.) · 46 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
Based on full-text disclosure statement.
Publication
- Published
- 2016-03-16 · Temperature (Austin) · vol. 3 · issue 2 · pp. 286–297
- Publisher
- Taylor & Francis
- Cited
- 57 citations · more than 97% of similar papers · 6.4× the field average
- Impact
- Top 10% most cited in its field
- References
- 67 works
- Access
- Open access (hybrid journal) · CC-BY-NC
- Research areas
- Sports Performance and Training · Cardiovascular and exercise physiology · Sports injuries and prevention
- Keywords
- Immersion (mathematics), Hemodynamics, Treadmill, Strain (injury), Medicine, Physical therapy, Cardiology, Mathematics, Mathematical analysis
5 authors
From NZ, GB
- Kate Nicole ThomasUniversity of Otago
- André M. van RijUniversity of Otago
- Samuel J. E. LucasUniversity of Birmingham; University of Otago
- Andrew Robert GrayUniversity of Otago
- James David Cotter · correspondingUniversity of Otago
Abstract
Exercise induces arterial flow patterns that promote functional and structural adaptations, improving functional capacity and reducing cardiovascular risk. While heat is produced by exercise, local and whole-body passive heating have recently been shown to generate favorable flow profiles and associated vascular adaptations in the upper limb. Flow responses to acute heating in the lower limbs have not yet been assessed, or directly compared to exercise, and other cardiovascular effects of lower-limb heating have not been fully characterized. Lower-limb heating by hot-water immersion (30 min at 42°C, to the waist) was compared to matched-duration treadmill running (65-75% age-predicted heart rate maximum) in 10 healthy, young adult volunteers. Superficial femoral artery shear rate assessed immediately upon completion was increased to a greater extent following immersion (mean ± SD: immersion +252 ± 137% vs. exercise +155 ± 69%, interaction: p = 0.032), while superficial femoral artery flow-mediated dilation was unchanged in either intervention. Immersion increased heart rate to a lower peak than during exercise (immersion +38 ± 3 beats·min-1 vs. exercise +87 ± 3 beats·min-1, interaction: p p = 0.012). Core temperature increased twice as much during immersion as exercise (+1.3 ± 0.4°C vs. +0.6 ± 0.4°C, p < 0.001). These data indicate that acute lower-limb hot-water immersion has potential to induce favorable shear stress patterns and cardiovascular responses within vessels prone to atherosclerosis. Whether repetition of lower-limb heating has long-term beneficial effects in such vasculature remains unexplored.
Abstract via Europe PMC. Copyright remains with the authors or publisher (CC BY-NC).
Community trust
Loading…
How much do you trust this study's findings?
Comments
Sign in to rate, comment on or flag this study.Sign inSomething wrong here?
Flag this study if its information, labels or funding look wrong. An editor reviews every flag.
Sign in to rate, comment on or flag this study.Sign inEducational information about published research. Not medical advice, and not a recommendation to start or stop anything.