Study2021

Myths and methodologies: Reliability of non-invasive estimates of cardiac autonomic modulation during whole-body passive heating

Akerman AP, Meade RD, Notley SR, Rutherford MM, Kenny GP

Experimental physiology · 3 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
Government
Natural Sciences and Engineering Research Council of Canada
Grants
Natural Sciences and Engineering Research Council of Canada (rgpin-2020-03891)

Based on 1 listed funder(s).

Publication

Published
2020-11-16 · Exp Physiol · vol. 106 · issue 3 · pp. 593–614
Publisher
Wiley
Cited
4 citations · more than 60% of similar papers · 0.3× the field average
References
121 works
Access
Paywalled
Research areas
Heart Rate Variability and Autonomic Control · Non-Invasive Vital Sign Monitoring · Thermoregulation and physiological responses
Keywords
Reliability (semiconductor), Modulation (music), Cardiology, Medicine, Internal medicine, Reliability engineering, Physics, Engineering, Acoustics, Thermodynamics
MeSH
autonomic nervous system, humans, reproducibility of results, heating, blood pressure, heart rate, baroreflex, adult, male, young adult

5 authors

From CA

  • Ashley Paul AkermanUniversity of Ottawa
  • Robert D. MeadeUniversity of Ottawa
  • Sean R. NotleyUniversity of Ottawa
  • Maura M. RutherfordUniversity of Ottawa
  • Glen Patrick Kenny · correspondingUniversity of Ottawa

Abstract

Observed individual variability in cardiac baroreflex sensitivity (cBRS) and heart rate variability (HRV) is extensive, especially during exposure to stressors such as heat. A large part of the observed variation may be related to the reliability (consistency) of the measurement. We therefore examined the test-retest reliability of cBRS and HRV measurements on three separate occasions in 14 young men (age: 24 (SD 5) years), at rest and during whole-body heating (water-perfused suit) to raise and clamp oesophageal temperature 0.6°C, 1.2°C and 1.8°C above baseline. Beat-to-beat measurements of RR interval and systolic blood pressure (BP) were obtained for deriving HRV (from RR), and cBRS calculated via (i) the spontaneous method, α coefficients and transfer function analysis at each level of heat strain, and (ii) during forced oscillations via squat-stand manoeuvres (0.1 Hz) before and after heating. Absolute values and changes in all cBRS estimates were variable but generally consistent with reductions in parasympathetic activity. cBRS estimates demonstrated poor absolute reliability (coefficient of variation ≥25%), but relative reliability (intraclass correlation coefficient; ICC) of some frequency estimates was acceptable (ICC ≥0.70) during low-heat strain (ICC: 0.56-0.74). After heating, forced oscillations in BP demonstrated more favourable responses than spontaneous oscillations (better reliability, lower minimum detectable change). Absolute reliability of HRV estimates were poor, but relative reliability estimates were often acceptable (≥0.70). Our findings illustrate how measurement consistency of cardiac autonomic modulation estimates are altered during heat stress, and we demonstrate the possible implications on research design and data interpretation.

Abstract via Europe PMC. Copyright remains with the authors or publisher.

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