Application of the speed-duration relationship to normalize the intensity of high-intensity interval training.

PLoS One

School of Biomedical Sciences, Faculty of Biological Sciences, University of Leeds, Leeds, United Kingdom ; Institute of Cardiovascular and Medical Sciences, College of Medical, Veterinary and Life Sciences, University of Glasgow, Glasgow, United Kingdom.

Published: July 2014

AI Article Synopsis

  • The S-tLIM relationship defines how long individuals can sustain high-intensity exercise, but its use in normalizing High-Intensity Interval Training (HIIT) intensity is not well explored.
  • In the study, participants underwent different exercise tests to determine their limits for exercise duration at various speeds, assessing the effects on performance and exercise tolerance.
  • The findings suggest that a specific work rate (WR6) is optimal for standardizing HIIT intensity, while a maximal HIIT approach allows for understanding physiological adaptations linked to varying intensity levels.

Article Abstract

The tolerable duration of continuous high-intensity exercise is determined by the hyperbolic Speed-tolerable duration (S-tLIM) relationship. However, application of the S-tLIM relationship to normalize the intensity of High-Intensity Interval Training (HIIT) has yet to be considered, with this the aim of present study. Subjects completed a ramp-incremental test, and series of 4 constant-speed tests to determine the S-tLIM relationship. A sub-group of subjects (n = 8) then repeated 4 min bouts of exercise at the speeds predicted to induce intolerance at 4 min (WR4), 6 min (WR6) and 8 min (WR8), interspersed with bouts of 4 min recovery, to the point of exercise intolerance (fixed WR HIIT) on different days, with the aim of establishing the work rate that could be sustained for 960 s (i.e. 4×4 min). A sub-group of subjects (n = 6) also completed 4 bouts of exercise interspersed with 4 min recovery, with each bout continued to the point of exercise intolerance (maximal HIIT) to determine the appropriate protocol for maximizing the amount of high-intensity work that can be completed during 4×4 min HIIT. For fixed WR HIIT tLIM of HIIT sessions was 399±81 s for WR4, 892±181 s for WR6 and 1517±346 s for WR8, with total exercise durations all significantly different from each other (P<0.050). For maximal HIIT, there was no difference in tLIM of each of the 4 bouts (Bout 1: 229±27 s; Bout 2: 262±37 s; Bout 3: 235±49 s; Bout 4: 235±53 s; P>0.050). However, there was significantly less high-intensity work completed during bouts 2 (153.5±40. 9 m), 3 (136.9±38.9 m), and 4 (136.7±39.3 m), compared with bout 1 (264.9±58.7 m; P>0.050). These data establish that WR6 provides the appropriate work rate to normalize the intensity of HIIT between subjects. Maximal HIIT provides a protocol which allows the relative contribution of the work rate profile to physiological adaptations to be considered during alternative intensity-matched HIIT protocols.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC3828304PMC
http://journals.plos.org/plosone/article?id=10.1371/journal.pone.0076420PLOS

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