Article
Details
Citation
Iannetta D, Inglis EC, Fullerton C, Passfield L & Murias JM (2018) Metabolic and performance‐related consequences of exercising at and slightly above MLSS. Scandinavian Journal of Medicine & Science in Sports, 28 (12), pp. 2481-2493. https://doi.org/10.1111/sms.13280
Abstract
Exercising at the maximal lactate steady state (MLSS) results in increased but stable metabolic responses. We tested the hypothesis that even a slight increase above MLSS (10 W), by altering the metabolic steady state, would reduce exercise performance capacity. Eleven trained men in our study performed: one ramp-incremental tests; two to four 30-minute constant-load cycling exercise trials to determine the PO at MLSS (MLSSp), and ten watts above MLSS (MLSSp+10), which were immediately followed by a time-to-exhaustion test; and a time-to-exhaustion test with no-prior exercise. Pulmonary O2 uptake V.O2) and blood lactate concentration ([La−]b) as well as local muscle O2 extraction ([HHb]) and muscle activity (EMG) of the vastus lateralis (VL) and rectus femoris (RF) muscles were measured during the testing sessions. When exercising at MLSSp+10, although V.O2 was stable, there was an increase in ventilatory responses and EMG activity, along with a non-stable [La−]b response (P < 0.05). The [HHb] of VL muscle achieved its apex at MLSSp with no additional increase above this intensity, whereas the [HHb] of RF progressively increased during MLSSp+10 and achieved its apex during the time-to-exhaustion trials. Time-to-exhaustion performance was decreased after exercising at MLSSp (37.3 ± 16.4%) compared to the no-prior exercise condition, and further decreased after exercising at MLSSp+10 (64.6 ± 6.3%) (P < 0.05). In summary, exercising for 30 min slightly above MLSS led to significant alterations of metabolic responses which disproportionately compromised subsequent exercise performance. Furthermore, the [HHb] signal of VL seemed to achieve a “ceiling” at the intensity of exercise associated with MLSS.
Keywords
exercise tolerance; fatigue; Maximal lactate steady state; O2 extraction
Journal
Scandinavian Journal of Medicine & Science in Sports: Volume 28, Issue 12
Status | Published |
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Funders | University of Calgary |
Publication date | 31/12/2018 |
Publication date online | 30/09/2018 |
Date accepted by journal | 10/08/2018 |
Publisher | Wiley |
ISSN | 0905-7188 |
eISSN | 1600-0838 |
People (1)
Lecturer in Sport & Exercise Psychology, Sport