Please use this identifier to cite or link to this item: http://bura.brunel.ac.uk/handle/2438/11672
Title: Effect of inspiratory muscle work on peripheral fatigue of locomotor muscles in healthy humans
Authors: Romer, LM
Lovering, AT
Haverkamp, HC
Pegelow, DF
Dempsey, JA
Keywords: Inspiratory muscle work;Locomotor muscles;Peripheral fatigue
Issue Date: 2006
Publisher: The Physiological Society
Citation: The Journal of Physiology, 571(2): pp. 425 - 439, (2006)
Abstract: The work of breathing required during maximal exercise compromises blood flow to limb locomotor muscles and reduces exercise performance. We asked if force output of the inspiratory muscles affected exercise-induced peripheral fatigue of locomotor muscles. Eight male cyclists exercised at ≥ 90% peak O2 uptake to exhaustion (CTRL). On a separate occasion, subjects exercised for the same duration and power output as CTRL (13.2 ± 0.9 min, 292 W), but force output of the inspiratory muscles was reduced (−56%versus CTRL) using a proportional assist ventilator (PAV). Subjects also exercised to exhaustion (7.9 ± 0.6 min, 292 W) while force output of the inspiratory muscles was increased (+80%versus CTRL) via inspiratory resistive loads (IRLs), and again for the same duration and power output with breathing unimpeded (IRL-CTRL). Quadriceps twitch force (Qtw), in response to supramaximal paired magnetic stimuli of the femoral nerve (1–100 Hz), was assessed pre- and at 2.5 through to 70 min postexercise. Immediately after CTRL exercise, Qtw was reduced −28 ± 5% below pre-exercise baseline and this reduction was attenuated following PAV exercise (−20 ± 5%; P < 0.05). Conversely, increasing the force output of the inspiratory muscles (IRL) exacerbated exercise-induced quadriceps muscle fatigue (Qtw=−12 ± 8% IRL-CTRL versus−20 ± 7% IRL; P < 0.05). Repeat studies between days showed that the effects of exercise per se, and of superimposed inspiratory muscle loading on quadriceps fatigue were highly reproducible. In conclusion, peripheral fatigue of locomotor muscles resulting from high-intensity sustained exercise is, in part, due to the accompanying high levels of respiratory muscle work.
URI: http://onlinelibrary.wiley.com/doi/10.1113/jphysiol.2005.099697/abstract?systemMessage=Wiley+Online+Library+will+have+be+unavailable+on+Saturday+5th+December+from+10:00-14:00+GMT+/+05:00-09:00+EST+/+18:00-22:00+SGT+for+essential+maintenance.+Apologies+for+the+inconvenience.
http://bura.brunel.ac.uk/handle/2438/11672
DOI: http://dx.doi.org/10.1113/jphysiol.2005.099697
ISSN: 0022-3751
1469-7793
Appears in Collections:Dept of Life Sciences Research Papers

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