The impact of ammonia inhalants on neuromuscular function during fatigued isometric contractions
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Abstract
Ammonia inhalants (AIs) are commonly used by athletes to increase arousal and prepare
for maximal physical effort; however, evidence supporting their ergogenic effects remains
insignificant and/or inconsistent, particularly when exercise is performed under fatigued
conditions. The purpose of this study was to determine the effect of ammonia inhalation on
neuromuscular function following fatiguing exercise. Fourteen male varsity athletes completed a
randomized, counterbalanced crossover design consisting of an AI condition and a control
condition separated by one week. During each visit, participants completed a baseline 30-s
maximal voluntary isometric contraction (MVIC) of the elbow flexors, followed by a
standardized dynamic biceps fatigue protocol and a subsequent 30-s fatigued MVIC. Force and
surface electromyography (sEMG) were recorded concurrently. Maximal isometric force, rate of
force development to peak force production (RTP), time to maximal force (T2M), biceps sEMG
amplitude, rate of force decline (RFDDecline), and mean power frequency (MPF) were assessed.
Repeated-measures statistical analyses of variance were used to evaluate differences between
treatment conditions and fatigue states.
Maximal isometric force significantly decreased following the fatigue protocol (p <
.001), with reductions of approximately 20% in both treatment conditions. However, no
significant treatment × fatigue state interactions were observed for maximal force, RTP, T2M,
biceps sEMG amplitude, or RFDDecline (p > .05). MPF progressively decreased across the 30-s
fatigued contraction (p < .001), consistent with the frequency shift phenomenon and the
development of myoelectric fatigue; however, neither the treatment effect nor treatment × time
interaction was significant (p > .05). Collectively, the results provided evidence that the
experimental protocol produced measurable mechanical and myoelectric manifestations of fatigue but did not provide evidence that ammonia inhalation significantly altered the measured
indices of neuromuscular function during fatigued sustained isometric contractions in male
varsity athletes. These finding suggest that athletes, coaches, and sport practitioners should not
rely on AIs to preserve neuromuscular performance during sustained isometric exercise with
performed under fatigue. Instead, performance preparation should prioritize evidence-based
strategies for managing fatigue and recovery.
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Keywords
Ammonia, Athletes, Isometric exercise
