Sleep research article

Delaying task failure in high-intensity exercise: a Pi-afferent-effort framework for targeted sports nutrition.

2026-01-01 · arXiv: 10.1080/15502783.2026.2711031

Authors: Stout JR , Housh TJ , Bergstrom HC

One-line summary

A sleep science research article on Delaying task failure in high-intensity exercise: a Pi-afferent-effort framework for targeted sports nutrition..

Sleep health notes

Sleep health notes will be added by the Sleepatch editorial team.

中文解读

中文解读待补充:本站会优先为失眠研究、睡眠质量改善、昼夜节律等高价值睡眠研究添加中文说明。

Original abstract

<h4>Background</h4>Task failure during high-intensity exercise may reflect the convergence of intramuscular, neural, perceptual, and behavioral boundaries rather than the consequence of a single fatigue mechanism.<h4>Methods</h4>This hypothesis-generating narrative review proposes the Pi-afferent-effort model of task failure during high-intensity exercise and applies the model to targeted performance nutrition.<h4>Results</h4>Rapid ATP turnover increases inorganic phosphate (Pi), while phosphocreatine breakdown through the creatine kinase reaction buffers ATP availability. As phosphate-linked disturbance progresses, Pi may impair crossbridge function, Ca<sup>2+</sup> sensitivity, and excitation-contraction coupling and thereby reduce force capacity. In parallel, interstitial acid-base disturbance and metabolite- and mechanosensitive group III/IV afferent feedback support ventilatory and circulatory regulation, but may also constrain motor output and voluntary activation. Perceived effort and muscle pain are treated as distinct constructs: effort is closely related to central motor command, whereas pain and discomfort reflect nociceptive-affective processing influenced by afferent feedback and context. Nutritional strategies are interpreted according to the model boundary they are most likely to affect. Nitrate may reduce ATP cost and phosphate-linked perturbation in selected tasks; creatine may support PCr availability and between-bout recovery; beta-alanine and sodium bicarbonate may alter intracellular and extracellular acid-base stress; caffeine may affect arousal, motor output, effort appraisal, pain, and tolerance; and carbohydrate is most relevant during prolonged or repeated high-intensity work.<h4>Conclusions</h4>Future studies should combine metabolic, neuromuscular, perceptual, and performance outcomes to determine whether supplements reduce work-matched strain, increase tolerance of terminal strain, or both.

6.0App value
8.0Research quality
7.0Wellness relevance

Links and sources

⚕️ Medical Disclaimer
This content is provided for informational and educational purposes only and does not constitute medical advice, diagnosis, or treatment. Sleep disorders, chronic insomnia, sleep apnea, and other conditions must be evaluated and treated by a qualified healthcare professional. If you experience persistent or severe sleep problems, consult a licensed physician or sleep specialist. Research cited refers to peer-reviewed studies; individual results may vary. Sleepatch does not endorse any specific medication, supplement, or therapy.

Want a personalized sleep improvement plan?

Sleepatch can prepare a customized sleep wellness program, insomnia relief guide, and evidence-based sleep coaching based on your needs.

Explore sleep services

Comments

No comments yet. Be the first to share your thoughts on this sleep research.
Login or register to leave a comment