Why Muscle Training Helps Sleep Apnoea: The Mechanism
Obstructive sleep apnoea was long treated as a plumbing problem — a blocked pipe to be propped open. This review reflects a more sophisticated modern understanding: that OSA is multi-factorial, driven by a combination of how easily the airway collapses, how well the throat muscles respond, how readily a person wakes, and the stability of their breathing control (the "loop gain"). Against that backdrop, it explains why exercises for the mouth and throat can make a difference.
Orofacial myofunctional therapy targets one of those factors directly: the responsiveness and tone of the pharyngeal muscles that hold the airway open. By laying out the pathophysiology, the review shows this isn't a vague wellness practice but a mechanism-based intervention aimed at a specific, identifiable contributor to the disorder.
This matters because it strengthens the case that the airway can be trained, not merely splinted. For a project built on the idea that the muscles and structures of the face and mouth shape breathing, a clear pathophysiological account of how exercise improves apnoea connects the dots — and helps explain which patients are most likely to benefit from working the airway rather than only treating it with a device.
Key Findings
This review explains the pathophysiology behind why orofacial myofunctional therapy can help obstructive sleep apnoea.
Newly recognised contributors to OSA include airway collapsibility, poor pharyngeal muscle responsiveness, a low arousal threshold, and high loop gain.
Understanding these mechanisms helps match the right treatment to the right patient.
Source
Added to the Evidence Hub: 17 June 2026
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