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Seminar

Master Freediving Physiology

Explore the advanced physiological mechanisms that influence deep and high-performance freediving. This seminar examines breathing efficiency, equalization, lung protection, hypoxia management, nutrition, decompression sickness, and the physiological challenges encountered in elite freediving.

Contents

The diving reflex

  • The diving reflex (auto – equalization of the lungs).
  • Diving reflex and training

Breathing

  • The air volume of breathing: calm breathing, normal breathing and deep breathing.

  • The full breath and its three volumes: diaphragmatic, lateral and high thoracic breathing.

  • The value of diaphragmatic breathing in freediving.

    • Diaphragmatic breathing and increase of vital capacity.
    • Diaphragmatic breathing and inducement of bradycardia, calmness and relaxation, as preparation for diving.

Lung Squeeze

  • Lung Squeeze – pulmonary barotrauma in freediving.

    • Lung descent barotrauma (injury from excessive compression of the lungs).
    • Lung barotrauma of ascent – Lung over-expansion injuries.
    • Useful tips on avoiding a lung squeeze.

Equalizing the Ears

  • The 2 reasons to avoid the Valsalva equalization in deep freediving.

  • The Frenzel mouth-fill: a variation of the Frenzel method for deep freediving.

  • The “Hands free” equalization (Voluntary Tube Opening – VTO):

    • Direct contraction of the soft palate.
    • Indirect contraction of the soft palate.

Apnea

  • The single “biochemical formula” of apnea duration (all apnea factors).

  • Oxygen consumption in the brain during freediving: a possible new era of future research and great discoveries.

The hypoxic freediver

  • The body’s ten minute recovery break between two freedives.

  • The impact mechanism of hyperventilation.

    • The establishment mechanism of hypoxia.
    • Depletion of carbohydrates, combustion of lipids and inducement of hypoxia.

      The mechanism of hypoxia – when the freediver is threatened by hypoxia:

  • The hypoxia (or shallow water blackout) “barrier” of 7 or 10 meters during ascent.

  • How to distinguish “pressure contractions” from “thoracic contractions” and from “diaphragmatic contractions”.

  • The avoidance of hypoxia: the valuable tips of world freediving champions.

The secrets of the diet in freediving

  • The energy needs in the sea

  • The diet during a day of freediving.

    • The problem of dehydration
  • The breakfast: The diet shortly before entering the water.
  • The diet of the previous days before the diving day.
  • The diet between two freediving days.

Pathophysiology of Record Freediving

  • Glossopharyngeal breathing and “lung packing”: a dangerous technique.

    • The quest for the causes of decompression sickness in freediving.
    • Freediving patterns – diving profiles implicated in causing decompression sickness.
    • A historical review of the incidents and relevant research on decompression sickness in freediving.
    • The problem of correctly addressing and curing the freediving decompression sickness in the following years.

      The freediving decompression sickness.

  • The nitrogen narcosis and generally the issue of the narcotic effect of gases in deep freediving and record freediving.

    • The problem of narcosis for the amateur freediver.
    • The problem of narcosis in top-level freediving.

Learning outcomes

Participants will learn:

  • How the diving reflex influences performance and adaptation
  • Advanced diaphragmatic breathing techniques and their physiological benefits
  • Methods for increasing breathing efficiency and vital capacity
  • Causes, prevention, and management of lung squeeze and pulmonary barotrauma
  • Advanced equalization techniques for deeper diving
  • The limitations of Valsalva equalization in deep freediving
  • The physiological factors that determine breath-hold performance
  • Mechanisms of hypoxia, blackout risk, and recovery
  • How to recognize different types of contractions during apnea
  • Nutritional strategies that support freediving performance and recovery
  • Hydration requirements and dietary planning for diving days
  • The physiological risks associated with lung packing and advanced techniques
  • Current understanding of freediving decompression sickness and nitrogen narcosis
  • Physiological challenges encountered in deep and record-level freediving

This seminar is intended for advanced and master-level freedivers who want a deeper scientific understanding of the body’s response to extreme breath-hold diving. It combines physiology, nutrition, safety, and performance science to help divers train intelligently, reduce risk, and maximize their long-term development.