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Fit As A Physio · June 11 · 43 min

Protecting Hamstrings Through High Speed Exposure

PHYSIO MOSMAN: https://www.fitasaphysio.com/ If You Want to Prevent Hamstring Injuries in Soccer, Run Fast: A Narrative Review about Practical Considerations of Sprint Training (Gómez-Piqueras, P.; Alcaraz, P.E., 2024) This academic review explores the critical role of sprint training as a preventative measure against hamstring strain injuries (HSIs) in professional soccer. It highlights that since most hamstring injuries occur during high-speed running, exposing players to maximal sprinting speedsacts as a protective "vaccine" by strengthening specific muscles like the biceps femoris. The authors propose a practical multidirectional speed model that integrates linear and curvilinear sprints into the weekly training microcycle using a control-chaos continuum. Effective implementation requires individualized monitoring through GPS technology, focusing on relative speed thresholds rather than just absolute values to ensure players reach at least 85-95% of their maximum velocity. By balancing optimal dosage and timing, coaches can enhance athletic performance while significantly reducing the economic and physical burden of muscle injuries. Overcoming the "sprint paradox" involves transitioning from analytical drills to game-specific transitions to prepare athletes for the chaotic demands of elite competition. READ MORE: https://www.fitasaphysio.com/blog/the-sprint-vaccine-protecting-hamstrings-through-high-speed-exposure Support the show

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PHYSIO MOSMAN: https://www.fitasaphysio.com/

If You Want to Prevent Hamstring Injuries in Soccer, Run Fast: A Narrative Review about Practical Considerations of Sprint Training (Gómez-Piqueras, P.; Alcaraz, P.E., 2024)

This academic review explores the critical role of sprint training as a preventative measure against hamstring strain injuries (HSIs) in professional soccer. It highlights that since most hamstring injuries occur during high-speed running, exposing players to maximal sprinting speedsacts as a protective "vaccine" by strengthening specific muscles like the biceps femoris. The authors propose a practical multidirectional speed model that integrates linear and curvilinear sprints into the weekly training microcycle using a control-chaos continuum. Effective implementation requires individualized monitoring through GPS technology, focusing on relative speed thresholds rather than just absolute values to ensure players reach at least 85-95% of their maximum velocity. By balancing optimal dosage and timing, coaches can enhance athletic performance while significantly reducing the economic and physical burden of muscle injuries. Overcoming the "sprint paradox" involves transitioning from analytical drills to game-specific transitions to prepare athletes for the chaotic demands of elite competition.

READ MORE: https://www.fitasaphysio.com/blog/the-sprint-vaccine-protecting-hamstrings-through-high-speed-exposure

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