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"Biofeedback-based return to sport": individualization through objective assessments
Antonis Ekizos1, Alessandro Santuz2
1Olympic Training Center of Berlin, Berlin, Germany.
Frontiers in Physiology
|June 28, 2023
Summary
Elite athletes face high injury risks. Biomechanical assessments in functional settings offer objective, individualized feedback for effective return to sport (RTS) progression.
Area of Science:
- Sports Medicine
- Biomechanics
- Exercise Physiology
Background:
- Elite athletes experience frequent injuries due to high mechanical stresses.
- Injury consequences include performance deficits and chronic burdens, impacting return to sport (RTS).
- Load management and prior injury are key predictors for successful RTS.
Purpose of the Study:
- To address conflicting information on optimal RTS strategies.
- To propose an objective, individualized approach to RTS assessment.
- To leverage biomechanical data for biofeedback-driven RTS progression.
Main Methods:
- Utilizing biomechanical measurements in functional settings.
- Implementing regular biofeedback cycles for progress monitoring.
- Focusing on controlled progression of training load and complexity.
Main Results:
- Biomechanical assessments provide objectivity in RTS evaluation.
- Individualized biofeedback cycles identify weaknesses and customize training.
- This approach supports a structured and informed RTS process.
Conclusions:
- Objective, biomechanically-informed biofeedback is crucial for effective RTS.
- Individualized RTS strategies, based on functional assessments, enhance athlete recovery and performance.
- This methodology establishes a robust framework for optimizing return to sport.
Keywords:
athleticsbiofeedbackbiomechanical measurementscustomizationelite sportfunctional testinglocomotionneuromuscular coordinationMore Related Videos
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