Tuesday Apr 16, 2024

Dr Stephanie Filbay - Non-Surgical ACL Management with Cross Bracing Protocol

Dr Dylan Carmody chats to Dr Stephanie Filbay. Dr Filbay is a Physiotherapist, NHMRC Emerging Leader Fellow, Dame Kate Campbell Fellow and Senior Research Associate in the Department of Physiotherapy at the University of Melbourne. Dr Filbay leads a team aiming to improve outcomes for people with ACL injury across the lifespan. Her team are evaluating non-surgical strategies to facilitate healing of ACL rupture, creating a patient decision aid and training resources to educate clinicians and inform patients about evidence-based ACL injury management options, and developing a novel intervention to improve quality of life and health outcomes for people who develop osteoarthritis after ACL injury. She has presented her research over 80 times to a variety of stakeholders, chairs and serves on national and international committees.

 

Topics Discussed 

 

  • Can the ACL heal?
  • What is ACL cross bracing?
  • How effective is ACL cross bracing?
  • What really qualifies an ACL coper?

 

Where you can find Dr Stephanie Filbay:

 

Research Discussed: 

 

 

 

Sponsors

VALD Performance, makers of the Nordbord, Forceframe, ForeDecks and HumanTrak. VALD Performance systems are built with the high-performance practitioner in mind, translating traditionally lab-based technologies into engaging, quick, easy-to-use tools for daily testing, monitoring and training

HUMAC NORM by CSMI - A solution for measuring and improving human performance in the clinic, athletic training room, and research laboratory. In one machine, you’ll get 22 isolated-joint movement patterns, 4 resistance modes (isokinetic, isotonic, isometric, and passive), and numerous reports to meet the measurement and exercise needs of today’s clinicians and researchers.

 

Sportscientia - An emerging precision tech-layer that harnesses the power of AI and machine learning to seamlessly capture gait analysis in real-world conditions and provide 3D depictions of the foot during both swing and stance phases of the gait cycle. This enables further analysis of running into multi-directional movements including lateral, backwards, turning actions and more.

 

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